[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_d492d6e2-6ffb-4ca2-91a2-9d93c974b0ce":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:d492d6e2-6ffb-4ca2-91a2-9d93c974b0ce,\"}":103},{"code":4,"data":5,"meta":19},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":21,"manageAffiliations":39,"indexDatabases":55,"url":93,"thumbnailPath":19,"statistic":94,"gsStatistic":19,"type":102,"analyzePriority":19},"d492d6e2-6ffb-4ca2-91a2-9d93c974b0ce","2024-04-10T01:47:58.165+00:00","2025-07-10T16:21:12.183+00:00",[],"Biophysik",{"issn":12,"title":14,"eissn":15},{"VOID":13},"1432-2099",{"EN":10},{"VOID":16},"0006-3517","PUBLISHER","PENDING",null,0,[22,28,33],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":24,"label":25,"description":27,"parentId":19,"standard":19,"scholarHubFieldId":19},"a86091b2-a11b-4669-b693-653762a75923",[],{"EN":26},"Biophysics",{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":30,"label":31,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},"86025822-6874-4a2a-835d-983b124491df",[],{"EN":32},"Environmental Science (miscellaneous)",{"id":34,"createTime":19,"updateTime":19,"relativeEntities":35,"label":36,"description":38,"parentId":19,"standard":19,"scholarHubFieldId":19},"0d971a72-32b3-4406-aae7-7a4f741226dc",[],{"EN":37},"Radiation",{},[40,48],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":42,"slug":19,"properties":43,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":46,"statistic":19},"1553eaa4-de45-4fd0-9ca3-a7b44788e9e7",[],{"title":44},{"EN":45},"Springer New York",[47],"9a7c7208-b28a-42c2-a634-5a7f90eee3ab",{"id":49,"createTime":19,"updateTime":19,"relativeEntities":50,"slug":19,"properties":51,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":54,"statistic":19},"26a19206-5cad-4456-bb2f-49abd254fbc6",[],{"title":52},{"EN":53},"SPRINGER",[],[56,74],{"id":57,"indexDatabase":58,"url":68,"indexYears":69,"academicFieldIds":70,"indexDatabaseRanking":19},"07f74c1b-0d32-441a-af43-c1625480e34a",{"id":59,"createTime":19,"updateTime":19,"relativeEntities":60,"label":61,"description":63,"key":65,"publicationTags":66,"standard":19},"3c7051d4-eb7d-4c57-a56b-36fc74c5d1e9",[],{"EN":62,"VI":62},"Scopus - Elsevier",{"EN":62,"VI":64},"Cơ sở dữ liệu Scopus thuộc Elsevier","scopus",[67],"SCOPUS","https:\u002F\u002Fwww.scimagojr.com\u002Fjournalsearch.php?q=14917&tip=sid&clean=0","1999-2022",[71,72,73],"3473dbec-c53d-4463-88f5-866ed6297f33","877fabeb-4f64-4564-a387-557c6c685f93","de92cf1a-2f51-4173-92e5-47b52fde9929",{"id":75,"indexDatabase":76,"url":19,"indexYears":19,"academicFieldIds":88,"indexDatabaseRanking":19},"3e6dad1e-7657-468a-a663-c55063785b5b",{"id":77,"createTime":19,"updateTime":19,"relativeEntities":78,"label":79,"description":81,"key":84,"publicationTags":85,"standard":19},"a4921856-b128-4d9f-8f1f-e80813d3bbd4",[],{"EN":80,"VI":80},"ISI\u002FSCIE - Science Citation Index Expanded",{"EN":82,"VI":83},"SCIE database","Cơ sở dữ liệu SCIE","scie",[86,87],"SCIE","ISI",[89,90,91,92],"80b08079-ffdc-4da1-b3fe-7d13758975d8","2c74d252-030e-40f7-a6ff-6f4bef3a9461","d875699a-416e-4523-bcb9-17b1b64de061","d35f7cb1-70f1-41cc-b01c-ebcc9f6a923d","https:\u002F\u002Flink.springer.com\u002Fjournal\u002F411",{"impactFactor":20,"impactFactorByYear":95,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":97,"totalCitation":20,"totalCitationByYear":100,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":101,"hindexLast5Year":20,"hindex":20},{},4,{"1967":98,"1971":98,"1973":99},1,2,{},{},"JOURNAL",{"meta":104,"data":106},{"total":105},"1835",[107,308,415,643,887,1104,1314,1419,1580,1697],{"id":108,"createTime":109,"updateTime":110,"relativeEntities":111,"slug":112,"properties":113,"entityType":123,"verifyStatus":124,"verifyTime":125,"verifyNote":126,"languages":19,"translateLanguages":127,"viewCount":20,"primaryUrl":129,"fullTextUrl":19,"authors":130,"publicationType":248,"publisherRelationship":249,"citationCount":19,"citationInfo":19,"publishDate":304,"publishYear":305,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":306,"openAccess":19,"references":19,"isForceReanalyzing":307},"101b243f-4298-4bd3-87c2-03d42d2c6835","2024-02-20T13:52:09.980+00:00","2026-09-06T12:14:20.037+00:00",[],"Karyopathological-traits-of-thyrocytes-and-exposure-to-radioiodines-in-Belarusian-children-and-adolescents-following-the-accident-at-the-Chernobyl-nuclear-power-plant",{"abstract":114,"title":116,"references":119,"doi":121},{"EN":115},"The Belarus–American (BelAm) thyroid study cohort consists of persons who were 0–18 years of age at the time of exposure to radioactive iodine fallout from the 1986 Chernobyl nuclear power plant accident and who have undergone serial thyroid screenings with referral for fine-needle aspiration biopsy (FNAB) using standardized criteria. We investigated thyrocyte nuclear abnormalities in cytological samples from FNABs in 75 BelAm subjects with single and multiple thyroid nodules and 47 nodular goiter patients from Leningrad, Russia, unexposed to Chernobyl fallout. Nuclear abnormalities examined included internuclear chromosome bridges and derivative nuclei with broken bridges (i.e., “tailed” nuclei), which are formed from dicentric and ring chromosomes and thus may be cellular markers of radiation exposure. Among subjects with single-nodular goiter, thyrocytes with bridges were present in 86.8% of the exposed BelAm cohort compared with 27.0% of unexposed controls. The average frequency of thyrocytes with bridges and with tailed nuclei was also significantly higher in the BelAm subjects than in controls. Among subjects with multinodular goiters, thyrocytes with bridges were present in 75.7% of exposed BelAm patients compared with 16.7% of unexposed controls; thyrocytes with tailed nuclei were observed in all of the BelAm subjects but in only 40% of controls, and the mean frequencies of bridges and tailed nuclei were significantly higher in the exposed group. Unusually, long bridges were detected in 29% of BelAm patients with single-nodular goiters and 35% of those with multinodular goiters, while no such abnormalities were observed among patients from the Leningrad region. In the exposed subjects from BelAm, we also found positive correlations between their estimated dose of Iodine-131 from Chernobyl fallout and the frequency of tailed nuclei (p = 0.008) and bridges (p = 0.09). Further study is needed to confirm that these phenomena represent consequences of radiation exposure in the human organism.",{"EN":117,"VI":118},"Karyopathological traits of thyrocytes and exposure to radioiodines in Belarusian children and adolescents following the accident at the Chernobyl nuclear power plant","Đặc điểm bệnh lý nhân của tế bào tuyến giáp và mức phơi nhiễm iod phóng xạ ở trẻ em và thanh thiếu niên Belarus sau sự cố nhà máy điện hạt nhân Chernobyl",{"VOID":120},"Achille M, Boukheris H, Caillou B et al (2009) Expression of cell cycle biomarkers and telomere length in papillary thyroid carcinoma: a comparative study between radiation-associated and spontaneous cancers. Am J Clin Oncol 32(1):1–8\nBennett B, Repacholi M, Carr Z (2006) Health effects of the Chernobyl accident and special care programmes, Report of the UN Chernobyl Forum Expert Group “Health”. World Health Organization, Geneva\nGisselsson D (2000) Chromosomal instability and genomic amplification in bone and soft tissue tumor. Lund University, Sweden\nGisselsson D, Pettersson L, Höglund M et al (2000) Chromosomal breakage-fusion-bridge events cause genetic intratumor heterogeneity. Proc Natl Acad Sci USA 97(10):5357–5362\nIAEA TR 405 (2001) Cytogenetic analysis for radiation dose assessment: a manual\nKost EA (1975) Handbook of clinical laboratory diagnostic methods. “Medicine”, Moscow\nKravtsov VY, Fedortseva RF, Starkova EV et al (2000) Tailed nuclei and dicentric chromosomes in irradiated subjects. Appl Radiat Isot 3:1121–1127\nKuzovatov SN, Kravtsov VIu, Vakhtin IuB (2000) Internuclear chromosome bridges and nuclear protrusions in rat rhabdomyosarcoma RA-23. Tsitologiia 42(11):1097–1102\nLikhtarev I, Bouville A, Kovgan L, Luckyanov N, Voillequé P (2006) Questionnaire- and measurement-based individual thyroid doses in Ukraine resulting from the Chornobyl nuclear reactor accident. Radiat Res 166(1):271–286\nRozhko AV, Masyakin VB, Vlasova NG (2008) Peculiarities of development of thyroid pathology in population exposed in childhood and adolescence. Medical-biological and social-psychological security problems in emergency situations (No. 4):C19–C22\nSaad AG, Kumar S, Ron E et al (2006) Proliferative activity of human thyroid cells in various age groups and its correlation with the risk of thyroid cancer after radiation exposure. J Clin Endocrinol Metab 91(7):2672–2677\nStezhko VA, Buglova EE, Danilova LI et al (2004) A cohort study of thyroid cancer and other thyroid diseases after the Chornobyl accident: objectives, design and methods. Radiat Res 161(4):481–492\nTakeichi N, Hoshi M, Iida S et al (2006) Nuclear abnormalities in aspirated thyroid cells and chromosome aberrations in lymphocytes of residents near the Semipalatinsk nuclear test site. J Radiat Res (Tokyo) 47:A171–A177\nTronko MD, Bogdanova TI, Komissarenko IV et al (1999) Thyroid carcinoma in children and adolescents in Ukraine after the Chernobyl nuclear accident. Cancer 86:149–156\nTuttle RM, Becker DV (2000) The Chernobyl accident and its consequences: update at the millennium. Semin Nucl Med 30(2):133–140\nZotti-Martelli L, Migliore L, Panasiuk G, Barale R (1999) Micronucleus frequency in Gomel (Belarus) children affected and not affected by thyroid cancer. Mutat Res 440:35–43",{"VOID":122},"10.1007\u002Fs00411-012-0407-z","PUBLICATION","VERIFIED","2024-12-13T02:47:26.103+00:00","Auto Verify",[128],"VI","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs00411-012-0407-z",[131,147,160,175,191,204,220,234],{"id":132,"sortIndex":20,"researcher":19,"roles":133,"affiliations":135,"properties":144,"displayName":146,"givenName":19,"familyName":19},"d9b09588-fb69-4fb3-8e5e-f3b4b2351e52",[134],"AUTHOR",[136],{"id":137,"sortIndex":20,"affiliation":138,"properties":19},"1ae665ba-7082-4258-898c-0aa05e37cc41",{"id":137,"createTime":19,"updateTime":19,"relativeEntities":139,"slug":19,"properties":140,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":143,"statistic":19},[],{"title":141},{"VI":142},"Republican Research Center for Radiation Medicine and Human Ecology, Gomel, Belarus",[],{"title":145},{"VI":146},"Eldar Nadyrov",{"id":148,"sortIndex":98,"researcher":19,"roles":149,"affiliations":150,"properties":157,"displayName":159,"givenName":19,"familyName":19},"114588c7-45fb-40c4-81c5-512ddf490e8d",[134],[151],{"id":137,"sortIndex":20,"affiliation":152,"properties":19},{"id":137,"createTime":19,"updateTime":19,"relativeEntities":153,"slug":19,"properties":154,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":156,"statistic":19},[],{"title":155},{"VI":142},[],{"title":158},{"VI":159},"Alexander Rozhko",{"id":161,"sortIndex":99,"researcher":19,"roles":162,"affiliations":163,"properties":172,"displayName":174,"givenName":19,"familyName":19},"7c38c8b2-46cb-4778-b5f6-2d95ea9d8a87",[134],[164],{"id":165,"sortIndex":20,"affiliation":166,"properties":19},"da946a5a-2319-416b-9601-da63941bfe34",{"id":165,"createTime":19,"updateTime":19,"relativeEntities":167,"slug":19,"properties":168,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":171,"statistic":19},[],{"title":169},{"VI":170},"Nikiforov Russian Centre of Emergency and Radiation Medicine, EMERCOM of Russia, St. Petersburg, Russia",[],{"title":173},{"VI":174},"Viacheslav Kravtsov",{"id":176,"sortIndex":177,"researcher":19,"roles":178,"affiliations":179,"properties":188,"displayName":190,"givenName":19,"familyName":19},"0fc9cc98-ef99-4c26-a96a-aeb6dbd2cc4c",3,[134],[180],{"id":181,"sortIndex":20,"affiliation":182,"properties":19},"49455825-bdef-4d5f-a98f-adba889defe3",{"id":181,"createTime":19,"updateTime":19,"relativeEntities":183,"slug":19,"properties":184,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":187,"statistic":19},[],{"title":185},{"VI":186},"Radiation Epidemiology Branch, Division of Cancer Epidemiology and Genetics, National Cancer Institute, Rockville, USA",[],{"title":189},{"VI":190},"Kiyohiko Mabuchi",{"id":192,"sortIndex":96,"researcher":19,"roles":193,"affiliations":194,"properties":201,"displayName":203,"givenName":19,"familyName":19},"0a06281d-18c3-4196-a33c-6cf200615062",[134],[195],{"id":181,"sortIndex":20,"affiliation":196,"properties":19},{"id":181,"createTime":19,"updateTime":19,"relativeEntities":197,"slug":19,"properties":198,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":200,"statistic":19},[],{"title":199},{"VI":186},[],{"title":202},{"VI":203},"Maureen Hatch",{"id":205,"sortIndex":206,"researcher":19,"roles":207,"affiliations":208,"properties":217,"displayName":219,"givenName":19,"familyName":19},"ab64a563-7cd6-4f55-9420-0c8e61676b69",5,[134],[209],{"id":210,"sortIndex":20,"affiliation":211,"properties":19},"67025398-976e-4e6b-9ec0-3f4fc0ac0844",{"id":210,"createTime":19,"updateTime":19,"relativeEntities":212,"slug":19,"properties":213,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":216,"statistic":19},[],{"title":214},{"VI":215},"Radiation Effects Research Foundation, Hiroshima, Japan",[],{"title":218},{"VI":219},"Nori Nakamura",{"id":221,"sortIndex":222,"researcher":19,"roles":223,"affiliations":224,"properties":231,"displayName":233,"givenName":19,"familyName":19},"a20ae3a9-e0b1-4c24-bfa4-59722253ef56",6,[134],[225],{"id":137,"sortIndex":20,"affiliation":226,"properties":19},{"id":137,"createTime":19,"updateTime":19,"relativeEntities":227,"slug":19,"properties":228,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":230,"statistic":19},[],{"title":229},{"VI":142},[],{"title":232},{"VI":233},"Sergey Nikonovich",{"id":235,"sortIndex":236,"researcher":19,"roles":237,"affiliations":238,"properties":245,"displayName":247,"givenName":19,"familyName":19},"25dcf624-a1c1-4e46-9897-7772878eb90c",7,[134],[239],{"id":165,"sortIndex":20,"affiliation":240,"properties":19},{"id":165,"createTime":19,"updateTime":19,"relativeEntities":241,"slug":19,"properties":242,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":244,"statistic":19},[],{"title":243},{"VI":170},[],{"title":246},{"VI":247},"Sergey Aleksanin","ARTICLE",{"url":129,"publisher":250,"properties":299},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":251,"slug":10,"properties":252,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":256,"manageAffiliations":268,"indexDatabases":279,"url":93,"thumbnailPath":19,"statistic":294,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":253,"title":254,"eissn":255},{"VOID":13},{"EN":10},{"VOID":16},[257,261,264],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":258,"label":259,"description":260,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":262,"label":263,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":265,"label":266,"description":267,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[269,274],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":270,"slug":19,"properties":271,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":273,"statistic":19},[],{"title":272},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":275,"slug":19,"properties":276,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":278,"statistic":19},[],{"title":277},{"EN":53},[],[280,287],{"id":57,"indexDatabase":281,"url":68,"indexYears":69,"academicFieldIds":286,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":282,"label":283,"description":284,"key":65,"publicationTags":285,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":288,"url":19,"indexYears":19,"academicFieldIds":293,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":289,"label":290,"description":291,"key":84,"publicationTags":292,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":295,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":296,"totalCitation":20,"totalCitationByYear":297,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":298,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":300,"volume":302},{"VOID":301},"187-193",{"VOID":303},"51","2012-03-01",2012,[67,86],false,{"id":309,"createTime":310,"updateTime":311,"relativeEntities":312,"slug":313,"properties":314,"entityType":123,"verifyStatus":124,"verifyTime":323,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":324,"fullTextUrl":19,"authors":325,"publicationType":248,"publisherRelationship":354,"citationCount":20,"citationInfo":409,"publishDate":412,"publishYear":410,"citationAnalyzeStatus":413,"lastCitationAnalyze":311,"indexDatabases":414,"openAccess":19,"references":19,"isForceReanalyzing":307},"01e5d4d1-e04b-4725-8053-14338181d23d","2024-02-07T10:14:18.387+00:00","2026-08-16T22:20:29.750+00:00",[],"Calculation-of-the-1995-lung-cancer-incidence-in-the-Netherlands-and-Sweden-caused-by-smoking-and-radon-risk-implications-for-radon",{"abstract":315,"title":317,"gsPaper":319,"doi":321},{"EN":316},"A two-mutation carcinogenesis model was used to calculate the expected lung cancer incidence caused by both smoking and exposure to radon in two populations, i.e. those of the Netherlands and Sweden. The model parameters were taken from a previous analysis of lung cancer in smokers and uranium miners and the model was applied to the two populations taking into account the smoking habits and exposure to radon. For both countries, the smoking histories and indoor radon exposure data for the period 1910–1995 were reconstructed and used in the calculations. Compared with the number of lung cancer cases observed in 1995 among both males and females in the two countries, the calculations show that between 72% and 94% of the registered lung cancer cases may be attributable to the combined effects of radon and smoking. In the Netherlands, a portion of about 4% and in Sweden, a portion of about 20% of the lung cancer cases (at ages 0–80 years) may be attributable to radon exposure, the numbers for males being slightly lower than for females. In the Netherlands, the proportions of lung cancers attributable to smoking are 91% for males and 71% for females; in Sweden, the figures are 70% and 56%, respectively. The risk from radon exposure is dependent on gender and cigarette smoking: the excess absolute risk for continuous exposure to 100 Bq m–3 ranges between 0.003 and 0.006 and compares well with current estimates, e.g. 0.0043 of the International Commission on Radiological Protection (ICRP). The excess relative risk for continuous exposure to 100 Bq m–3 shows a larger variation, ranging generally between 0.1 for smokers and 1.0 for non-smokers. The results support the assumption that exposure to (indoor) radon, even at a level as low as background radiation, causes lung cancer proportional to the dose and is consistent with risk factors derived from the miners data.",{"EN":318},"Calculation of the 1995 lung cancer incidence in the Netherlands and Sweden caused by smoking and radon: risk implications for radon",{"VOID":320},"[\"8728089628832035473\"]",{"VOID":322},"10.1007\u002Fs004110000084","2024-05-01T09:51:08.846+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs004110000084",[326,341],{"id":327,"sortIndex":20,"researcher":19,"roles":328,"affiliations":329,"properties":338,"displayName":340,"givenName":19,"familyName":19},"099e4526-6e9b-4961-b694-5c53c62d4c8e",[134],[330],{"id":331,"sortIndex":20,"affiliation":332,"properties":19},"fe4103e0-513a-4555-ae11-e4deacd6a485",{"id":331,"createTime":19,"updateTime":19,"relativeEntities":333,"slug":19,"properties":334,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":337,"statistic":19},[],{"title":335},{"VI":336},"National Institute of Public Health and the Environment (RIVM), P.O. Box 1, 3720 BA Bilthoven, The Netherlands, , NL",[],{"title":339},{"VI":340},"H. P. Leenhouts",{"id":342,"sortIndex":98,"researcher":19,"roles":343,"affiliations":344,"properties":351,"displayName":353,"givenName":19,"familyName":19},"d371403e-eeed-42f0-b2d1-e3ee43b05752",[134],[345],{"id":331,"sortIndex":20,"affiliation":346,"properties":19},{"id":331,"createTime":19,"updateTime":19,"relativeEntities":347,"slug":19,"properties":348,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":350,"statistic":19},[],{"title":349},{"VI":336},[],{"title":352},{"VI":353},"M. J. P. Brugmans",{"url":324,"publisher":355,"properties":404},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":356,"slug":10,"properties":357,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":361,"manageAffiliations":373,"indexDatabases":384,"url":93,"thumbnailPath":19,"statistic":399,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":358,"title":359,"eissn":360},{"VOID":13},{"EN":10},{"VOID":16},[362,366,369],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":363,"label":364,"description":365,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":367,"label":368,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":370,"label":371,"description":372,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[374,379],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":375,"slug":19,"properties":376,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":378,"statistic":19},[],{"title":377},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":380,"slug":19,"properties":381,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":383,"statistic":19},[],{"title":382},{"EN":53},[],[385,392],{"id":57,"indexDatabase":386,"url":68,"indexYears":69,"academicFieldIds":391,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":387,"label":388,"description":389,"key":65,"publicationTags":390,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":393,"url":19,"indexYears":19,"academicFieldIds":398,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":394,"label":395,"description":396,"key":84,"publicationTags":397,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":400,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":401,"totalCitation":20,"totalCitationByYear":402,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":403,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":405,"volume":407},{"VOID":406},"11-21",{"VOID":408},"40",{"total":20,"publishYear":410,"statisticByYear":411},2001,{},"2001-03-01","ERROR_IN_ANALYZE_CITATION",[67,86],{"id":416,"createTime":417,"updateTime":418,"relativeEntities":419,"slug":420,"properties":421,"entityType":123,"verifyStatus":124,"verifyTime":432,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":433,"fullTextUrl":19,"authors":434,"publicationType":248,"publisherRelationship":583,"citationCount":19,"citationInfo":19,"publishDate":638,"publishYear":639,"citationAnalyzeStatus":640,"lastCitationAnalyze":641,"indexDatabases":642,"openAccess":19,"references":19,"isForceReanalyzing":307},"0cb2e175-8efd-4f13-8172-315c55f1d46b","2023-12-29T10:27:19.550+00:00","2026-08-13T20:20:42.622+00:00",[],"Clinical-gain-from-improved-beam-delivery-systems",{"abstract":422,"title":424,"gsPaper":426,"references":428,"doi":430},{"EN":423},"The feasibility of dynamic conformal heavy charged particle radiotherapy has been investigated at UCLBL, and shows high promise of: 1. an improved therapeutic ratio and 2. reduction in the number of treatment portals required for efficient treatment delivery. Assessment of dose to tumor and critical structures for several anatomical sites have been carried out using a normal tissue complication algorithm developed at LBL. For high-LET charged particle treatment delivery, dynamic conformal therapy using a raster scanned beam with variable modulation and multileaf collimator appears to be the optimal technique for treatment delivery.",{"EN":425},"Clinical gain from improved beam delivery systems",{"VOID":427},"[]",{"VOID":429},"Blakely EA, Tobias CA, Chang PY, Lommel L, Yezzi MJ, Craise LM, Madfes IS, Martin PM (1983) Primary beam fragmentation effects on radiobiological RBE and OER. Radiation Research Society (abstr), p 25\nAlpen EL, Gough RA (1984) The heavy ion medical accelerator: final design summary. Lawrence Berkeley Laboratory PUB-5122 (NCI Program Project, advanced design research, heavy ion medical accelerator CA30236); and Alpen EL: Advanced design research, heavy ion medical accelerator: Therapy Beam Optimization, Lawrence Berkeley Laboratory PUB-5113 (the renewal of the Program Project, “Research on Advanced Beam Delivery (RABD) ”)\nBrahme A, Kallman P, Lind BK (1989) Optimization of proton and heavy ion therapy using an adaptive inversion algorithm. Radiol Oncol 15:189–197\nCastro JR, Phillips TL, Petti PL, Collier JM, Henderson SD, Pitluck S (1987) Clinical results of charged particle radiotherapy. In: Fielden EM, Flower JF, Hendry JH, Scott D (eds) Proceedings of the 8th International Congress of Radiation Research, vol 2. Taylor & Francis, London\nCastro JR (1991) High-LET charged particle radiotherapy. Proceedings of the 9th International Congress of Radiation Research. Toronto (in press)\nChu WT, Renner TR, Ludewigt BA (1988) Dynamic beam delivery for three-dimensional conformal therapy. In: Chavel P, Wambersie A (eds) Proceedings of the EULIMA Workshop on the Potential Value of Light Ion Beam Therapy. Nice, France, EUR 12165 EN, pp 295–328\nChu WT, Alonso J, Halliwell JB, Ludewigt BA, Nyman MA, Renner TA, Singh RP, Stover GH, Stradtner R (1990) Dynamic beam delivery methods. In: Blattmann H (ed) Proceedings of the International Heavy Particle Therapy Workshop (PTCOG\u002FEORTC\u002FECNEU), PSI, Villigen, Switzerland, September 1989. PSI-Bericht Nr. 69, pp 13–18\nGoitein M, Uric M, Munzenreider J, Gentry R, Lyman J, Chen G, Castro J, Maor M, Stafford P, Sontag M, Altschuler M, Bloch P, Chu J, Richter M (1987) Report of the working groups on the evaluation of treatment planning for particle beam radiotherapy. Radiotherapy Development Branch, Radiation Research Program, Division of Cancer Treatment, National Cancer Institute, Bethesda, Md\nGriffin T, Wambersie A, Laramore G, Castro J (1988) High LET: heavy particle beams. Proceedings of the development conference of ICTRO (International Clinical Trials in Radiation Oncology), April 1986, Paris, France. Int J Radiat Oncol Biol Phys 14 [Suppl 1]:S 83–92\nLinstadt DE, Castro JR, Phillips TL (1991) Neon ion radiotherapy: results of the phase I–II clinical trial. Int J Radiat Oncol Biol Phys 20:761–769\nLyman JT (1983) Computer modeling of heavy charged-particle beams. In: Skarsgard LD (ed) Pion and heavy ion radiotherapy: pre-clinical studies. Elsevier, Amsterdam, p 139\nLyman JT (1990) Evaluation and optimization of treatment plants using a biological probabilistic objective function. In: Blattman H (ed) Proceedings of the International Heavy Particle Therapy Workshop PSI, Villigen, Switzerland. PSI-Bericht Nr. 69, pp 61–64\nLyman JT, Wolbarst AB (1989) Optimization of radiation therapy IV: a dose-volume histogram reduction algorithm. Int J Radiat Oncol Biol Phys 17:433–436\nNowakowski V, Castro JR, Petti PL, Collier JM, Daftari I, Linstadt DE, Phillips TL (1989) Charged particle radiotherapy of paraspinal tumors. Presented at NCI Workshop on Effects of Superior Dose Distribution. NCI, Bethesda, Md April 1989. Int J Radiat Oncol Biol Phys 22:295–303\nPetti PL, Lyman JT, Castro JR (1991) Sensitivity of helium beam-modulator design to uncertainties in biological data. Med Phys 18:506–512\nPetti PL (1988) Investigation of alternative dose calculation algorithms for charged-particle therapy. Proceedings of the World Congress on Medical Physics and Biomedical Engineering, Aug 6–12, 1988, San Antonio, TX, p 74\nPetti PL, Lyman JT, Chu WT, Renner TR, Ludewigt BA, Collier JM, Henderson SD, Singh RP, Witcomb TF (1988) Charged-particle treatment planning for a raster-scanned beam delivery system. Proceedings of the American Society for Therapeutic Radiology and Oncology, 30th Annual Meeting. New Orleans, LA, p 127 (abstr)\nPetti PL, Lymann JT, Renner T, Castro JR, Collier JM, Daftari IK, Ludewigt B (1991) Design of beam-modulating devices for charged-particle therapy. Med Phys 18:513–518\nRenner TR, Chu WT (1987) Wobbler facility for biomedical experiments. Med Phys 14:825–834\nRenner TR, Chu WT, Ludewigt B, Nyman M, Stradtner R (1989) Multi-segmented ionization chamber dosimetry system for light-ion beams. Nucl Instrum Methods A281:640–648\nSuit HD, Griffin TG, Castro JR, Verhey LJ (1987) Particle radiation therapy research plan. Radiation Oncology Research Directions 1987. Am J Clin Oncol Cancer Clin Trials 11:330–341",{"VOID":431},"10.1007\u002FBF01214830","2024-09-04T23:24:03.429+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01214830",[435,450,463,476,489,502,515,528,541,555,569],{"id":436,"sortIndex":20,"researcher":19,"roles":437,"affiliations":438,"properties":447,"displayName":449,"givenName":19,"familyName":19},"88422ab2-10fd-4e54-85ca-3163f4830e20",[134],[439],{"id":440,"sortIndex":20,"affiliation":441,"properties":19},"b18dacd1-1b75-4313-a02d-055aaac88cdc",{"id":440,"createTime":19,"updateTime":19,"relativeEntities":442,"slug":19,"properties":443,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":446,"statistic":19},[],{"title":444},{"EN":445},"[Lawrence Berkeley Laboratory, University of California, Berkeley, USA]",[],{"title":448},{"VI":449},"J. R. Castro",{"id":451,"sortIndex":98,"researcher":19,"roles":452,"affiliations":453,"properties":460,"displayName":462,"givenName":19,"familyName":19},"2910b868-984d-419a-88d3-c45dd81cb82d",[134],[454],{"id":440,"sortIndex":20,"affiliation":455,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":456,"slug":19,"properties":457,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":459,"statistic":19},[],{"title":458},{"EN":445},[],{"title":461},{"VI":462},"P. L. Petti",{"id":464,"sortIndex":99,"researcher":19,"roles":465,"affiliations":466,"properties":473,"displayName":475,"givenName":19,"familyName":19},"d65446b2-67fe-4b9c-899c-f0d152a568a0",[134],[467],{"id":440,"sortIndex":20,"affiliation":468,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":469,"slug":19,"properties":470,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":472,"statistic":19},[],{"title":471},{"EN":445},[],{"title":474},{"VI":475},"I. K. Daftari",{"id":477,"sortIndex":177,"researcher":19,"roles":478,"affiliations":479,"properties":486,"displayName":488,"givenName":19,"familyName":19},"b7914461-2103-40d5-bd2e-ef3bfa7bd182",[134],[480],{"id":440,"sortIndex":20,"affiliation":481,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":482,"slug":19,"properties":483,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":485,"statistic":19},[],{"title":484},{"EN":445},[],{"title":487},{"VI":488},"J. M. Collier",{"id":490,"sortIndex":96,"researcher":19,"roles":491,"affiliations":492,"properties":499,"displayName":501,"givenName":19,"familyName":19},"8d029b3a-a422-4bdd-a705-c33c4232faed",[134],[493],{"id":440,"sortIndex":20,"affiliation":494,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":495,"slug":19,"properties":496,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":498,"statistic":19},[],{"title":497},{"EN":445},[],{"title":500},{"VI":501},"T. Renner",{"id":503,"sortIndex":206,"researcher":19,"roles":504,"affiliations":505,"properties":512,"displayName":514,"givenName":19,"familyName":19},"1f8fb97b-e81d-4f32-9cb3-a93a97f29be2",[134],[506],{"id":440,"sortIndex":20,"affiliation":507,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":508,"slug":19,"properties":509,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":511,"statistic":19},[],{"title":510},{"EN":445},[],{"title":513},{"VI":514},"B. Ludewigt",{"id":516,"sortIndex":222,"researcher":19,"roles":517,"affiliations":518,"properties":525,"displayName":527,"givenName":19,"familyName":19},"4b633622-1bd9-4ad2-a455-0f73cf4b6753",[134],[519],{"id":440,"sortIndex":20,"affiliation":520,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":521,"slug":19,"properties":522,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":524,"statistic":19},[],{"title":523},{"EN":445},[],{"title":526},{"VI":527},"W. Chu",{"id":529,"sortIndex":236,"researcher":19,"roles":530,"affiliations":531,"properties":538,"displayName":540,"givenName":19,"familyName":19},"9a9cc52c-2a63-4b18-b53f-8346bedc2677",[134],[532],{"id":440,"sortIndex":20,"affiliation":533,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":534,"slug":19,"properties":535,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":537,"statistic":19},[],{"title":536},{"EN":445},[],{"title":539},{"VI":540},"S. Pitluck",{"id":542,"sortIndex":543,"researcher":19,"roles":544,"affiliations":545,"properties":552,"displayName":554,"givenName":19,"familyName":19},"595f7cda-5c1b-4c17-9863-5df3dc34456c",8,[134],[546],{"id":440,"sortIndex":20,"affiliation":547,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":548,"slug":19,"properties":549,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":551,"statistic":19},[],{"title":550},{"EN":445},[],{"title":553},{"VI":554},"T. Fleming",{"id":556,"sortIndex":557,"researcher":19,"roles":558,"affiliations":559,"properties":566,"displayName":568,"givenName":19,"familyName":19},"3a605b6f-ef2e-4726-8d8e-65f1de34ea8b",9,[134],[560],{"id":440,"sortIndex":20,"affiliation":561,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":562,"slug":19,"properties":563,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":565,"statistic":19},[],{"title":564},{"EN":445},[],{"title":567},{"VI":568},"J. Alonso",{"id":570,"sortIndex":571,"researcher":19,"roles":572,"affiliations":573,"properties":580,"displayName":582,"givenName":19,"familyName":19},"56a8f25d-4de0-4581-836b-408e71b210b0",10,[134],[574],{"id":440,"sortIndex":20,"affiliation":575,"properties":19},{"id":440,"createTime":19,"updateTime":19,"relativeEntities":576,"slug":19,"properties":577,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":579,"statistic":19},[],{"title":578},{"EN":445},[],{"title":581},{"VI":582},"E. Blakely",{"url":433,"publisher":584,"properties":633},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":585,"slug":10,"properties":586,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":590,"manageAffiliations":602,"indexDatabases":613,"url":93,"thumbnailPath":19,"statistic":628,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":587,"title":588,"eissn":589},{"VOID":13},{"EN":10},{"VOID":16},[591,595,598],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":592,"label":593,"description":594,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":596,"label":597,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":599,"label":600,"description":601,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[603,608],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":604,"slug":19,"properties":605,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":607,"statistic":19},[],{"title":606},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":609,"slug":19,"properties":610,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":612,"statistic":19},[],{"title":611},{"EN":53},[],[614,621],{"id":57,"indexDatabase":615,"url":68,"indexYears":69,"academicFieldIds":620,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":616,"label":617,"description":618,"key":65,"publicationTags":619,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":622,"url":19,"indexYears":19,"academicFieldIds":627,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":623,"label":624,"description":625,"key":84,"publicationTags":626,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":629,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":630,"totalCitation":20,"totalCitationByYear":631,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":632,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":634,"volume":636},{"VOID":635},"233-240",{"VOID":637},"31","1992-09-01",1992,"ERROR_IN_GET_PLATFORM_ID","2026-08-13T20:20:42.618+00:00",[86],{"id":644,"createTime":645,"updateTime":646,"relativeEntities":647,"slug":648,"properties":649,"entityType":123,"verifyStatus":124,"verifyTime":658,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":659,"fullTextUrl":660,"authors":661,"publicationType":248,"publisherRelationship":718,"citationCount":177,"citationInfo":775,"publishDate":778,"publishYear":776,"citationAnalyzeStatus":779,"lastCitationAnalyze":646,"indexDatabases":780,"openAccess":19,"references":781,"isForceReanalyzing":307},"096eaef7-bfa5-45f3-8032-3198bbb25e8d","2024-02-21T11:04:12.068+00:00","2026-07-28T22:08:12.387+00:00",[],"Evaluation-of-spermatogenic-response-of-mice-to-the-induction-of-mutations-by-combined-treatment-with-X-rays-and-antineoplastic-drugs",{"abstract":650,"title":652,"gsPaper":654,"doi":656},{"EN":651},"Combined treatment with low doses of X-rays plus cyclophosphamide (0.25 Gy+25 mg\u002Fkg body weight) or X-rays plus mitomycin C (0.25 Gy+1.75 mg\u002Fkg body weight) did not induce significant dominant lethal effects in any stage of spermatogenesis when a parameter representing pre- and postimplantation loss, such as the decrease of live implants per female, was applied. After combined exposure to high doses of X-rays plus cyclophosphamide (1.00 Gy+100 mg\u002Fkg body weight) an increase of dominant lethal mutations (DLMs) was observed in differentiating spermatogonia, spermatids, and spermatozoa with the same parameter. Combined treatment with high doses of X-rays plus mitomycin C (1.00 Gy+5.25 mg\u002Fkg body weight) produced DLMs in differentiating spermatogonia and late spermatocytes. A calculation of “enhanced risk” was applied to the data of DLMs from the combined treatment regimen and was based on the proportion of dead implants (postimplantation loss only). Enhanced risk could be shown not only after high but also after low combined exposure to X-rays plus cyclophosphamide and X-rays plus mitomycin C. With low doses this enhanced risk was observed in spermatids for X-rays plus cyclophosphamide and in differentiating spermatogonia to early spermatocytes for X-rays plus mitomycin C.",{"EN":653},"Evaluation of spermatogenic response of mice to the induction of mutations by combined treatment with X rays and antineoplastic drugs",{"VOID":655},"[\"10696364498345374323\"]",{"VOID":657},"10.1007\u002FBF01212678","2024-05-02T19:24:18.037+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01212678","https:\u002F\u002Flink.springer.com\u002Fcontent\u002Fpdf\u002F10.1007\u002FBF01212678.pdf",[662,677,690,703],{"id":663,"sortIndex":20,"researcher":19,"roles":664,"affiliations":665,"properties":674,"displayName":676,"givenName":19,"familyName":19},"58e23212-4ee8-40bd-be50-2713f4c60dc9",[134],[666],{"id":667,"sortIndex":20,"affiliation":668,"properties":19},"f20b9f2f-7ce5-42a1-85aa-83a9547fb1ef",{"id":667,"createTime":19,"updateTime":19,"relativeEntities":669,"slug":19,"properties":670,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":673,"statistic":19},[],{"title":671},{"VI":672},"Department of Radiation Protection and Radiobiology, National Institute of Hygiene, Warsaw, Poland",[],{"title":675},{"VI":676},"Lenarczyk, Marek",{"id":678,"sortIndex":98,"researcher":19,"roles":679,"affiliations":680,"properties":687,"displayName":689,"givenName":19,"familyName":19},"51a9c1c9-5863-43cb-a560-01623a147569",[134],[681],{"id":667,"sortIndex":20,"affiliation":682,"properties":19},{"id":667,"createTime":19,"updateTime":19,"relativeEntities":683,"slug":19,"properties":684,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":686,"statistic":19},[],{"title":685},{"VI":672},[],{"title":688},{"VI":689},"Dobrzyńska, Malgorzata M.",{"id":691,"sortIndex":99,"researcher":19,"roles":692,"affiliations":693,"properties":700,"displayName":702,"givenName":19,"familyName":19},"b00c3777-16e3-429a-bc4c-9c85e10c7543",[134],[694],{"id":667,"sortIndex":20,"affiliation":695,"properties":19},{"id":667,"createTime":19,"updateTime":19,"relativeEntities":696,"slug":19,"properties":697,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":699,"statistic":19},[],{"title":698},{"VI":672},[],{"title":701},{"VI":702},"Slowikowska, Maria G.",{"id":704,"sortIndex":177,"researcher":19,"roles":705,"affiliations":706,"properties":715,"displayName":717,"givenName":19,"familyName":19},"4ec57f19-2eee-4c6b-84ab-86ae843a156e",[134],[707],{"id":708,"sortIndex":20,"affiliation":709,"properties":19},"7fe427d0-1a30-4537-8197-e5a6fe9c37a6",{"id":708,"createTime":19,"updateTime":19,"relativeEntities":710,"slug":19,"properties":711,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":714,"statistic":19},[],{"title":712},{"VI":713},"Department of Biology, Academy of Physical Education, Warsaw, Poland",[],{"title":716},{"VI":717},"Gajewski, Antoni K.",{"url":659,"publisher":719,"properties":768},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":720,"slug":10,"properties":721,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":725,"manageAffiliations":737,"indexDatabases":748,"url":93,"thumbnailPath":19,"statistic":763,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":722,"title":723,"eissn":724},{"VOID":13},{"EN":10},{"VOID":16},[726,730,733],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":727,"label":728,"description":729,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":731,"label":732,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":734,"label":735,"description":736,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[738,743],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":739,"slug":19,"properties":740,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":742,"statistic":19},[],{"title":741},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":744,"slug":19,"properties":745,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":747,"statistic":19},[],{"title":746},{"EN":53},[],[749,756],{"id":57,"indexDatabase":750,"url":68,"indexYears":69,"academicFieldIds":755,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":751,"label":752,"description":753,"key":65,"publicationTags":754,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":757,"url":19,"indexYears":19,"academicFieldIds":762,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":758,"label":759,"description":760,"key":84,"publicationTags":761,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":764,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":765,"totalCitation":20,"totalCitationByYear":766,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":767,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"issue":769,"pages":771,"volume":773},{"VOID":770},"3",{"VOID":772},"219-231",{"VOID":774},"33",{"total":177,"publishYear":776,"statisticByYear":777},1994,{"1999":98,"2000":98,"2006":98},"1994-09-01","DONE_ANALYZE_CITATION",[86],[782,785,788,791,794,797,800,803,806,809,812,815,818,821,824,827,830,833,836,839,842,845,848,851,854,857,860,863,866,869,872,875,878,881,884],{"id":19,"text":783,"url":19,"identifiers":784},"citation_journal_title=Mutat Res; citation_title=Cytogenetic effect of mitomycin C on mouse spermatogonia; citation_author=D Adler; citation_volume=21; citation_publication_date=1973; citation_pages=20-21; citation_id=CR1",{},{"id":19,"text":786,"url":19,"identifiers":787},"citation_journal_title=Mutat Res; citation_title=Dominant lethal test with known mutagens in two laboratories; citation_author=D Anderson, DB McGregor, IFM Purchase, MCF Hodge, JA Cuthbert; citation_volume=43; citation_publication_date=1977; citation_pages=231-246; citation_id=CR2",{},{"id":19,"text":789,"url":19,"identifiers":790},"citation_journal_title=J Clin Oncol; citation_title=Increased risk of secondary acute nonlymphatic leukemia after extended-field radiation therapy combined with MOPP chemotherapy for Hodgkin's disease; citation_author=IM Andrieu, N Ifrah, Ch Payen, J Fermanian, Y Coscas, G Flandrin; citation_volume=8; citation_publication_date=1990; citation_pages=1148-1154; citation_id=CR3",{},{"id":19,"text":792,"url":19,"identifiers":793},"citation_journal_title=Int J Radiat Biol; citation_title=Genetic effects of combined chemical X-ray treatments in male mouse germ cells; citation_author=BM Cattanach, C Rasberry; citation_volume=51; citation_publication_date=1987; citation_pages=985-996; citation_id=CR4",{},{"id":19,"text":795,"url":19,"identifiers":796},"citation_journal_title=Mutat Res; citation_title=The induction of reciprocal translocation in mouse germ cells by chemical and ionizing radiation. I. Dose-response relationships and combined effects of bleomycin with thio-tepa and gamma rays; citation_author=JC Luca, FN Dulont, JM Andrieu; citation_volume=202; citation_publication_date=1988; citation_pages=65-70; citation_id=CR5",{},{"id":19,"text":798,"url":19,"identifiers":799},"citation_journal_title=Natl Cancer Inst Monogr; citation_title=Intensive chemotherapy for Hodgkin's disease: long-term complications; citation_author=VT DeVita, IC Arseneau, RJ Sherins, GP Canellos, RC Young; citation_volume=36; citation_publication_date=1973; citation_pages=447-452; citation_id=CR6",{},{"id":19,"text":801,"url":19,"identifiers":802},"citation_journal_title=Ann Intern Med; citation_title=Curability of advanced Hodgkin's disease with chemotherapy; citation_author=VT DeVita, RM Simon, SM Hubbard, RC Young, CW Berard, JH Moxley, E Frei, PP Carbone, GP Canellos; citation_volume=92; citation_publication_date=1980; citation_pages=587-596; citation_id=CR7",{},{"id":19,"text":804,"url":19,"identifiers":805},"citation_journal_title=Mutat Res; citation_title=Comparison of radiation- and chemically induced dominant lethal mutations in male mice; citation_author=UH Ehling; citation_volume=11; citation_publication_date=1971; citation_pages=35-44; citation_id=CR8",{},{"id":19,"text":807,"url":19,"identifiers":808},"citation_journal_title=Mutat Res; citation_title=Synergistic effect of mitomycin C and radiation on embryonic litter size reduction in mice; citation_author=UH Ehling; citation_volume=13; citation_publication_date=1971; citation_pages=433-436; citation_id=CR9",{},{"id":19,"text":810,"url":19,"identifiers":811},"citation_journal_title=Mutat Res; citation_title=Differential spermatogenic response of mice to the induction of mutations by antineoplastic drugs; citation_author=UH Ehling; citation_volume=26; citation_publication_date=1974; citation_pages=285-295; citation_id=CR10",{},{"id":19,"text":813,"url":19,"identifiers":814},"citation_journal_title=Mutat Res; citation_title=Mutagenicity testing of vincristine sulfate in germ cells of male mice; citation_author=UH Ehling, J Kratochvilova, W Lehmacher, A Neuhauser-Klaus; citation_volume=209; citation_publication_date=1988; citation_pages=107-113; citation_id=CR11",{},{"id":19,"text":816,"url":19,"identifiers":817},"citation_journal_title=Mutat Res; citation_title=Procarbazine-induced specific-locus mutations in male mice; citation_author=UH Ehling, A Neuhauser; citation_volume=59; citation_publication_date=1979; citation_pages=245-256; citation_id=CR12",{},{"id":19,"text":819,"url":19,"identifiers":820},"citation_journal_title=Mutat Res; citation_title=Induction of spicific-locus and dominant lethal mutations by cyclophosphamide and combined cyclophosphamide-radiation treatment in male mice; citation_author=UH Ehling, A Neuhauser-Klaus; citation_volume=199; citation_publication_date=1988; citation_pages=21-30; citation_id=CR13",{},{"id":19,"text":822,"url":19,"identifiers":823},"citation_journal_title=Toxicol Appl Pharmacol; citation_title=Detection of chemical mutagens by the dominant lethal assay in the mouse; citation_author=SS Eptein, E Arnold, J Andree, W Bess, J Bishop; citation_volume=23; citation_publication_date=1972; citation_pages=288-325; citation_id=CR14",{},{"id":19,"text":825,"url":19,"identifiers":826},"citation_journal_title=Agent Actions; citation_title=Embryolethality in the mouse following treatment of males with cyclophosphamide at specific germ cell stages; citation_author=H Fritz, D Muller, R Hess; citation_volume=3; citation_publication_date=1973; citation_pages=35-37; citation_id=CR15",{},{"id":19,"text":828,"url":19,"identifiers":829},"citation_journal_title=Mutat Res; citation_title=Detection of X-ray induced dominant lethal mutations in mice: an in vitro approach; citation_author=LS Goldstein, AI Spindle; citation_volume=41; citation_publication_date=1976; citation_pages=289-296; citation_id=CR16",{},{"id":19,"text":831,"url":19,"identifiers":832},"citation_journal_title=Radiat Res; citation_title=X-ray sensitivity of the preimplantation mouse embryo in vitro; citation_author=LS Goldstein, AI Spindle, RA Pedersen; citation_volume=62; citation_publication_date=1978; citation_pages=276-287; citation_id=CR17",{},{"id":19,"text":834,"url":19,"identifiers":835},"citation_journal_title=Mutat Res; citation_title=A guide for mutagenicity testing using the dominant lethal assay; citation_author=S Green, KS Lavappa, C Manandhar, J Sheu, E Whorton, JA Spriner; citation_volume=189; citation_publication_date=1987; citation_pages=167-174; citation_id=CR18",{},{"id":19,"text":837,"url":19,"identifiers":838},"citation_journal_title=Mutat Res; citation_title=Induction of congenital malformations in the offspring of male mice treated with X-rays at pre-meiotic and post-meiotic stages; citation_author=KM Kirk, MF Lyon; citation_volume=125; citation_publication_date=1984; citation_pages=75-85; citation_id=CR19",{},{"id":19,"text":840,"url":19,"identifiers":841},"citation_journal_title=Mutat Res; citation_title=Experiences with the dominant lethal test in female mice: effects of alkylating agents and artificial sweeteners on pre-ovulatory oocyte stages; citation_author=L Machemer, D Lorke; citation_volume=29; citation_publication_date=1975; citation_pages=209-214; citation_id=CR20",{},{"id":19,"text":843,"url":19,"identifiers":844},"citation_journal_title=Mutat Res; citation_title=Action of mitomycin on mouse spermatogonia; citation_author=A Manyak, E Schleiermacher; citation_volume=19; citation_publication_date=1973; citation_pages=99-108; citation_id=CR21",{},{"id":19,"text":846,"url":19,"identifiers":847},"citation_journal_title=Mutat Res; citation_title=Effects of prolonged chemical treatment with cyclophosphamide and 6-mercaptopurine in the dominant lethal test system; citation_author=FM Moreland, CW Shen, JA Springer, S Green; citation_volume=90; citation_publication_date=1981; citation_pages=193-199; citation_id=CR22",{},{"id":19,"text":849,"url":19,"identifiers":850},"citation_journal_title=Int J Radiat Biol; citation_title=Toxicity of various combination of X-rays, caffeine, and mercury in mouse embryos; citation_author=W-U Muller; citation_volume=56; citation_publication_date=1989; citation_pages=315-323; citation_id=CR23",{},{"id":19,"text":852,"url":19,"identifiers":853},"citation_journal_title=Mutat Res; citation_title=Genotoxic potency in mouse spermatogonial stem cells of thiomethamine, mitomycin c, ethylnitrosourea, procarbazine, and propyl methanosufonate as measured by F1 congenital defects; citation_author=TK Nagao, K Fujikawa; citation_volume=229; citation_publication_date=1990; citation_pages=123-128; citation_id=CR24",{},{"id":19,"text":855,"url":19,"identifiers":856},"citation_title=Effects of radiation on the testis; citation_inbook_title=Handbook of physiology; citation_publication_date=1975; citation_pages=233-243; citation_id=CR25; citation_author=EF Oakberg; citation_publisher=American Physiological Society",{},{"id":19,"text":858,"url":19,"identifiers":859},"citation_journal_title=J Natl Cancer Inst; citation_title=Synergism in carcinogens; citation_author=AE Reif; citation_volume=73; citation_publication_date=1984; citation_pages=25-39; citation_id=CR26",{},{"id":19,"text":861,"url":19,"identifiers":862},"citation_journal_title=Am J Epidemiol; citation_title=Synergy and antagonism in cause-effect relationship; citation_author=K Rothman; citation_volume=99; citation_publication_date=1974; citation_pages=385-388; citation_id=CR27",{},{"id":19,"text":864,"url":19,"identifiers":865},"citation_journal_title=Am J Epidemiol; citation_title=The estimation of synergy and antagonism; citation_author=K Rothman; citation_volume=103; citation_publication_date=1976; citation_pages=506-511; citation_id=CR28",{},{"id":19,"text":867,"url":19,"identifiers":868},"citation_journal_title=Adv Cancer Res; citation_title=Toxicity of antineoplastic agents in man. Chromosomal aberration, antifertility effects, congenital malformation, and carcinogenic potential; citation_author=SM Sieber, RH Adamson; citation_volume=22; citation_publication_date=1980; citation_pages=57-155; citation_id=CR29",{},{"id":19,"text":870,"url":19,"identifiers":871},"citation_journal_title=Ann Intern Med; citation_title=Effects of drug treatment for lymphoma on male reproductive capacity; citation_author=RJ Sherins, VT Vita; citation_volume=79; citation_publication_date=1973; citation_pages=216-220; citation_id=CR30",{},{"id":19,"text":873,"url":19,"identifiers":874},"Some antineoplastic and immunosupressive agents (1980) IARC Monographs, vol 26, Lyon, pp 165–202",{},{"id":19,"text":876,"url":19,"identifiers":877},"citation_journal_title=Mutat Res; citation_title=Induction of translocation by cyclophosphamide in different germ cells stages of male mice: cytological characterization and transmission; citation_author=RE Sotomayor, RB Cumming; citation_volume=27; citation_publication_date=1975; citation_pages=375-388; citation_id=CR32",{},{"id":19,"text":879,"url":19,"identifiers":880},"citation_journal_title=Int J Radiat Biol; citation_title=Dose-effect relationships and general mechanisms of combined exposure; citation_author=C Streffer, W-U Muller; citation_volume=51; citation_publication_date=1987; citation_pages=961-969; citation_id=CR33",{},{"id":19,"text":882,"url":19,"identifiers":883},"citation_title=Ionizing radiation. Sources and biological effects; citation_publication_date=1982; citation_id=CR34; citation_publisher=United Nations Publication",{},{"id":19,"text":885,"url":19,"identifiers":886},"citation_journal_title=Br Med J; citation_title=Long-term effects of cyclophosmphamide on testicular function; citation_author=AR Watson, CP Rance, J Brain; citation_volume=291; citation_publication_date=1985; citation_pages=1457-1469; citation_id=CR35",{},{"id":888,"createTime":889,"updateTime":890,"relativeEntities":891,"slug":892,"properties":893,"entityType":123,"verifyStatus":124,"verifyTime":902,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":177,"primaryUrl":903,"fullTextUrl":19,"authors":904,"publicationType":248,"publisherRelationship":920,"citationCount":20,"citationInfo":975,"publishDate":978,"publishYear":976,"citationAnalyzeStatus":18,"lastCitationAnalyze":890,"indexDatabases":979,"openAccess":19,"references":980,"isForceReanalyzing":307},"1b2ee999-37f8-45c3-802d-1e00a9ac4274","2023-12-02T11:01:39.451+00:00","2026-07-28T05:09:55.191+00:00",[],"Mechanistic-state-vector-model-for-cell-killing-by-ionizing-radiation",{"abstract":894,"title":896,"gsPaper":898,"doi":900},{"EN":895},"By use of the mechanistic state vector model (MSV model) it is demonstrated that under circumstances where cell division during irradiation is unlikely:\n                  \n                    \n                    \n                  \n                  \n                    \n                    \n                  \n                  \n                    \n                    \n                  \n                  \n                    \n                    \n                  \n                \n",{"EN":897},"Mechanistic state vector model for cell killing by ionizing radiation",{"VOID":899},"[\"12049074977998809988\"]",{"VOID":901},"10.1007\u002FBF01323939","2024-04-30T03:44:16.746+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF01323939",[905],{"id":906,"sortIndex":20,"researcher":19,"roles":907,"affiliations":908,"properties":917,"displayName":919,"givenName":19,"familyName":19},"b6a9707e-528a-4592-8bb7-08ed9c5cb38d",[134],[909],{"id":910,"sortIndex":20,"affiliation":911,"properties":19},"3ab1029a-d710-4db1-bb8c-1d21b91de76b",{"id":910,"createTime":19,"updateTime":19,"relativeEntities":912,"slug":19,"properties":913,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":916,"statistic":19},[],{"title":914},{"VI":915},"Department of Physiology and Biophysics, and Bioengineering, University of Illinois, Urbana, USA",[],{"title":918},{"VI":919},"B. R. Scott",{"url":903,"publisher":921,"properties":970},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":922,"slug":10,"properties":923,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":927,"manageAffiliations":939,"indexDatabases":950,"url":93,"thumbnailPath":19,"statistic":965,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":924,"title":925,"eissn":926},{"VOID":13},{"EN":10},{"VOID":16},[928,932,935],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":929,"label":930,"description":931,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":933,"label":934,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":936,"label":937,"description":938,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[940,945],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":941,"slug":19,"properties":942,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":944,"statistic":19},[],{"title":943},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":946,"slug":19,"properties":947,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":949,"statistic":19},[],{"title":948},{"EN":53},[],[951,958],{"id":57,"indexDatabase":952,"url":68,"indexYears":69,"academicFieldIds":957,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":953,"label":954,"description":955,"key":65,"publicationTags":956,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":959,"url":19,"indexYears":19,"academicFieldIds":964,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":960,"label":961,"description":962,"key":84,"publicationTags":963,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":966,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":967,"totalCitation":20,"totalCitationByYear":968,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":969,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":971,"volume":973},{"VOID":972},"195-211",{"VOID":974},"14",{"total":20,"publishYear":976,"statisticByYear":977},1977,{},"1977-09-01",[86],[981,984,987,993,996,999,1002,1005,1008,1011,1014,1017,1020,1023,1026,1029,1032,1035,1038,1041,1044,1047,1050,1053,1056,1059,1062,1065,1068,1071,1074,1077,1083,1086,1089,1092,1095,1098,1101],{"id":19,"text":982,"url":19,"identifiers":983},"Sacher, G. A.: Survival of mice under duration-of-life exposure to X-rays at various dose rates. In: Biological effects of external X and gamma radiation (Zirkle, R. E., Ed.), Part 2, TID-5220, Dept. of Commerce, Office of Technical Services, Washington, D.C. First issued as USAEC Report CH3900, University of Chicago Metallurgical Laboratory 1956",{},{"id":19,"text":985,"url":19,"identifiers":986},"Sacher, G. A., Grahn, D.: Survival of mice under duration-of-life exposure to gamma rays. I. The dosage-survival relation and the lethality function. J. nat. Cancer Inst.32, 277–312 (1964)",{},{"id":988,"text":989,"url":990,"identifiers":991},"4c68646b-0035-4279-8000-0006b275d4fa","Hahn, G. M., Kallman, R. F.: State vector description of the proliferation of mammalian cells in tissue culture. II. Effects of single and multiple doses of ionizing radiations. Radiat. Res.30, 702–713 (1967)","https:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs10440-022-00541-7",{"doi":992},"10.1007\u002Fs10440-022-00541-7",{"id":988,"text":994,"url":990,"identifiers":995},"Sacher, G. A., Trucco, E.: The stochastic theory of mortality. Ann. N.Y. Acad. Sci.96, 985–1007 (1962)",{"doi":992},{"id":988,"text":997,"url":990,"identifiers":998},"Sacher, G. A.: Mathematical analysis of the division delay produced by ionizing radiation. Radiat. Res.33, 664–658 (1968)",{"doi":992},{"id":19,"text":1000,"url":19,"identifiers":1001},"Kappos, A., Pohlit, W.: A cybernetic model for radiation reactions in living cells. I. Sparsely-ionizing radiation; stationary cells. Int. J. Radiat. Biol.22, 51–65 (1972)",{},{"id":19,"text":1003,"url":19,"identifiers":1004},"Sacher, G. A.: On the statistical nature of mortality, with special reference to chronic radiation mortality. Radiology67, 250–257 (1956)",{},{"id":19,"text":1006,"url":19,"identifiers":1007},"Lea, D. E.: The target theory. In: Actions of radiations on living cells. Cambridge University Press 1955",{},{"id":988,"text":1009,"url":990,"identifiers":1010},"Dienes, G. J.: A kinetic model of biological radiation responses. Radiat. Res.28, 183–202 (1966)",{"doi":992},{"id":19,"text":1012,"url":19,"identifiers":1013},"Sacher, G. A., Gabriel, J. R., Tyler, S. A.: A markov chain model for chromosome aberrations and cell lethality. Radiat. Res.59, 296 (1974)",{},{"id":988,"text":1015,"url":990,"identifiers":1016},"Dewey, W. C., Noel, J. S.: Changes in radiosensitivity and dispersion of chromatin during the cell cycle of synchronous Chinese hamster cells. Radiat. Res.52, 373–394 (1972)",{"doi":992},{"id":19,"text":1018,"url":19,"identifiers":1019},"Katz, R.: Track theory and radiation quality. In: Biophysical aspects of radiation quality, pp. 10–23. Vienna: International Atomic Energy Agency 1971",{},{"id":988,"text":1021,"url":990,"identifiers":1022},"Kellerer, A. M., Rossi, H. H.: RBE and the primary mechanism of radiation action. Radiat. Res.47, 15–34 (1971)",{"doi":992},{"id":988,"text":1024,"url":990,"identifiers":1025},"Kellerer, A. M., Rossi, H. H.: The theory of dual radiation action. Curr. Top. in Radiat. Res. Quart.8, 85–158 (1972)",{"doi":992},{"id":988,"text":1027,"url":990,"identifiers":1028},"Phillips, R. A., Tolmach, L. J.: Repair of potentially lethal damage in X-irradiated HeLa cells. Radiat. Res.29, 413–432 (1966)",{"doi":992},{"id":988,"text":1030,"url":990,"identifiers":1031},"Elkind, M. M., Sutton, H., Moses, W. B., Alescio, T., Swain, R. W.: Radiation response of mammalian cells grown in culture. V. Temperature dependence of repair of X-ray damage in surviving cells (aerobic and hypoxic). Radiat. Res.25, 359–376 (1965)",{"doi":992},{"id":988,"text":1033,"url":990,"identifiers":1034},"Todd, P.: Heavy-ion irradiation of cultured human cells. Radiat. Res., Suppl.7, 196–207 (1967)",{"doi":992},{"id":988,"text":1036,"url":990,"identifiers":1037},"Bewley, D. K.: A comparison of the response of mammalian cells to fast neutrons and charged particle beams. Radiat. Res.34, 446–458 (1968)",{"doi":992},{"id":19,"text":1039,"url":19,"identifiers":1040},"Christensen, R. C., Tobias, C. A., Tayler, W. D.: Heavy-ion-induced single- and double-strand breaks inφX-174 replicative form DNA. Int. J. Radiat. Biol.22, 457–477 (1972)",{},{"id":19,"text":1042,"url":19,"identifiers":1043},"Hall, E. J., Brown, J. M., Cavanagh, J.: Radiosensitivity and the oxygen effect measured at different phases of the mitotic cycle using synchronously dividing cells of the root meristem ofVicia faba. Radiat. Res.35, 622–634 (1968)",{},{"id":988,"text":1045,"url":990,"identifiers":1046},"Kruuv, J., Sinclair, W. K.: X-ray sensitivity of synchronized Chinese hamster cells irradiated during hypoxia. Radiat. Res.36, 45–54 (1968)",{"doi":992},{"id":988,"text":1048,"url":990,"identifiers":1049},"Koch, C. J., Kruuv, J., Frey, H. E.: Variation in radiation response of mammalian cells as a function of oxygen tension. Radiat. Res.53, 33–42 (1973)",{"doi":992},{"id":988,"text":1051,"url":990,"identifiers":1052},"Epp, E. R., Weiss, H., Kessaris, N. D., Santomasso, A., Heslin, J., Ling, C. C.: Oxygen diffusion times in bacterial cells irradiated with high intensity electrons: New upper limit to the lifetime oxygen-sensitive species suspected to be induced at critical sites in bacterial cells. Radiat. Res.54, 171–180 (1973)",{"doi":992},{"id":988,"text":1054,"url":990,"identifiers":1055},"Till, J. E., McCulloch, E. A.: A direct measurement of the radiation sensitivity of normal mouse bone marrow cells. Radiat. Res.14, 213–222 (1961)",{"doi":992},{"id":988,"text":1057,"url":990,"identifiers":1058},"Hall, E. J., Bedford, J. S.: Dose rate: Its effect on the survival of HeLa cells irradiated with gamma rays. Radiat. Res.22, 305–315 (1964)",{"doi":992},{"id":19,"text":1060,"url":19,"identifiers":1061},"Hall, E. J., Berry, R. J., Bedford, J. S.: Dose-rate effects in mammalian cells in vitro and in vivo. In: Proceedings of a Symposium on Dose-Rate in Mammalian Radiation Biology, UT-AEC, pp. 15.1–15.2, 1968",{},{"id":988,"text":1063,"url":990,"identifiers":1064},"Winans, L. F., Dewey, W. C., Dettor, C. M.: Repair of sublethal and potentially lethal X-ray damage in synchronous Chinese hamster cells. Radiat. Res.52, 343, Fig. 8 (1972)",{"doi":992},{"id":988,"text":1066,"url":990,"identifiers":1067},"Skarsgard, L. D., Kihlman, B. A., Parker, L., Pujara, C. M., Richardson, S.: Survival, chromosome abnormalities, and recovery in heavy-ion and X-irradiated mammalian cells. Radiat. Res., Suppl.7, 208–221 (1967)",{"doi":992},{"id":19,"text":1069,"url":19,"identifiers":1070},"Baarli, J., Bianchi, M., Sullivan, A. H., DiPaola, M.: Biological effects of hadrons at very low doses. In: Proceedings of the International Symposium on Biological Effects of Low Level Radiation Pertinent to Protection of Man and His Environment, Chicago, November, 1975, pp. 195–204",{},{"id":988,"text":1072,"url":990,"identifiers":1073},"Baarli, J., Bianchi, M., Sullivan, A. H., Quintiliani, M.: An estimation of the RBE of stopped pions from observations of spermatogonia survival in mice. Int. J. Radiat. Biol.19, (6), 534–546 (1971)",{"doi":992},{"id":19,"text":1075,"url":19,"identifiers":1076},"Schambra, P. E., Hutchinson, F.: The action of fast heavy ions on biological material. II. Effects on T1 andφX-174 bacteriophage and double-strand and single strand DNA. Radiat. Res.23, 514–526 (1964)",{},{"id":1078,"text":1079,"url":1080,"identifiers":1081},"3631a3ed-b3c1-47dd-886e-239a8586c672","Bresler, S. E., Kalinin, V. L., Kopylova, Yu. I., Krivisky, A. S., Rybchin, V. N., Scelegedin, V. N.: Study of genetic effects of high energy radiations with different ionizing capacities on extracellular phages. Mutation Res.29, 1–20 (1975)","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F0027510775900172",{"doi":1082},"10.1016\u002F0027-5107(75)90017-2",{"id":19,"text":1084,"url":19,"identifiers":1085},"Barendsen, G. W., Beusker, T. L. J., Vergroesan, A. J., Budke, L.: Effects of different ionizing radiations on human cells in tissue culture. Radiat. Res.13, 841–849 (1960)",{},{"id":988,"text":1087,"url":990,"identifiers":1088},"Payne, M. G., Garrett, W. R.: Application of microdosimetry to models of cell survival. I. Radiat. Res.63, 201–210 (1975)",{"doi":992},{"id":19,"text":1090,"url":19,"identifiers":1091},"Delattre, P.: Systems approach of theoretical models in radiobiology and radiotherapy. Int. J. General System1, 105–117 (1974)",{},{"id":19,"text":1093,"url":19,"identifiers":1094},"Hug, O., Kellerer, A.: The stochastics of radiation effects. In: Biophysical aspects of radiation quality. Technical Reports Series No. 58, pp. 114–127, 1966",{},{"id":19,"text":1096,"url":19,"identifiers":1097},"Roesch, W. C.: Hit theory for low-LET radiation. Paper presented at the Annual Meeting of the Radiation Research Society, Portland Oregon, May 14–18, 1972",{},{"id":988,"text":1099,"url":990,"identifiers":1100},"Kellerer, A.: Analysis of dose-effect relations. In: Biophysical Aspects of Radiation Quality. Technical Reports Series No. 58, pp. 95–114, 1966",{"doi":992},{"id":988,"text":1102,"url":990,"identifiers":1103},"Scott, B. R.: A mechanistic state vector model for the interaction of ionizing radiation with cells. Ph.D. thesis, University of Illinois, 1974",{"doi":992},{"id":1105,"createTime":1106,"updateTime":1107,"relativeEntities":1108,"slug":1109,"properties":1110,"entityType":123,"verifyStatus":124,"verifyTime":1121,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":1122,"fullTextUrl":19,"authors":1123,"publicationType":248,"publisherRelationship":1253,"citationCount":177,"citationInfo":1308,"publishDate":1311,"publishYear":1309,"citationAnalyzeStatus":779,"lastCitationAnalyze":1312,"indexDatabases":1313,"openAccess":19,"references":19,"isForceReanalyzing":307},"ef2b263d-e0a8-4cfb-8087-e3ac3599004d","2023-12-12T21:01:06.914+00:00","2026-07-27T19:53:07.470+00:00",[],"Degradation-of-phospholipids-under-different-types-of-irradiation-and-varying-oxygen-saturation",{"abstract":1111,"title":1113,"gsPaper":1115,"references":1117,"doi":1119},{"EN":1112},"The effects of different types of radiation on the formation of peroxide forms of 2-dioleoyl-sn-glycero-3-phosphocholine were studied under various conditions. For the irradiation, an aqueous solution of small unilamellar vesicles was prepared. Variations in parameters such as the dose rate and molecular oxygen saturation levels were evaluated. Our study suggests that the mechanism of the peroxides formation process remains unchanged under irradiation by accelerated electrons, gamma and accelerated protons. The values of radiation chemical yields of the peroxidic form depend on the type of radiation, dose rate, and the saturation of molecular oxygen. The level of oxygen saturation strongly affects the values of radiation chemical yields as well, as the dissolved oxygen is an important agent participating in peroxidation and it is a source of free radicals during the radiolysis. The values of radiation chemical yields strongly suggest that the mechanism of radiation-induced peroxidation of phosphatidylcholines does not proceed via chain reaction. \n                  \n                    \n                      \n                    \n                  \n                ",{"EN":1114},"Degradation of phospholipids under different types of irradiation and varying oxygen saturation",{"VOID":1116},"[\"17139005317619034064\"]",{"VOID":1118},"Aikens J, Dix TA (1991) Perhydroxyl radical (HOO.) initiated lipid peroxidation. The role of fatty acid hydroperoxides. J Biol Chem 266(23):15091–15098\nBangham AD (1968) Membrane models with phospholipids. Prog Biophys Mol Biol 18:29–95\nBerger MJ, Coursey JS, Zucker MA, Chang J (2005) ESTAR, PSTAR, and ASTAR: computer programs for calculating stopping-power and range tables for electrons, protons, and helium ions (version 1.2.3). http:\u002F\u002Fphysics.nist.gov\u002FStar. Accessed 2 Jan 2015\nBielski BHJ, Arudi RL, Sutherland MW (1983) A study of the reactivity of HO2\u002FO ·−2 with unsaturated fatty acids. J Biol Chem 258:4759–4761\nChatterjee SN, Agarwal S (1983) Lipid peroxidation by ultraviolet light and high energy alpha particles from a cyclotron. Radiat Environ Biophys 21(4):275–280\nChatterjee SN, Agarwal S (1988) Liposomes as membranes model for study of lipid peroxidation. Free Radic Biol Med 4(1):51–72\nCheeseman K (1993) Lipid peroxidation and cancer. In: Halliwell B, Aruoma OI (eds) DNA and free radicals. Ellis Horwood, New York, pp 109–144\nDanielli JF, Davson H (1935) A contribution to the theory of permeability of thin films. J Cell Comp Physiol 5(4):495–508\nDavídková M, Juha L, Bittner M, Koptyaev S, Hájková V, Krása J, Pfeifer M, Štísová V, Bartnik A, Fiedorowicz H, Mikolajczyk J, Ryc L, Pína L, Horváth M, Babánková D, Cihelka J, Civiš S (2007) A high-power laser-driven source of sub-nanosecond soft X-ray pulses for single-shot radiobiology experiments. Radiat Res 168(3):382–387\nDobretsov GE, Borchevskaya TA, Petrov VA, Vladimirov YA (1977) The increase of phospholipid bilayer rigidity after lipid peroxidation. FEBS Lett 84(1):125–128\nGorter E, Grendel F (1925) On bimolecular layers of lipoids on the chromocytes of the blood. J Exp Med 41(4):439–443\nGray G (1963) The lipid composition of tumour cells. Biochem J 86(2):350–357\nHe M (2015) In situ characterizing membrane lipid phenotype of breast cancer cells using mass spectrometry profiling. Sci Rep 5:11298\nHicks M, Gebicki JM (1978) A quantitative relationship between permeability and the degree of peroxidation in ufasome membranes. Biochem Biophys Res Commun 80(4):704–708\nHöckel M, Vaupel P (2001) Tumor hypoxia: definitions and current clinical, biologic, and molecular aspects. J Natl Cancer Inst 93:266–276\nJoiner M, Kogel A (eds) (2009) Basic clinical radiobiology. Hodder Arnold, London\nKiang JG, Fukumoto R, Gorbunov NV (2012) Lipid peroxidation after ionizing irradiation leads to apoptosis and autophagy. In: Catala A (ed) Lipid peroxidation. InTech Open Access Publisher, Rijeka, Croatia, pp 261–278\nKojima K (1993) Molecular aspects of the plasma membrane in tumor cells. Nagoya J Med Sci 56(1–4):1–18\nLaVerne J (2000) OH radicals and oxidizing products in the gamma radiolysis of water. Radiat Res 153(2):196–200\nMarathe D, Mishra KP (2002) Radiation-induced changes in permeability in unilamellar phospholipid liposomes. Rad Res 157(6):686–692\nMichieli P (2009) Hypoxia, angiogenesis and cancer therapy: to breathe or not to breathe? Cell Cycle 8(20):3291–3296\nMihaljevic B, Katusin-Razem B, Razem D (1996) The reevaluation of the ferric thiocyanate assay for lipid hydroperoxides with special considerations of the mechanistic aspects of the response. Free Radic Biol Med 21:53–63\nMinotti G (1988) Metals and membrane lipid damage by oxy-radicals. Ann N Y Acad Sci 551(1):34–44\nNakazawa T, Nagatsuka S (1980) Radiation-induced lipid peroxidation and membrane permeability in liposomes. Int J Radiat Biol Relat Stud Phys Chem Med 38(5):537–544\nPachnerová Brabcová K, Sihver L, Yasuda N, Matuo Y, Stěpán V, Davídková M (2014) Clustered DNA damage on subcellular level: effect of scavengers. Radiat Environ Biophys 53(3):705–712\nSpector AA, Yorek MA (1985) Membrane lipid composition and cellular function. J Lipid Res 26(9):1015–1035\nStark G (1991) The effect of ionizing radiation on lipid membranes. Biochim Biophys Acta 1071(2):103–122\nWasselin-Trupin V, Baldacchino G, Bouffard S, Hickel B (2002) Hydrogen peroxide yields in water radiolysis by high-energy ion beams at constant LET. Radiat Phys Chem 65(1):53–61\nWoods RJ, Pikaev AK (1993) Radiolysis intermediates. Applied radiation chemistry: radiation processing. Wiley, New York, pp 535–536\nYorek AM (1993) Biological distribution. Phospholipids Handbook. Marcel Dekker, Inc., New York, pp 745–775\nZiegler C, Bonnefont-Rousselot D, Delacroix S, Habrand JL, Mazal A (1998) Effectiveness of proton and argon ions in initiating lipid peroxidation in low-density lipoproteins. Rad Res 150(4):483–487",{"VOID":1120},"10.1007\u002Fs00411-017-0693-6","2024-05-06T07:23:54.737+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs00411-017-0693-6",[1124,1149,1162,1175,1192,1205,1218,1231],{"id":1125,"sortIndex":20,"researcher":19,"roles":1126,"affiliations":1127,"properties":1144,"displayName":1146,"givenName":19,"familyName":19},"1223fb53-75c1-49f9-aa51-1ae403281cee",[134],[1128,1136],{"id":1129,"sortIndex":20,"affiliation":1130,"properties":19},"c48148a0-efa8-49ab-83c5-2716d4f66fd9",{"id":1129,"createTime":19,"updateTime":19,"relativeEntities":1131,"slug":19,"properties":1132,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1135,"statistic":19},[],{"title":1133},{"VI":1134},"Institute of Physics of the CAS, Prague, Czech Republic",[],{"id":1137,"sortIndex":98,"affiliation":1138,"properties":19},"a2454e20-b944-43b2-81c0-1ce8993f843c",{"id":1137,"createTime":19,"updateTime":19,"relativeEntities":1139,"slug":19,"properties":1140,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1143,"statistic":19},[],{"title":1141},{"VI":1142},"FNSPE, Czech Technical University in Prague, Prague, Czech Republic",[],{"title":1145,"gsAuthor":1147},{"VI":1146},"Luděk Vyšín",{"VOID":1148},"[\"0Oe3BSwAAAAJ\"]",{"id":1150,"sortIndex":98,"researcher":19,"roles":1151,"affiliations":1152,"properties":1159,"displayName":1161,"givenName":19,"familyName":19},"3451da01-126c-41d3-8169-8fb2caa8d85b",[134],[1153],{"id":1137,"sortIndex":20,"affiliation":1154,"properties":19},{"id":1137,"createTime":19,"updateTime":19,"relativeEntities":1155,"slug":19,"properties":1156,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1158,"statistic":19},[],{"title":1157},{"VI":1142},[],{"title":1160},{"VI":1161},"Kateřina Tomanová",{"id":1163,"sortIndex":99,"researcher":19,"roles":1164,"affiliations":1165,"properties":1172,"displayName":1174,"givenName":19,"familyName":19},"e3c4e5e4-1145-4e1c-ae7f-bd6af9d6c262",[134],[1166],{"id":1137,"sortIndex":20,"affiliation":1167,"properties":19},{"id":1137,"createTime":19,"updateTime":19,"relativeEntities":1168,"slug":19,"properties":1169,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1171,"statistic":19},[],{"title":1170},{"VI":1142},[],{"title":1173},{"VI":1174},"Tereza Pavelková",{"id":1176,"sortIndex":177,"researcher":19,"roles":1177,"affiliations":1178,"properties":1187,"displayName":1189,"givenName":19,"familyName":19},"a996a634-93ed-4a90-878a-f76fa0a45a60",[134],[1179],{"id":1180,"sortIndex":20,"affiliation":1181,"properties":19},"e2d8b338-336a-438e-9083-23de774f7331",{"id":1180,"createTime":19,"updateTime":19,"relativeEntities":1182,"slug":19,"properties":1183,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1186,"statistic":19},[],{"title":1184},{"VI":1185}," Nuclear Physics Institute of the CAS, Řež, Czech Republic",[],{"title":1188,"gsAuthor":1190},{"VI":1189},"Richard Wagner",{"VOID":1191},"[\"Uv3JZW8AAAAJ\"]",{"id":1193,"sortIndex":96,"researcher":19,"roles":1194,"affiliations":1195,"properties":1202,"displayName":1204,"givenName":19,"familyName":19},"1938ba4a-0402-4a76-8092-f0d07c249f88",[134],[1196],{"id":1180,"sortIndex":20,"affiliation":1197,"properties":19},{"id":1180,"createTime":19,"updateTime":19,"relativeEntities":1198,"slug":19,"properties":1199,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1201,"statistic":19},[],{"title":1200},{"VI":1185},[],{"title":1203},{"VI":1204},"Marie Davídková",{"id":1206,"sortIndex":206,"researcher":19,"roles":1207,"affiliations":1208,"properties":1215,"displayName":1217,"givenName":19,"familyName":19},"cb34e20a-0ee6-4fd0-87e5-45f9087bf90e",[134],[1209],{"id":1137,"sortIndex":20,"affiliation":1210,"properties":19},{"id":1137,"createTime":19,"updateTime":19,"relativeEntities":1211,"slug":19,"properties":1212,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1214,"statistic":19},[],{"title":1213},{"VI":1142},[],{"title":1216},{"VI":1217},"Viliam Múčka",{"id":1219,"sortIndex":222,"researcher":19,"roles":1220,"affiliations":1221,"properties":1228,"displayName":1230,"givenName":19,"familyName":19},"cdf79276-8e7f-445a-acbf-5c2d67088b1d",[134],[1222],{"id":1137,"sortIndex":20,"affiliation":1223,"properties":19},{"id":1137,"createTime":19,"updateTime":19,"relativeEntities":1224,"slug":19,"properties":1225,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1227,"statistic":19},[],{"title":1226},{"VI":1142},[],{"title":1229},{"VI":1230},"Václav Čuba",{"id":1232,"sortIndex":236,"researcher":19,"roles":1233,"affiliations":1234,"properties":1250,"displayName":1252,"givenName":19,"familyName":19},"e785eab4-a155-4c61-94ba-3946890faa3f",[134],[1235,1241],{"id":1129,"sortIndex":20,"affiliation":1236,"properties":19},{"id":1129,"createTime":19,"updateTime":19,"relativeEntities":1237,"slug":19,"properties":1238,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1240,"statistic":19},[],{"title":1239},{"VI":1134},[],{"id":1242,"sortIndex":98,"affiliation":1243,"properties":1249},"e0564a26-119b-4fc7-b884-f4af300769ff",{"id":1242,"createTime":19,"updateTime":19,"relativeEntities":1244,"slug":19,"properties":1245,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1248,"statistic":19},[],{"title":1246},{"VI":1247},"Institute of Plasma Physics of the CAS, Prague, Czech Republic",[],{},{"title":1251},{"VI":1252},"Libor Juha",{"url":1122,"publisher":1254,"properties":1303},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1255,"slug":10,"properties":1256,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1260,"manageAffiliations":1272,"indexDatabases":1283,"url":93,"thumbnailPath":19,"statistic":1298,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":1257,"title":1258,"eissn":1259},{"VOID":13},{"EN":10},{"VOID":16},[1261,1265,1268],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":1262,"label":1263,"description":1264,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":1266,"label":1267,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":1269,"label":1270,"description":1271,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[1273,1278],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":1274,"slug":19,"properties":1275,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1277,"statistic":19},[],{"title":1276},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":1279,"slug":19,"properties":1280,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1282,"statistic":19},[],{"title":1281},{"EN":53},[],[1284,1291],{"id":57,"indexDatabase":1285,"url":68,"indexYears":69,"academicFieldIds":1290,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":1286,"label":1287,"description":1288,"key":65,"publicationTags":1289,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":1292,"url":19,"indexYears":19,"academicFieldIds":1297,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":1293,"label":1294,"description":1295,"key":84,"publicationTags":1296,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":1299,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":1300,"totalCitation":20,"totalCitationByYear":1301,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":1302,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":1304,"volume":1306},{"VOID":1305},"241-247",{"VOID":1307},"56",{"total":177,"publishYear":1309,"statisticByYear":1310},2017,{"2017":98,"2022":98,"2024":98},"2017-05-12","2026-07-27T19:53:07.469+00:00",[67,86],{"id":1315,"createTime":1316,"updateTime":1317,"relativeEntities":1318,"slug":1319,"properties":1320,"entityType":123,"verifyStatus":124,"verifyTime":1331,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":1332,"fullTextUrl":19,"authors":1333,"publicationType":248,"publisherRelationship":1358,"citationCount":99,"citationInfo":1413,"publishDate":1416,"publishYear":1414,"citationAnalyzeStatus":779,"lastCitationAnalyze":1417,"indexDatabases":1418,"openAccess":19,"references":19,"isForceReanalyzing":307},"b32301d9-1ba2-43d7-813b-2a5916b0a79d","2023-12-28T09:46:16.688+00:00","2026-07-27T06:44:06.523+00:00",[],"Fr%C3%BChsch%C3%A4den-in-Zellen-nach-ionisierender-Bestrahlung",{"abstract":1321,"title":1323,"gsPaper":1325,"references":1327,"doi":1329},{"EN":1322},"Zusammenfassend kann gesagt werden, daß neben den eingangs erwähnten Schäden an Nukleinsäuren, Spurenelementabspaltungen in größerem Ausmaß eintreten und dabei möglicherweise die sekundäre und tertiäre Struktur von Makromolekülen verändert wird, daß Enzymsysteme durch diese Metallionen verschieden beeinflußt werden und daß schließlich dabei auch der Abbau von Ribonukleinsäure erleichtert wird.",{"EN":1324},"Frühschäden in Zellen nach ionisierender Bestrahlung",{"VOID":1326},"[\"10884201833304648026\"]",{"VOID":1328},"Altmann, H., G. Stehlik undK. Kaindl: Atompraxis9, 255 (1963).\n— — — Nature (Lond.)199, 823 (1963).\nBacq, Z. M., u.P. Alexander: Grundlagen der Strahlenbiologie. Stuttgart: Thieme 1958.\nFrisch-Niggemeyer, W., u.K. K. Reddi: Biochem. biophys. Acta26, 40 (1957).\nKunitz, M.: J. biol. chem.164, 563 (1946).\nStehlik, G., u. H.Altmann: Mh. Chem. (Im Druck).",{"VOID":1330},"10.1007\u002FBF01191318","2024-08-30T22:40:59.210+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01191318",[1334],{"id":1335,"sortIndex":20,"researcher":19,"roles":1336,"affiliations":1337,"properties":1355,"displayName":1357,"givenName":19,"familyName":19},"423036e0-0093-4e27-b7a2-2141235bcd19",[134],[1338,1346],{"id":1339,"sortIndex":20,"affiliation":1340,"properties":19},"9ccc79d2-f8cb-422d-8123-1789a7c507da",{"id":1339,"createTime":19,"updateTime":19,"relativeEntities":1341,"slug":19,"properties":1342,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1345,"statistic":19},[],{"title":1343},{"EN":1344},"Institut für Biologie und Landwirtschaft, Reaktorzentrum Seibersdorf, Deutschland",[],{"id":1347,"sortIndex":98,"affiliation":1348,"properties":1354},"968ff073-c1d0-4f34-a14b-e6d069d2940f",{"id":1347,"createTime":19,"updateTime":19,"relativeEntities":1349,"slug":19,"properties":1350,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1353,"statistic":19},[],{"title":1351},{"VI":1352},"Österreichischen Studiengesellschaft für Atomenergie G. m. b. H., Deutschland",[],{},{"title":1356},{"VI":1357},"H. Altmann",{"url":1332,"publisher":1359,"properties":1408},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1360,"slug":10,"properties":1361,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1365,"manageAffiliations":1377,"indexDatabases":1388,"url":93,"thumbnailPath":19,"statistic":1403,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":1362,"title":1363,"eissn":1364},{"VOID":13},{"EN":10},{"VOID":16},[1366,1370,1373],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":1367,"label":1368,"description":1369,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":1371,"label":1372,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":1374,"label":1375,"description":1376,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[1378,1383],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":1379,"slug":19,"properties":1380,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1382,"statistic":19},[],{"title":1381},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":1384,"slug":19,"properties":1385,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1387,"statistic":19},[],{"title":1386},{"EN":53},[],[1389,1396],{"id":57,"indexDatabase":1390,"url":68,"indexYears":69,"academicFieldIds":1395,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":1391,"label":1392,"description":1393,"key":65,"publicationTags":1394,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":1397,"url":19,"indexYears":19,"academicFieldIds":1402,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":1398,"label":1399,"description":1400,"key":84,"publicationTags":1401,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":1404,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":1405,"totalCitation":20,"totalCitationByYear":1406,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":1407,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":1409,"volume":1411},{"VOID":1410},"329-330",{"VOID":1412},"1",{"total":99,"publishYear":1414,"statisticByYear":1415},1964,{"1965":98,"1966":98},"1964-12-01","2026-07-27T06:44:06.522+00:00",[86],{"id":1420,"createTime":1421,"updateTime":1422,"relativeEntities":1423,"slug":1424,"properties":1425,"entityType":123,"verifyStatus":124,"verifyTime":1436,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":1437,"fullTextUrl":19,"authors":1438,"publicationType":248,"publisherRelationship":1521,"citationCount":19,"citationInfo":19,"publishDate":1576,"publishYear":1577,"citationAnalyzeStatus":413,"lastCitationAnalyze":1578,"indexDatabases":1579,"openAccess":19,"references":19,"isForceReanalyzing":307},"cc1034d8-56ce-4ed3-815f-ed03e923f6de","2024-01-27T17:55:03.366+00:00","2026-07-20T18:15:21.042+00:00",[],"Differences-in-baseline-lung-cancer-mortality-between-the-German-uranium-miners-cohort-and-the-population-of-the-former-German-Democratic-Republic-1960-2003-",{"abstract":1426,"title":1428,"gsPaper":1430,"references":1432,"doi":1434},{"EN":1427},"A previous analysis of the radon-related lung cancer mortality risk, in the German uranium miners cohort, using Poisson modeling techniques, noted internal (spontaneous) rates that were higher on average than the external rates by 16.5% (95% CI: 9%; 24%). The main purpose of the present paper is to investigate the nature of, and possible reasons for, this difference by comparing patterns in spontaneous lung cancer mortality rates in a cohort of male miners involved in uranium extraction at the former Wismut mining company in East Germany with national male rates from the former German Democratic Republic. The analysis is based on miner data for 3,001 lung cancer deaths, 1.76 million person-years for the period 1960–2003, and national rates covering the same calendar-year range. Simple “age–period–cohort” graphical analyses were applied to assess the main qualitative differences between the national and cohort baseline lung cancer rates. Some differences were found to occur mainly at higher attained ages above 70 years. Although many occupational risk factors may have contributed to these observed age differences, only the effects of smoking have been assessed here by applying the Peto–Lopez indirect method for calculating smoking attributability. It is inferred that the observed age differences could be due to the greater prevalence of smoking and more mature smoking epidemic in the Wismut cohort compared to the general population of the former German Democratic Republic. In view of these observed differences between external population-based rates and internal (spontaneous) cohort baseline lung cancer rates, it is strongly recommended to apply only the internal rates in future analyses of uranium miner cohorts.",{"EN":1429},"Differences in baseline lung cancer mortality between the German uranium miners cohort and the population of the former German Democratic Republic (1960–2003)",{"VOID":1431},"[\"15775516590515954893\"]",{"VOID":1433},"Brüske-Hohlfeld I, Rosario AS, Wolke G, Heinrich J, Kreuzer M, Kreienbrock L, Wichmann HE (2006) Lung cancer risk among former uranium miners of the WISMUT Company in Germany. Health Phys 90:208–216\nDahmann D, Bauer HD, Stoyke G (2008) Retrospective exposure assessment for respirable and inhalable dust, crystalline silica and arsenic in the former German uranium mines of SAG\u002FSDAG Wismut. Int Arch Occup Environ Health 81:949–958\nKreuzer M, Walsh L, Schnelzer M, Tschense A, Grosche B (2008) Radon and risk of extra-pulmonary cancers—Results of the German uranium miners cohort study, 1960–2003. Br J Cancer 99:1946–1953\nKreuzer M, Schnelzer M, Tschense A, Walsh L, Grosche B (2009a) Cohort profile: the German uranium miner cohort study (WISMUT cohort), 1946–2003. Int J Epidemiol. doi:10.1093\u002Fije\u002Fdyp216\nKreuzer M, Grosche B, Schnelzer M, Tschense A, Dufey F, Walsh L (2009b) Radon and risk of death from cancer and cardiovascular diseases in the German uranium miners cohort study: follow-up 1946–2003. Radiat Environ Biophys 49(2):177–185\nLehmann F, Hambeck L, Linkert KH, Lutze H, Meyer H, Reiber H, Renner HK, Reinisch A, Seifert T, Wolf F (1998) Belastung durch ionisierende Strahlung im Uranerzbergbau der ehemaligen DDR. Hauptverband der gewerblichen Berufsgenossenschaften, St. Augustin\nPeto R, Lopez AD, Boreham J, Thun M, Heath C Jr (1992) Mortality from tobacco in developed countries: indirect estimation from national vital statistics. Lancet 339:1268–1278\nPeto R, Lopez AD, Boreham J, Thun MJ, Heath C Jr (1994) Mortality from smoking in developed countries, 1950–2000: indirect estimates from national vital statistics. Oxford University Press, Oxford. (Second edition available online at http:\u002F\u002Fwww.ctsu.ox.ac.uk\u002F~tobacco\u002F)\nPowles J (2000) The Peto\u002FLopez indirect method for estimating the accumulated mortality hazard caused by smoking (GBD2000 protocol). Available from: http:\u002F\u002Fwww.phpc.cam.ac.uk\u002Fmst\u002Fphtop\u002Fpeto_lopez_method_gbd2000.doc. Accessed 1 March 2010\nPreston DL, Lubin JH, Pierce DA, McConney ME (1993) Epicure user’s guide. HiroSoft, Seattle\nRittgen W, Becker N (2000) SMR Analysis of historical follow-up studies with missing death certificates. Biometrics 56:1164–1169\nRunge W (editor in chief) (1999) Chronik der WISMUT, Wismut GmbH (2738 pages, in German)\nSchnelzer M, Kreuzer M, Tschense A, Hammer G, Grosche B (2010) Accounting for smoking in the radon related lung cancer risk among German uranium miners: results of a nested case-control study. Health Phys 98:20–28\nStatistisches Bundesamt (2005) Fachserie 14: Finanzen und Steuern, Reihe 9.1.1 Absatz von Tabakwaren, Abbildung 2.5.2: Jahrliche Pro-Kopf-Verbrauch (in Stück) an Zigaretten in Deutschland 1955 bis 2004\nThun MJ, Hannan LM, Adams-Campbell LL, Boffetta P, Buring JE, Feskanich D, Flanders WD, Jee SH, Katanode K, Kolonel LN, Lee IM, Marugame T, Palmer JR, Riboli E, Sobue T, Avila-Tang E, Wilkens LR, Samet JM (2008) Lung cancer occurrence in never-smokers: an analysis of 13 cohorts and 22 cancer registry studies. PLoS Med 5(9):1357–1371\nWalsh L, Tschense A, Schnelzer M, Dufey F, Grosche B, Kreuzer M (2010a) The Influence of radon exposure on lung cancer mortality in German uranium miners, 1946–2003. Radiat Res 173:79–90\nWalsh L, Dufey F, Tschense A, Schnelzer M, Grosche B, Kreuzer M (2010b) Radon and the risk of cancer mortality—Internal Poisson models for the German uranium miners cohort. Health Phys 99(3):292–300\nWHO (1992) International statistical classification of diseases and health related problems: the ICD-10 (German edition 1.3.1999), Geneva\nWichmann HE, Gerken M, Wellmann J, Kreuzer M, Kreienbrock L, Keller G, Wölke G, Heinrich J (1999) Lungenkrebsrisiko durch Radon in der Bundesrepublik Deutschland (Ost)- Thuringen und Sachsen. ecomed, Landsberg. (in German)",{"VOID":1435},"10.1007\u002Fs00411-010-0332-y","2024-06-26T07:01:14.478+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs00411-010-0332-y",[1439,1454,1467,1482,1495,1508],{"id":1440,"sortIndex":20,"researcher":19,"roles":1441,"affiliations":1442,"properties":1451,"displayName":1453,"givenName":19,"familyName":19},"4820a26c-7d47-45d7-aed3-cb33faf7157a",[134],[1443],{"id":1444,"sortIndex":20,"affiliation":1445,"properties":19},"509b50e4-3ee1-45a8-a3f2-5e56c81d1fad",{"id":1444,"createTime":19,"updateTime":19,"relativeEntities":1446,"slug":19,"properties":1447,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1450,"statistic":19},[],{"title":1448},{"VI":1449},"Federal Office for Radiation Protection, Department “Radiation Protection and Health”, Oberschleissheim, Germany",[],{"title":1452},{"VI":1453},"Linda Walsh",{"id":1455,"sortIndex":98,"researcher":19,"roles":1456,"affiliations":1457,"properties":1464,"displayName":1466,"givenName":19,"familyName":19},"712c95ca-d66b-4466-b4f4-f52956b193be",[134],[1458],{"id":1444,"sortIndex":20,"affiliation":1459,"properties":19},{"id":1444,"createTime":19,"updateTime":19,"relativeEntities":1460,"slug":19,"properties":1461,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1463,"statistic":19},[],{"title":1462},{"VI":1449},[],{"title":1465},{"VI":1466},"Florian Dufey",{"id":1468,"sortIndex":99,"researcher":19,"roles":1469,"affiliations":1470,"properties":1479,"displayName":1481,"givenName":19,"familyName":19},"2b8c59ae-a145-4e8e-9945-c652b0b11dbb",[134],[1471],{"id":1472,"sortIndex":20,"affiliation":1473,"properties":19},"dbe0f62c-c3c9-4e79-b80d-1748f5abb679",{"id":1472,"createTime":19,"updateTime":19,"relativeEntities":1474,"slug":19,"properties":1475,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1478,"statistic":19},[],{"title":1476},{"VI":1477},"Federal Institute for Occupational Safety and Health (BAuA), Berlin, Germany",[],{"title":1480},{"VI":1481},"Matthias Möhner",{"id":1483,"sortIndex":177,"researcher":19,"roles":1484,"affiliations":1485,"properties":1492,"displayName":1494,"givenName":19,"familyName":19},"39215fe4-8d27-42e6-840c-370519de32df",[134],[1486],{"id":1444,"sortIndex":20,"affiliation":1487,"properties":19},{"id":1444,"createTime":19,"updateTime":19,"relativeEntities":1488,"slug":19,"properties":1489,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1491,"statistic":19},[],{"title":1490},{"VI":1449},[],{"title":1493},{"VI":1494},"Maria Schnelzer",{"id":1496,"sortIndex":96,"researcher":19,"roles":1497,"affiliations":1498,"properties":1505,"displayName":1507,"givenName":19,"familyName":19},"1c571434-f1aa-4b29-8d60-826639cba115",[134],[1499],{"id":1444,"sortIndex":20,"affiliation":1500,"properties":19},{"id":1444,"createTime":19,"updateTime":19,"relativeEntities":1501,"slug":19,"properties":1502,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1504,"statistic":19},[],{"title":1503},{"VI":1449},[],{"title":1506},{"VI":1507},"Annemarie Tschense",{"id":1509,"sortIndex":206,"researcher":19,"roles":1510,"affiliations":1511,"properties":1518,"displayName":1520,"givenName":19,"familyName":19},"ef5243bf-46b4-4ae1-89fc-329798733df2",[134],[1512],{"id":1444,"sortIndex":20,"affiliation":1513,"properties":19},{"id":1444,"createTime":19,"updateTime":19,"relativeEntities":1514,"slug":19,"properties":1515,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1517,"statistic":19},[],{"title":1516},{"VI":1449},[],{"title":1519},{"VI":1520},"Michaela Kreuzer",{"url":1437,"publisher":1522,"properties":1571},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1523,"slug":10,"properties":1524,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1528,"manageAffiliations":1540,"indexDatabases":1551,"url":93,"thumbnailPath":19,"statistic":1566,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":1525,"title":1526,"eissn":1527},{"VOID":13},{"EN":10},{"VOID":16},[1529,1533,1536],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":1530,"label":1531,"description":1532,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":1534,"label":1535,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":1537,"label":1538,"description":1539,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[1541,1546],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":1542,"slug":19,"properties":1543,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1545,"statistic":19},[],{"title":1544},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":1547,"slug":19,"properties":1548,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1550,"statistic":19},[],{"title":1549},{"EN":53},[],[1552,1559],{"id":57,"indexDatabase":1553,"url":68,"indexYears":69,"academicFieldIds":1558,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":1554,"label":1555,"description":1556,"key":65,"publicationTags":1557,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":1560,"url":19,"indexYears":19,"academicFieldIds":1565,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":1561,"label":1562,"description":1563,"key":84,"publicationTags":1564,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":1567,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":1568,"totalCitation":20,"totalCitationByYear":1569,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":1570,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":1572,"volume":1574},{"VOID":1573},"57-66",{"VOID":1575},"50","2010-09-25",2010,"2026-07-20T18:15:21.041+00:00",[67,86],{"id":1581,"createTime":1582,"updateTime":1583,"relativeEntities":1584,"slug":1585,"properties":1586,"entityType":123,"verifyStatus":124,"verifyTime":1597,"verifyNote":126,"languages":19,"translateLanguages":19,"viewCount":20,"primaryUrl":1598,"fullTextUrl":19,"authors":1599,"publicationType":248,"publisherRelationship":1637,"citationCount":96,"citationInfo":1692,"publishDate":1695,"publishYear":1693,"citationAnalyzeStatus":779,"lastCitationAnalyze":1583,"indexDatabases":1696,"openAccess":19,"references":19,"isForceReanalyzing":307},"548be33b-cb37-49a0-8122-eb4e90151bf1","2023-12-18T06:30:16.218+00:00","2026-07-20T09:07:18.743+00:00",[],"The-effect-of-ultra-high-dose-rate%CE%B2-ray-irradiation-in-aerobic-and-hypoxic-conditions-on-the-survival-of-diploid-yeast",{"abstract":1587,"title":1589,"gsPaper":1591,"references":1593,"doi":1595},{"EN":1588},"Diploid yeast,Saccharomyces cerevisiae, was exposed to single microsecond pulses of 12-MeV-electrons at dose rates up to 3×1010 rad s−1 under oxygenated and hypoxic conditions. No difference in surviving fractions was found with total doses up to about 150 krad as compared to exposures at conventional dose rates.",{"EN":1590},"The effect of ultra-high dose-rateβ-ray irradiation in aerobic and hypoxic conditions on the survival of diploid yeast",{"VOID":1592},"[\"11137605509232040503\"]",{"VOID":1594},"Berry, R. J., Hall, E. J., Forster, D. W., Storr, T. H., Goodman, M. H.: Survival of mammalian cells exposed to X-rays at ultra-high dose rates. Brit. J. Radiol.42, 102 (1969).\nBoag, J. W.: Oxygen diffusion and oxygen depletion problems in radiobiology. In: Ebert, M., Howard, A., Eds., Current topics in radiation research, Vol. V, p. 141. Amsterdam: North-Holland Publ. Co. 1969.\nDewey, D. L., Boag, J. W.: Inaktivierung von Bakterien mittels einzelner Elektronenimpulse. Z. Naturforsch.15b, 372 (1960).\nEpp, E. B., Weiss, H., Santomasso, A.: The oxygen effect in bacterial cells irradiated with high intensity pulsed electrons. Radiat. Res.34, 320 (1968).\nHersch, P.: Galvanic determination of traces of oxygen. Nature (Lond.)169, 792 (1960).\nKiefer, J., Ebert, M.: Some theoretical considerations concerning ultra-high dose-rate survival experiments. 2nd Symp. Microdosimetry, Stresa 1969. Proceedings in the press.\nNias, A. H. W., Swallow, A. J., Keene, J. P., Hodgson, B. W.: Effects of pulses of radiation on the survival of mammalian cells. Brit. J. Radiol.42, 231 (1969).\nOliver, R.: The effect of irradiation at extremely high dose-rates. Brit. J. Radiol.42, 231 (1969).\nPhillips, T. L., Worsnop, B. R.: Ultra-high dose-rate effects in radiosensitive bacteria. Int. J. Radiat. Biol.14, 573 (1969).\nSanner, T., Pihl, A.: Significance and mechanisms of the indirect effect in bacterial cells. The relative protective effect of added compounds inE. coli B, irradiated in liquid and frozen suspension. Radiat. Res.37, 216 (1969).\nThomas, J. K., Hart, E. J.: The radiolysis of aqueous solutions at high intensities. Radiat. Res.17, 408 (1962).\nTown, C. D.: Effects of high dose rates on survival of mammalian cells. Nature (Lond.)215, 847 (1967).\nWickerham, L. J.: Taxonomy of yeasts. Tech. Bull. US Deptmt. Agrio. 1029 C (1951).",{"VOID":1596},"10.1007\u002FBF01189087","2024-05-28T11:06:54.487+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF01189087",[1600,1624],{"id":1601,"sortIndex":20,"researcher":19,"roles":1602,"affiliations":1603,"properties":1621,"displayName":1623,"givenName":19,"familyName":19},"1b1cd22a-a9d2-46b3-93b4-183bb4fa23da",[134],[1604,1612],{"id":1605,"sortIndex":20,"affiliation":1606,"properties":19},"78cb8efe-a027-44f5-81d2-b48aaa9bad53",{"id":1605,"createTime":19,"updateTime":19,"relativeEntities":1607,"slug":19,"properties":1608,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1611,"statistic":19},[],{"title":1609},{"VI":1610},"Paterson Laboratories, Christie Hospital and Holt Radium Institute, Manchester",[],{"id":1613,"sortIndex":98,"affiliation":1614,"properties":1620},"c83ccd7d-a7fc-4bbe-9f2d-bf70e664f89a",{"id":1613,"createTime":19,"updateTime":19,"relativeEntities":1615,"slug":19,"properties":1616,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1619,"statistic":19},[],{"title":1617},{"VI":1618},"Institut für Biophysik, Strahlenzentrum der Universität, Gießen",[],{},{"title":1622},{"VI":1623},"J. Kiefer",{"id":1625,"sortIndex":98,"researcher":19,"roles":1626,"affiliations":1627,"properties":1634,"displayName":1636,"givenName":19,"familyName":19},"b60ea023-f296-45dd-9c5e-99209add8b6f",[134],[1628],{"id":1605,"sortIndex":20,"affiliation":1629,"properties":19},{"id":1605,"createTime":19,"updateTime":19,"relativeEntities":1630,"slug":19,"properties":1631,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1633,"statistic":19},[],{"title":1632},{"VI":1610},[],{"title":1635},{"VI":1636},"M. Ebert",{"url":1598,"publisher":1638,"properties":1687},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1639,"slug":10,"properties":1640,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1644,"manageAffiliations":1656,"indexDatabases":1667,"url":93,"thumbnailPath":19,"statistic":1682,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":1641,"title":1642,"eissn":1643},{"VOID":13},{"EN":10},{"VOID":16},[1645,1649,1652],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":1646,"label":1647,"description":1648,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":1650,"label":1651,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":1653,"label":1654,"description":1655,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[1657,1662],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":1658,"slug":19,"properties":1659,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1661,"statistic":19},[],{"title":1660},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":1663,"slug":19,"properties":1664,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1666,"statistic":19},[],{"title":1665},{"EN":53},[],[1668,1675],{"id":57,"indexDatabase":1669,"url":68,"indexYears":69,"academicFieldIds":1674,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":1670,"label":1671,"description":1672,"key":65,"publicationTags":1673,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":1676,"url":19,"indexYears":19,"academicFieldIds":1681,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":1677,"label":1678,"description":1679,"key":84,"publicationTags":1680,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":1683,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":1684,"totalCitation":20,"totalCitationByYear":1685,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":1686,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"pages":1688,"volume":1690},{"VOID":1689},"271-274",{"VOID":1691},"6",{"total":96,"publishYear":1693,"statisticByYear":1694},1970,{"1973":98,"2015":98,"2024":99},"1970-09-01",[86],{"id":1698,"createTime":1699,"updateTime":1700,"relativeEntities":1701,"slug":1702,"properties":1703,"entityType":123,"verifyStatus":124,"verifyTime":1714,"verifyNote":126,"languages":1715,"translateLanguages":19,"viewCount":20,"primaryUrl":1717,"fullTextUrl":19,"authors":1718,"publicationType":248,"publisherRelationship":1894,"citationCount":98,"citationInfo":1951,"publishDate":1954,"publishYear":1952,"citationAnalyzeStatus":779,"lastCitationAnalyze":1955,"indexDatabases":1956,"openAccess":19,"references":1957,"isForceReanalyzing":307},"3ff3cf6b-9817-4691-a642-bba7644f10a8","2025-07-10T16:21:12.181+00:00","2026-07-18T04:06:27.621+00:00",[],"Evaluation-of-the-conformity-of-intensity-modulated-radiation-therapy-and-volumetric-modulated-arc-therapy-using-AAPM-TG-119-protocol",{"openalex":1704,"title":1706,"gsPaper":1708,"pm":1710,"doi":1712},{"VOID":1705},"W4401657475",{"EN":1707},"Evaluation of the conformity of intensity-modulated radiation therapy and volumetric modulated arc therapy using AAPM TG 119 protocol",{"VOID":1709},"[\"4966822156589896209\"]",{"VOID":1711},"39153061",{"VOID":1713},"10.1007\u002Fs00411-024-01091-2","2025-07-10T16:21:12.180+00:00",[1716],"EN","https:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs00411-024-01091-2",[1719,1736,1753,1768,1785,1800,1817,1832,1847,1862,1879],{"id":1720,"sortIndex":20,"researcher":19,"roles":1721,"affiliations":1722,"properties":1731,"displayName":1733,"givenName":19,"familyName":19},"e213808a-16b0-4fb7-9450-11f30b558ca3",[],[1723],{"id":1724,"sortIndex":20,"affiliation":1725,"properties":19},"d6a64a55-a651-4318-860e-6669f3e8a67b",{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1726,"slug":19,"properties":1727,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1730,"statistic":19},[],{"title":1728},{"EN":1729},"Department of Radiological Technology, Ho Chi Minh Oncology Hospital, Ho Chi Minh, Vietnam",[],{"title":1732,"openalex":1734},{"EN":1733},"Dang Thi Minh Tam",{"VOID":1735},"A5112336325",{"id":1737,"sortIndex":98,"researcher":19,"roles":1738,"affiliations":1739,"properties":1748,"displayName":1750,"givenName":19,"familyName":19},"ca4b6625-ff78-4444-81b2-016073016972",[],[1740],{"id":1741,"sortIndex":20,"affiliation":1742,"properties":19},"d332e63f-fb72-4a0f-be8c-bb1c913d05b7",{"id":1741,"createTime":19,"updateTime":19,"relativeEntities":1743,"slug":19,"properties":1744,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1747,"statistic":19},[],{"title":1745},{"EN":1746},"Department of Nuclear Physics, Faculty of Physics and Engineering Physics, University of Science, 227, Nguyen Van Cu Street, District 5, Ho Chi Minh, Vietnam",[],{"title":1749,"openalex":1751},{"EN":1750},"Phan Long Hồ",{"VOID":1752},"A5020156625",{"id":1754,"sortIndex":99,"researcher":19,"roles":1755,"affiliations":1756,"properties":1763,"displayName":1765,"givenName":19,"familyName":19},"61ae9be2-2aa3-444a-b869-32fd39ddb4b4",[],[1757],{"id":1724,"sortIndex":20,"affiliation":1758,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1759,"slug":19,"properties":1760,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1762,"statistic":19},[],{"title":1761},{"EN":1729},[],{"title":1764,"openalex":1766},{"EN":1765},"Phan Quoc Uy",{"VOID":1767},"A5106577379",{"id":1769,"sortIndex":177,"researcher":19,"roles":1770,"affiliations":1771,"properties":1778,"displayName":1782,"givenName":19,"familyName":19},"79445404-106f-4ff8-8af1-12a943f800a1",[],[1772],{"id":1724,"sortIndex":20,"affiliation":1773,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1774,"slug":19,"properties":1775,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1777,"statistic":19},[],{"title":1776},{"EN":1729},[],{"orcid":1779,"title":1781,"openalex":1783},{"VOID":1780},"https:\u002F\u002Forcid.org\u002F0000-0003-4769-3214",{"EN":1782},"Nguyễn Trung Hiếu",{"VOID":1784},"A5038893491",{"id":1786,"sortIndex":96,"researcher":19,"roles":1787,"affiliations":1788,"properties":1795,"displayName":1797,"givenName":19,"familyName":19},"849b7152-cd02-4133-b49e-1ee21ac4e7e6",[],[1789],{"id":1724,"sortIndex":20,"affiliation":1790,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1791,"slug":19,"properties":1792,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1794,"statistic":19},[],{"title":1793},{"EN":1729},[],{"title":1796,"openalex":1798},{"EN":1797},"Vo Tan Linh",{"VOID":1799},"A5106577380",{"id":1801,"sortIndex":206,"researcher":19,"roles":1802,"affiliations":1803,"properties":1810,"displayName":1814,"givenName":19,"familyName":19},"c160a896-fe69-4713-b438-878b6db83f9f",[],[1804],{"id":1724,"sortIndex":20,"affiliation":1805,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1806,"slug":19,"properties":1807,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1809,"statistic":19},[],{"title":1808},{"EN":1729},[],{"orcid":1811,"title":1813,"openalex":1815},{"VOID":1812},"https:\u002F\u002Forcid.org\u002F0000-0003-4320-1438",{"EN":1814},"Nguyễn Thị Hoa",{"VOID":1816},"A5101505293",{"id":1818,"sortIndex":222,"researcher":19,"roles":1819,"affiliations":1820,"properties":1827,"displayName":1829,"givenName":19,"familyName":19},"31aa64d7-032b-4b9e-ba72-49be4ae25261",[],[1821],{"id":1724,"sortIndex":20,"affiliation":1822,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1823,"slug":19,"properties":1824,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1826,"statistic":19},[],{"title":1825},{"EN":1729},[],{"title":1828,"openalex":1830},{"EN":1829},"Nguyen Thi The Lam",{"VOID":1831},"A5108971008",{"id":1833,"sortIndex":236,"researcher":19,"roles":1834,"affiliations":1835,"properties":1842,"displayName":1844,"givenName":19,"familyName":19},"478f0b8a-7a95-424c-9c31-3f2b7d23ce55",[],[1836],{"id":1724,"sortIndex":20,"affiliation":1837,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1838,"slug":19,"properties":1839,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1841,"statistic":19},[],{"title":1840},{"EN":1729},[],{"title":1843,"openalex":1845},{"EN":1844},"Bui Thi Thuy Nga",{"VOID":1846},"A5106577381",{"id":1848,"sortIndex":543,"researcher":19,"roles":1849,"affiliations":1850,"properties":1857,"displayName":1859,"givenName":19,"familyName":19},"0221c0bc-e6f2-46ca-99b2-341d979b59d8",[],[1851],{"id":1724,"sortIndex":20,"affiliation":1852,"properties":19},{"id":1724,"createTime":19,"updateTime":19,"relativeEntities":1853,"slug":19,"properties":1854,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1856,"statistic":19},[],{"title":1855},{"EN":1729},[],{"title":1858,"openalex":1860},{"EN":1859},"Truong Huu Thanh",{"VOID":1861},"A5106577382",{"id":1863,"sortIndex":557,"researcher":19,"roles":1864,"affiliations":1865,"properties":1872,"displayName":1876,"givenName":19,"familyName":19},"6be57f1a-e179-4036-9c19-02fac5f94c32",[],[1866],{"id":1741,"sortIndex":20,"affiliation":1867,"properties":19},{"id":1741,"createTime":19,"updateTime":19,"relativeEntities":1868,"slug":19,"properties":1869,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1871,"statistic":19},[],{"title":1870},{"EN":1746},[],{"orcid":1873,"title":1875,"openalex":1877},{"VOID":1874},"https:\u002F\u002Forcid.org\u002F0000-0002-9866-4926",{"EN":1876},"Trần Thiện Thanh",{"VOID":1878},"A5084170589",{"id":1880,"sortIndex":571,"researcher":19,"roles":1881,"affiliations":1882,"properties":1889,"displayName":1891,"givenName":19,"familyName":19},"f5b63b70-279f-4ad3-ab7d-ed91d9eec168",[],[1883],{"id":1741,"sortIndex":20,"affiliation":1884,"properties":19},{"id":1741,"createTime":19,"updateTime":19,"relativeEntities":1885,"slug":19,"properties":1886,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1888,"statistic":19},[],{"title":1887},{"EN":1746},[],{"title":1890,"openalex":1892},{"EN":1891},"Châu Văn Tạo",{"VOID":1893},"A5112583496",{"url":19,"publisher":1895,"properties":1944},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1896,"slug":10,"properties":1897,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1901,"manageAffiliations":1913,"indexDatabases":1924,"url":93,"thumbnailPath":19,"statistic":1939,"gsStatistic":19,"type":102,"analyzePriority":19},[],{"issn":1898,"title":1899,"eissn":1900},{"VOID":13},{"EN":10},{"VOID":16},[1902,1906,1909],{"id":23,"createTime":19,"updateTime":19,"relativeEntities":1903,"label":1904,"description":1905,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":26},{},{"id":29,"createTime":19,"updateTime":19,"relativeEntities":1907,"label":1908,"description":19,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":32},{"id":34,"createTime":19,"updateTime":19,"relativeEntities":1910,"label":1911,"description":1912,"parentId":19,"standard":19,"scholarHubFieldId":19},[],{"EN":37},{},[1914,1919],{"id":41,"createTime":19,"updateTime":19,"relativeEntities":1915,"slug":19,"properties":1916,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1918,"statistic":19},[],{"title":1917},{"EN":45},[47],{"id":49,"createTime":19,"updateTime":19,"relativeEntities":1920,"slug":19,"properties":1921,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1923,"statistic":19},[],{"title":1922},{"EN":53},[],[1925,1932],{"id":57,"indexDatabase":1926,"url":68,"indexYears":69,"academicFieldIds":1931,"indexDatabaseRanking":19},{"id":59,"createTime":19,"updateTime":19,"relativeEntities":1927,"label":1928,"description":1929,"key":65,"publicationTags":1930,"standard":19},[],{"EN":62,"VI":62},{"EN":62,"VI":64},[67],[71,72,73],{"id":75,"indexDatabase":1933,"url":19,"indexYears":19,"academicFieldIds":1938,"indexDatabaseRanking":19},{"id":77,"createTime":19,"updateTime":19,"relativeEntities":1934,"label":1935,"description":1936,"key":84,"publicationTags":1937,"standard":19},[],{"EN":80,"VI":80},{"EN":82,"VI":83},[86,87],[89,90,91,92],{"impactFactor":20,"impactFactorByYear":1940,"i10Index":20,"i10IndexLast5Year":20,"totalPublication":96,"totalPublicationByYear":1941,"totalCitation":20,"totalCitationByYear":1942,"totalCitationPerPublication":20,"totalCitationPerPublicationByYear":1943,"hindexLast5Year":20,"hindex":20},{},{"1967":98,"1971":98,"1973":99},{},{},{"issue":1945,"pages":1947,"volume":1949},{"VOID":1946},"4",{"VOID":1948},"557-571",{"VOID":1950},"63",{"total":98,"publishYear":1952,"statisticByYear":1953},2024,{"2026":98},"2024-11-01","2026-07-18T04:06:27.620+00:00",[86],[1958,1961,1965,1969,1973,1977,1981,1985,1989,1993,1997,2001,2005,2008,2012,2016,2020,2024,2028,2032,2036,2040,2044,2048,2052,2056,2060,2064,2068,2072,2076,2080,2084,2088,2092,2095,2099,2103,2107,2111],{"id":19,"text":1959,"url":19,"identifiers":1960},"AAPM (2009) TG – 119 IMRT commissioning tests instructions for planning, measurement, and analysis. Differences 21:308–310",{},{"id":19,"text":1962,"url":19,"identifiers":1963},"Afrin KT, Ahmad S (2021) Is IMRT or VMAT superior or inferior to 3D conformal therapy in the treatment of lung cancer? A brief literature review. J Radiother Pract 21:416–420. https:\u002F\u002Fdoi.org\u002F10.1017\u002FS146039692100008X",{"doi":1964},"10.1017\u002FS146039692100008X",{"id":19,"text":1966,"url":19,"identifiers":1967},"Akbas U, Koksal C, Kesen ND et al (2019) Nasopharyngeal carcinoma radiotherapy with hybrid technique. Med Dosim 44:251–257. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.meddos.2018.09.003",{"doi":1968},"10.1016\u002Fj.meddos.2018.09.003",{"id":19,"text":1970,"url":19,"identifiers":1971},"Bucci MK, Bevan A, Roach M (2005) Advances in Radiation Therapy: conventional to 3D, to IMRT, to 4D, and Beyond. CA Cancer J Clin 55:117–134. https:\u002F\u002Fdoi.org\u002F10.3322\u002Fcanjclin.55.2.117",{"doi":1972},"10.3322\u002Fcanjclin.55.2.117",{"id":19,"text":1974,"url":19,"identifiers":1975},"Chen W, Yang X, Jiang N et al (2017) Intensity-modulated radiotherapy, volume-modulated arc therapy and helical tomotherapy for locally advanced nasopharyngeal carcinoma: a dosimetric comparison. Transl Cancer Res 6:929–939. https:\u002F\u002Fdoi.org\u002F10.21037\u002Ftcr.2017.09.48",{"doi":1976},"10.21037\u002Ftcr.2017.09.48",{"id":19,"text":1978,"url":19,"identifiers":1979},"Cheung KY (2006) Intensity modulated radiotherapy: advantages, limitations and future developments. Biomed Imaging Interv J 2:1–19. https:\u002F\u002Fdoi.org\u002F10.2349\u002Fbiij.2.1.e19",{"doi":1980},"10.2349\u002Fbiij.2.1.e19",{"id":19,"text":1982,"url":19,"identifiers":1983},"De Martin T, Moutrie Z, Tighe D et al (2018) Volumetric modulated arc therapy (VMAT) for skin field cancerisation of the nose - A technique and case report. Int J Radiol Radiat Ther 5:142–148. https:\u002F\u002Fdoi.org\u002F10.15406\u002Fijrrt.2018.05.00152",{"doi":1984},"10.15406\u002Fijrrt.2018.05.00152",{"id":19,"text":1986,"url":19,"identifiers":1987},"Diamantopoulos S, Platoni K, Patatoukas G et al (2019) Treatment plan verification: a review on the comparison of dose distributions. Phys Med 67:107–115. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ejmp.2019.10.029",{"doi":1988},"10.1016\u002Fj.ejmp.2019.10.029",{"id":19,"text":1990,"url":19,"identifiers":1991},"Ezzell GA, Burmeister JW, Dogan N et al (2009) IMRT commissioning: multiple institution planning and dosimetry comparisons, a report from AAPM Task Group 119. Med Phys 36:5359–5373. https:\u002F\u002Fdoi.org\u002F10.1118\u002F1.3238104",{"doi":1992},"10.1118\u002F1.3238104",{"id":19,"text":1994,"url":19,"identifiers":1995},"Gordon JD, Krafft SP, Jang S et al (2011) Confidence limit variation for a single IMRT system following the TG119 protocol. Med Phys 38:1641–1648. https:\u002F\u002Fdoi.org\u002F10.1118\u002F1.3555298",{"doi":1996},"10.1118\u002F1.3555298",{"id":19,"text":1998,"url":19,"identifiers":1999},"Holt A, Van Gestel D, Arends MP et al (2013) Multi-institutional comparison of volumetric modulated arc therapy vs. intensity-modulated radiation therapy for head-and-neck cancer: a planning study. Radiat Oncol 8:1–11. https:\u002F\u002Fdoi.org\u002F10.1186\u002F1748-717X-8-26",{"doi":2000},"10.1186\u002F1748-717X-8-26",{"id":19,"text":2002,"url":19,"identifiers":2003},"Hussein M, Clark CH, Nisbet A (2017) Challenges in calculation of the gamma index in radiotherapy – towards good practice. Phys Med 36:1–11. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ejmp.2017.03.001",{"doi":2004},"10.1016\u002Fj.ejmp.2017.03.001",{"id":19,"text":2006,"url":19,"identifiers":2007},"IAEA (2008) International Atomic Energy Agency: Transition from 2-D Radiotherapy to 3-D Conformal and Intensity Modulated Radiotherapy,. In: Iaea-Tecdoc-1588. pp 1–61",{},{"id":19,"text":2009,"url":19,"identifiers":2010},"Kadam A, Sharma S (2016) Estimation of local confidence limit for 6 MV photon beam IMRT system using AAPM TG 119 test protocol. Int J Cancer Ther Oncol 4:4110. https:\u002F\u002Fdoi.org\u002F10.14319\u002Fijcto.41.10",{"doi":2011},"10.14319\u002Fijcto.41.10",{"id":19,"text":2013,"url":19,"identifiers":2014},"Kaushik S, Tyagi A, Kumar L et al (2016) Validation of intensity-modulated radiotherapy commissioning as per recommendations in test plans of the American Association of Physicists in Medicine task group 119 report. Radiat Prot Environ 39:138–145. https:\u002F\u002Fdoi.org\u002F10.4103\u002F0972-0464.194960",{"doi":2015},"10.4103\u002F0972-0464.194960",{"id":19,"text":2017,"url":19,"identifiers":2018},"Kim SJ, Lee MJ, Youn SM (2018) Radiation therapy of synchronous bilateral breast carcinoma (SBBC) using multiple techniques. Med Dosim 43:55–68. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.meddos.2017.08.003",{"doi":2019},"10.1016\u002Fj.meddos.2017.08.003",{"id":19,"text":2021,"url":19,"identifiers":2022},"Kishimoto S, Yamashita M (2018) A successive LP approach with C-VaR type constraints for IMRT optimization. Oper Res Heal Care 17:55–64. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.orhc.2017.09.007",{"doi":2023},"10.1016\u002Fj.orhc.2017.09.007",{"id":19,"text":2025,"url":19,"identifiers":2026},"Kruszyna-Mochalska M (2018) EPID-based daily verification of reproducibility of patients’ irradiation with IMRT plans. Rep Pract Oncol Radiother 23:309–314. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.rpor.2018.05.003",{"doi":2027},"10.1016\u002Fj.rpor.2018.05.003",{"id":19,"text":2029,"url":19,"identifiers":2030},"Lee DK (2016) Alternatives to P value: confidence interval and effect size. Korean J Anesthesiol 69:555–562. https:\u002F\u002Fdoi.org\u002F10.4097\u002Fkjae.2016.69.6.555",{"doi":2031},"10.4097\u002Fkjae.2016.69.6.555",{"id":19,"text":2033,"url":19,"identifiers":2034},"Lee S, Lee DK (2018) What is the proper way to apply the multiple comparison test? Korean J Anesthesiol 71:353–360. https:\u002F\u002Fdoi.org\u002F10.4097\u002Fkja.d.18.00242",{"doi":2035},"10.4097\u002Fkja.d.18.00242",{"id":19,"text":2037,"url":19,"identifiers":2038},"Li C, Luo H, Song W et al (2023) Dosimetric comparison of four radiotherapy techniques for stage III non–small cell lung cancer. Oncol Lett 26:1–13. https:\u002F\u002Fdoi.org\u002F10.3892\u002Fol.2023.13933",{"doi":2039},"10.3892\u002Fol.2023.13933",{"id":19,"text":2041,"url":19,"identifiers":2042},"Low DA, Harms WB, Mutic S, Purdy JA (1998) A technique for the quantitative evaluation of dose distributions. Med Phys 25:656–661. https:\u002F\u002Fdoi.org\u002F10.1118\u002F1.598248",{"doi":2043},"10.1118\u002F1.598248",{"id":19,"text":2045,"url":19,"identifiers":2046},"Miften M, Olch A, Mihailidis D et al (2018) Tolerance limits and methodologies for IMRT measurement-based verification QA: recommendations of AAPM Task Group 218. Med Phys 45:e53–e83. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fmp.12810",{"doi":2047},"10.1002\u002Fmp.12810",{"id":19,"text":2049,"url":19,"identifiers":2050},"Mynampati DK, Yaparpalvi R, Hong L et al (2012) Application of AAPM TG 119 to volumetric arc: therapy (VMAT). J Appl Clin Med Phys 13:108–116. https:\u002F\u002Fdoi.org\u002F10.1120\u002Fjacmp.v13i5.3382",{"doi":2051},"10.1120\u002Fjacmp.v13i5.3382",{"id":19,"text":2053,"url":19,"identifiers":2054},"Nainggolan A, Pawiro SA (2019) Dosimetric evaluation of volumetric modulated arc therapy (VMAT) and intensity modulated radiotherapy (IMRT) using AAPM TG 119 protocol. J Biomed Phys Eng 9:395–408. https:\u002F\u002Fdoi.org\u002F10.31661\u002Fjbpe.v0i0.839",{"doi":2055},"10.31661\u002Fjbpe.v0i0.839",{"id":19,"text":2057,"url":19,"identifiers":2058},"Nithya L, Arunai Nambi Raj N, Rathinamuthu S, Pandey MB (2016) Analyzing the performance of the planning system by use of AAPM TG 119 test cases. Radiol Phys Technol 9:22–29. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12194-015-0328-z",{"doi":2059},"10.1007\u002Fs12194-015-0328-z",{"id":19,"text":2061,"url":19,"identifiers":2062},"Palta JR, Liu C, Li JG (2008) Quality Assurance of Intensity-Modulated Radiation Therapy. Int J Radiat Oncol Biol Phys 71:108–112. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ijrobp.2007.05.092",{"doi":2063},"10.1016\u002Fj.ijrobp.2007.05.092",{"id":19,"text":2065,"url":19,"identifiers":2066},"Rashid A, Ahmed Z, Memom MA, Hashim ASM (2021) Volumetric Modulated Arc Therapy (VMAT): a modern radiotherapy technique - A single institutional experience. Pakistan J Med Sci 37. https:\u002F\u002Fdoi.org\u002F10.12669\u002Fpjms.37.2.2647",{"doi":2067},"10.12669\u002Fpjms.37.2.2647",{"id":19,"text":2069,"url":19,"identifiers":2070},"Redapi L, Rossi L, Marrazzo L et al (2022) Comparison of volumetric modulated arc therapy and intensity-modulated radiotherapy for left-sided whole-breast irradiation using automated planning. Strahlentherapie Und Onkol 198:236–246. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00066-021-01817-x",{"doi":2071},"10.1007\u002Fs00066-021-01817-x",{"id":19,"text":2073,"url":19,"identifiers":2074},"Rehman Jur, Zahra, Ahmad N et al (2018) Intensity modulated radiation therapy: a review of current practice and future outlooks. J Radiat Res Appl Sci 11:361–367. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jrras.2018.07.006",{"doi":2075},"10.1016\u002Fj.jrras.2018.07.006",{"id":19,"text":2077,"url":19,"identifiers":2078},"Saminathan S, Manickam R, Chandraraj V (2011) Plan evaluation and dosimetric comparison of IMRT using AAPM TG119 test suites and recommendations. Australas Phys Eng Sci Med 34:55–61. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs13246-011-0058-4",{"doi":2079},"10.1007\u002Fs13246-011-0058-4",{"id":19,"text":2081,"url":19,"identifiers":2082},"San-Miguel I, Carmona R, Luque L et al (2016) Volumetric Modulated Arc Therapy (VMAT) make a difference in retro-orbital irradiation treatment of patients with bilateral Graves’ ophthalmopathy. Comparative analysis of dosimetric parameters from different radiation techniques. Rep Pract Oncol Radiother 21:435–440. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.rpor.2016.03.001",{"doi":2083},"10.1016\u002Fj.rpor.2016.03.001",{"id":19,"text":2085,"url":19,"identifiers":2086},"Sangaiah A, Ganesh KM, Ramalingam K et al (2017) Dosimetric validation of volumetric modulated arc therapy (VMAT) using AAPM TG-119 Benchmark plans in an upgraded CLINAC 2100CD for flattening filter free (FFF) photon beams. Asian Pac J Cancer Prev 18:2965–2970. https:\u002F\u002Fdoi.org\u002F10.22034\u002FAPJCP.2017.18.11.2965",{"doi":2087},"10.22034\u002FAPJCP.2017.18.11.2965",{"id":19,"text":2089,"url":19,"identifiers":2090},"Sharma S, Chander S, Subramani V et al (2017) IMRT and VMAT commissioning for Versa Hd Linear Accelerator using aapm TG-119. Int J Adv Res 5:352–362. https:\u002F\u002Fdoi.org\u002F10.21474\u002Fijar01\u002F3819",{"doi":2091},"10.21474\u002Fijar01\u002F3819",{"id":19,"text":2093,"url":19,"identifiers":2094},"StataCorp (2021) Stata: Release 17. Statistical Software. StataCorp LLC, College Station, Texas",{},{"id":19,"text":2096,"url":19,"identifiers":2097},"Teoh M, Clark CH, Wood K et al (2011) Volumetric modulated arc therapy: a review of current literature and clinical use in practice. Br J Radiol 84:967–996. https:\u002F\u002Fdoi.org\u002F10.1259\u002Fbjr\u002F22373346",{"doi":2098},"10.1259\u002Fbjr\u002F22373346",{"id":19,"text":2100,"url":19,"identifiers":2101},"Thomas M, Chandroth M (2014) Local confidence limits for IMRT and VMAT techniques: a study based on TG119 test suite. Australas Phys Eng Sci Med 37:59–74. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs13246-014-0241-5",{"doi":2102},"10.1007\u002Fs13246-014-0241-5",{"id":19,"text":2104,"url":19,"identifiers":2105},"Xie Y, Bourgeois D, Guo B, Zhang R (2020) Postmastectomy radiotherapy for left-sided breast cancer patients: comparison of advanced techniques. Med Dosim 45:34–40. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.meddos.2019.04.005",{"doi":2106},"10.1016\u002Fj.meddos.2019.04.005",{"id":19,"text":2108,"url":19,"identifiers":2109},"Yang B, Zhu L, Cheng H et al (2012) Dosimetric comparison of intensity modulated radiotherapy and three-dimensional conformal radiotherapy in patients with gynecologic malignancies: a systematic review and meta-analysis. Radiat Oncol 7. https:\u002F\u002Fdoi.org\u002F10.1186\u002F1748-717X-7-197",{"doi":2110},"10.1186\u002F1748-717X-7-197",{"id":19,"text":2112,"url":19,"identifiers":2113},"Zhang J, Jiang D, Liu H et al (2020) Analyzation of the local confidence limits for IMRT and VMAT based on AAPM TG119 report. Med Dosim 45:66–72. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.meddos.2019.06.001",{"doi":2114},"10.1016\u002Fj.meddos.2019.06.001"]