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exposure limits (OEL) for nitrogen oxides (NO, NO2) and diesel exhaust (EC-DPM) were reassessed by the German authorities in 2016\u002F2017. We performed a clinical cross-sectional study among salt and potash underground workers exposed to these substances at relatively high levels to examine possible indicators of acute effects on workers’ health. We measured post- versus pre-shift differences in cardiovascular, inflammatory, immune, and respiratory effect biomarkers and assessed their associations with personal exposures measured during the same shift. We also compared post- versus pre-shift differences in biomarker levels between exposure groups defined based on work site and job type. None of the above-ground workers exceeded the OEL for NO2 and only 5% exceeded the OEL for EC-DPM exposure. Among underground workers, 33% of miners and 7% underground maintenance workers exceeded the OEL for NO2; the OEL for EC-DPM was exceeded by 56% of miners and 17% of maintenance workers. Some effect biomarkers (thrombocytes, neutrophils, MPO, TNF-α, IgE, FeNO) showed statistically significant differences between pre- versus post-shift measurements; however, there were no consistent associations between pre- and post-shift differences and exposure group or personal exposure measurements during the shift. We did not find evidence of associations between workplace exposure to NO, NO2 or EC-DPM and clinically relevant indicators of acute cardiovascular, inflammatory and immune, or respiratory effects among salt and potash underground workers in Germany.",{"EN":289},"Underground salt and potash workers exposed to nitrogen oxides and diesel exhaust: assessment of specific effect biomarkers",{"VOID":291},"Ausschuss für Gefahrstoffe (BAuA) (2021) Technische Regel für Gefahrstoffe: TRGS 900 Arbeitsplatzgrenzwerte. BArBl, Heft 1\u002F2006, 41–55. Last update 02.07.2021. https:\u002F\u002Fwww.baua.de\u002FDE\u002FAngebote\u002FRechtstexte-und-Technische-Regeln\u002FRegelwerk\u002FTRGS\u002FTRGS-900.html\nBerhane K, Zhang Y, Salam MT, Eckel SP, Linn WS, Rappaport EB, Bastain TM, Lurmann F, Gilliland FD (2014) Longitudinal effects of air pollution on exhaled nitric oxide: the children’s health study. Occup Environ Med 71(7):507–513. https:\u002F\u002Fdoi.org\u002F10.1136\u002Foemed-2013-101874\nBhatt SP, Balte PP, Schwartz JE, Cassano PA, Couper D, Jacobs DRJ, Kalhan R, O’Connor GT, Yende S, Sanders JL, Umans JG, Dransfield MT, Chaves PH, White WB, Oelsner EC (2019) Discriminative accuracy of FEV1:FVC thresholds for COPD-related hospitalization and mortality. J Am Med Assoc 321(24):2438–2447. https:\u002F\u002Fdoi.org\u002F10.1001\u002Fjama.2019.7233\nBudkowska M, Lebiecka A, Marcinowska Z, Woźniak J, Jastrzębska M, Dołęgowska B (2019) The circadian rhythm of selected parameters of the hemostasis system in healthy people. Thromb Res 182:79–88. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.thromres.2019.08.015\nCooper BG, Stocks J, Hal GL, Culver B, Steenbruggen I, Carter KW, Thompson BR, Graham BL, Miller MR, Ruppel G, Henderson J, Fragoso CAV, Stanojevic S (2017) The Global Lung Function Initiative (GLI) Network: bringing the world’s respiratory reference values together. Breathe 13(3):e56–e64. https:\u002F\u002Fdoi.org\u002F10.1183\u002F20734735.012717\nDahmann D, Monz C, Sönksen H (2007) Exposure assessment in German potash mining. Int Arch Occup Environ Health 81(1):95–107. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00420-007-0194-z\nDawson AA, Ogston D (1969) Exercise-induced thrombocytosis. Acta Haematol 42(4):241–246. https:\u002F\u002Fdoi.org\u002F10.1159\u002F000208784\nDweik RA, Boggs PB, Erzurum SC, Irvin CG, Leigh MW, Lundberg JO, Olin A-C, Plummer AL, Taylor DR (2011) An official ATS clinical practice guideline: interpretation of exhaled nitric oxide levels (FeNO) for clinical applications. Am J Respir Crit Care Med 184(5):602–615. https:\u002F\u002Fdoi.org\u002F10.1164\u002Frccm.9120-11ST\nEpstein TG, Kesavalu B, Bernstein CK, Ryan PH, Bernstein JA, Zimmermann N, Lummus Z, Villareal MS, Smith AM, Lenz PH, Bernstein DI (2013) Chronic traffic pollution exposure is associated with eosinophilic, but not neutrophilic inflammation in older adult asthmatics. J Asthma 50(9):983–989. https:\u002F\u002Fdoi.org\u002F10.3109\u002F02770903.2013.832293\nHennig F, Fuks K, Moebus S, Weinmayr G, Memmesheimer M, Jakobs H, Bröcker-Preuss M, Führer-Sakel D, Möhlenkamp S, Erbel R, Jöckel KH, Hoffmann B (2014) Association between source-specific particulate matter air pollution and hs-CRP: local traffic and industrial emissions. Environ Health Perspect 122(7):703–710. https:\u002F\u002Fdoi.org\u002F10.1289\u002Fehp.1307081\nKübler G, Triebel R, Knappe M (2016) Neue Anforderungen aus der Grenzwertdiskussion zu Stickoxide NOx. Kali & Steinsalz 2:7–17\nLotz G, Kersten N (2012) Dosis-wirkungsbeziehungen von exposition und lungenfunktion bei kalibergarbeitern – vergleichende auswertung einer längsschnittstudie im linearen und gemischten modell. Zentralblatt Für Arbeitsmedizin, Arbeitsschutz Und Ergonomie 62(6):304–318\nLotz G, Plitzko S, Gierke E, Tittelbach U, Kersten N, Schneider WD (2008) Dose-response relationships between occupational exposure to potash, diesel exhaust and nitrogen oxides and lung function: Cross—sectional and longitudinal study in two salt mines. Int Arch Occup Environ Health 81(8):1003–1019. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00420-007-0294-9\nLotz A, Kendzia B, Gawrych K, Lehnert M, Brüning T, Pesch B (2013) Statistical methods for the analysis of left-censored variables. GMS Med Inform Biom Epidemiol 9(2):1–7\nLotz G, Backé E, Gierke E, Kersten N, Säverin R, Schneider WD, Thürmer H, Tittelbach U (1998) Studie zur Wirkung von Salzstäuben auf das Atmungssystem. In: Schriftenreihe der Bundesanstalt für Arbeitsschutz und Arbeitsmedizin: Forschungsbericht, Fb 791, 1st edn., Wirtschaftsverlag NW Verlag für neue Wissenschaft GmbH, pp 1–112\nLotz G (2006) Längsschnittstudie über Dosis-Wirkungs-Beziehungen bei Belastungen durch Salzstaub, Dieselmotoremissionen und Stickoxide in 2 Kalibergwerken. research project F5130, BAUA, Germany\nLoxham M, Nieuwenhuijsen MJ (2019) Health effects of particulate matter air pollution in underground railway systems — a critical review of the evidence. Part Fibre Toxicol 16(1):12. https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs12989-019-0296-2\nPoursafa P, Kelishadi R (2010) Air pollution, platelet activation and atherosclerosis. Inflamm Allergy 9(5):387–392. https:\u002F\u002Fdoi.org\u002F10.2174\u002F187152810793937982\nQuanjer PH, Stanojevic S, Cole TJ, Baur X, Hall GL, Culver BH, Enright PL, Hankinson JL, Ip MSM, Zheng J, Stocks J (2012) Multi-ethnic reference values for spirometry for the 3–95-yr age range: the global lung function 2012 equations. Eur Respir J 40(6):1324–1343. https:\u002F\u002Fdoi.org\u002F10.1183\u002F09031936.00080312\nRichter DC, Joubert JR, Nell H, Schuurmans MM, Irusen EM (2008) Diagnostic value of post-bronchodilator pulmonary function testing to distinguish between stable, moderate to severe COPD and asthma. Int J Chronic Obstruct Pulm Dis 3(4):693–699. https:\u002F\u002Fdoi.org\u002F10.2147\u002Fcopd.s948\nRiedl MA, Díaz-Sánchez D, Linn WS, Gong H, Clark KW, Effros RM, Miller JW, Cocker DR, Berhane KT (2012) Allergic inflammation in the human lower respiratory tract affected by exposure to diesel exhaust. Research Report 165. Health Effects Institute, Boston\nRückerl R, Hampel R, Breitner S, Cyrys J, Kraus U, Carter J, Dailey L, Devlin RB, Diaz-Sanchez D, Koenig W, Phipps R, Silbajoris R, Soentgen J, Soukup J, Peters A, Schneider A (2014) Associations between ambient air pollution and blood markers of inflammation and coagulation\u002Ffibrinolysis in susceptible populations. Environ Int 70:32–49. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.envint.2014.05.013\nSchulz H, Karrasch S, Bölke G, Cyrys J, Hornberg C, Pickford R, Schneider A, Witt C, Hoffmann B (2018) Atmen: Luftschadstoffe und Gesundheit. Gesellschaft für Pneumologie und Beatmungsmedizin e.V., Berlin. ISBN: 978-3-9817734-4-6\nScientific Committee on Occupational Exposure Limits, (European Commission) (2014a) Recommendation from the Scientific Committee on Occupational Exposure Limits for nitrogen dioxide. SCOEL\u002FSUM\u002F53, 1–17. https:\u002F\u002Fec.europa.eu\u002Fsocial\u002FBlobServlet?docId=12431&langId=en. Accessed 5 Jan 2015\nScientific Committee on Occupational Exposure Limits, (European Commission) (2014b) Recommendation from the Scientific Committee on Occupational Exposure Limits for nitrogen monoxide. SCOEL\u002FSUM\u002F89, 1–14. https:\u002F\u002Fec.europa.eu\u002Fsocial\u002FBlobServlet?docId=3803&langId=en. Accessed 5 Jan 2015\nSproston NR, Ashworth JJ (2018) Role of C-reactive protein at sites of inflammation and infection. Front Immunol 9:754. https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffimmu.2018.00754\nSteenhof M, Janssen NAH, Strak M, Hoek G, Gosens I, Mudway IS, Kelly FJ, Harrison RM, Pieters RHH, Cassee FR, Brunekreef B (2014) Air pollution exposure affects circulating white blood cell counts in healthy subjects: the role of particle composition, oxidative potential and gaseous pollutants — the RAPTES project. 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J. acoust. Soc. Amer. 27, 1144 (1955)","https:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs10440-022-00541-7",{"doi":962},"10.1007\u002Fs10440-022-00541-7",{"id":22,"text":964,"url":22,"identifiers":965},"Burton, R. R., Beljan, J. R.: Animal restraint: Application in space (weightless) enviroment. Aerospace Med. 48, 9, 1060 (1970)",{},{"id":958,"text":967,"url":960,"identifiers":968},"Dallman, M. F., Jones, M. T.: Corticosteroid feedback controll of ACTH: Effect of stress-induced corticosterone secretion on subsequent stress responses in the rat. Endocrinology 92, 5, 1397 (1973)",{"doi":962},{"id":22,"text":970,"url":22,"identifiers":971},"Duskov, A. V., Zolotyhin, N. A., Kosmimenski, N. F.: Izmenenie dinamiki rabotosposobnosti nekotorjih fiziologiceskih funkcii celoveka pri dliteljnom prebivanija v kamera malogo obaema. Kosmiceskaja biologija i medicina 2, 64 (1969)",{},{"id":22,"text":973,"url":22,"identifiers":974},"Fedorov, I. V.: Gipodinamija i gormonaljnaja aktivnost. Kosmiceskaja biologija i medicina 5, 4, 59 (1971)",{},{"id":22,"text":976,"url":22,"identifiers":977},"Fedorov, I. V., Milov, U. I., Vinogradov, V. N., Grisanina, N.: Ves tela i sindez belkov u zivothjih pri gipokinesii. Kosmiceskaja biologija i medicina 1, 22 (1968)",{},{"id":22,"text":979,"url":22,"identifiers":980},"Gordienko, V. M.: Sostojanie adrenocorticotropnoi funkzii gipofisa i cori nadpotchetchenikov pri immobilisazii konetchnosti kostnom perelome v eksperimente. Ortop. Travm. Protez. 42, 12, 42 (1967)",{},{"id":958,"text":982,"url":960,"identifiers":983},"Guillemin, R., Clayton, G. W., Lipscomb, H. S., Smith, D. J.: Fluorometric measurement of rat plasma and adrenal corticosterone concentration. A note of technical details. J. Lab. clin. Med. 53, 830 (1959)",{"doi":962},{"id":22,"text":985,"url":22,"identifiers":986},"Hrubes, V., Benes, V.: über den Einfluß wiederholter Lärmbelastung auf Ratten. Acta biol. med. germ. 15, 592 (1965)",{},{"id":958,"text":988,"url":960,"identifiers":989},"Kawakami, M., Seto, K., Kimura, F.: Influence of repeated immolization stress upon the circadian rhythmicity of adrenocorticoid biosynthesis. Neuroendocrinology 9, 207 (1972)",{"doi":962},{"id":958,"text":991,"url":960,"identifiers":992},"Kvetnansky, R., Gewirtz, G. P., Weise, V. K., Kopin, I. J.: Synthesis of adrenal catecholamines in rats during and after immobilization stress. Endocrinology 89, 46 (1971)",{"doi":962},{"id":958,"text":994,"url":960,"identifiers":995},"Perhach, J. L., Barry, H.: Stress responses of rats to acute body or neck restraint. Physiology and Behavior 5, 443 (1970)",{"doi":962},{"id":958,"text":997,"url":960,"identifiers":998},"Pfeiffer, C. J.: The physiologic effects of restricted activity in the rat: stress effects of chronic restraint. Exp. Med. Surg. 25, 201–217 (1967)",{"doi":962},{"id":22,"text":1000,"url":22,"identifiers":1001},"Portugalov, V. V., Iljina-Kalueva, E. I., Starostin, V.I.: In Eksperimentaljnie issledovanija hipokinesii, ismenenii gasovoi sregi, uskorenii i peregrusok. Medgis 25 (1968)",{},{"id":22,"text":1003,"url":22,"identifiers":1004},"Potapov, A. N.: Nekotorie pokasateli rosta kris i ih skeletnih misz pri dliteljnoi ogranitchenii podvisnosti. Kosmiceskaja biologija i medicina 2, 16 (1972)",{},{"id":22,"text":1006,"url":22,"identifiers":1007},"Sackler, A. M., Weltmann, H. S., Bradshaw, M., Jurtshuk, P. J.: Endocrine changes due to auditory stress. Acta endocr. (Buc.) 31, 405 (1959)",{},{"id":958,"text":1009,"url":960,"identifiers":1010},"Sackler, A. M., Weltmann, A. S., Jurtshuk, P.: Endocrine aspects of auditory stress. Aerospace Med. 31, 749 (1960)",{"doi":962},{"id":958,"text":1012,"url":960,"identifiers":1013},"Timmer, R. F.: Changes in corticosterone levels after servere stress in the rat. Proc. Soc. exp. Biol. (N. Y.) 110, 694 (1962)",{"doi":962},{"id":22,"text":1015,"url":22,"identifiers":1016},"Tsaneva, N., Stoyanova, N.: Modifications du contenue en adrenaline et en noradrenaline de la glande surrenale et du plasma au cours d'une activite motrice limitee et d'un stress thermique supplementaire. Agressologie 12, C 81 (1971)",{},{"id":958,"text":1018,"url":960,"identifiers":1019},"Vernicos-Danellis, J., Anderson, E., Trigg, L.: Changes in adrenal corticosterone concentration in rats: method of bio-assay ACTH. Endocrinology 79, 624 (1966)",{"doi":962},{"id":958,"text":1021,"url":960,"identifiers":1022},"Vinogradov, V. M., Petrukhin, V. G., Fedorof, I. V.: Morphological changes in animal organs by prolonged hypodynamia and subsequent physical exertion. Biul. Eksp. Biol. Med. 6, 96 (1968)",{"doi":962},{"id":22,"text":1024,"url":22,"identifiers":1025},"Yurgens, I. L., Kirillov, O. T.: Mitotic activity of rat adrenal cortex cells in prolonged hypocinesia, Biul. Eksp. Biol. Med. 73, 98 (1972)",{},{"id":1027,"createTime":1028,"updateTime":1029,"relativeEntities":1030,"slug":1031,"properties":1032,"entityType":294,"verifyStatus":295,"verifyTime":1041,"verifyNote":297,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":1042,"fullTextUrl":22,"authors":1043,"publicationType":539,"publisherRelationship":1061,"citationCount":386,"citationInfo":1109,"publishDate":1112,"publishYear":1110,"citationAnalyzeStatus":953,"lastCitationAnalyze":1029,"indexDatabases":1113,"openAccess":22,"references":1114,"isForceReanalyzing":592},"ca36afbe-84d7-492c-8079-352faf9d2555","2024-01-17T17:00:17.052+00:00","2026-07-29T23:37:45.868+00:00",[],"Health-related-quality-of-life-among-radiology-technicians-in-Turkish-hospitals-a-cross-sectional-study",{"abstract":1033,"title":1035,"gsPaper":1037,"doi":1039},{"EN":1034},"Health related quality of life (HRQoL), despite its potential bi-directional interaction with occupational risks, has not been extensively addressed among radiology technicians. To evaluate HRQoL among radiology technicians in relation to sociodemographic and occupational factors. A total of 115 radiology technicians who were employed in three big hospitals located in Istanbul province were included on a voluntary basis in this cross sectional questionnaire-based study conducted between June 2019 and August 2019. The questionnaire form elicited items on socio-demographic characteristics, occupational characteristics and the 36-item Short-form Health Survey (SF-36), respectively. Overall, 94.8% of technicians confirmed previous training on radiation protection and safety, while 92.2% noted distrust in their knowledge on radiation protection and patient dosage. In addition, 47.8% of technicians noted seldom use of radiation protection measures and 55.7% noted distrust in reliability of radiation exposure measurements. The multiple regression analysis revealed that older age, female gender, working at a university hospital and seldom use of protection significantly predicted poor HRQoL (p = 0.042 to 0.001), while working in interventional radiology and having trust in radiation exposure measurements predicted better HRQoL (p = 0.006 to 0.001) in terms of certain domains. In conclusion, our findings revealed lack of trust in current self-knowledge on radiation protection and safety by majority of radiology technicians and seldom use of radiation protection measures by half of them, despite previously trained on radiation protection and safety. Certain occupational factors and factors related to radiation protection and safety were also amongst the significant determinants of poor HRQoL.",{"EN":1036},"Health-related quality of life among radiology technicians in Turkish hospitals: a cross sectional 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D, Griciene B, Skovorodko K, Laurikaitiene J, Puiso J (2020) Occupational radiation exposure of health professionals and cancer risk assessment for Lithuanian nuclear medicine workers. Environ Res 183:109144.",{"doi":962},{"id":958,"text":1119,"url":960,"identifiers":1120},"Akova I, Hasdemir O (2019) Job Satisfaction, Quality of Life Levels, and Other Factors Affecting Physicians Working in Primary Health Care Institutions (Sivas). Erciyes Med J 41:69–76",{"doi":962},{"id":958,"text":1122,"url":960,"identifiers":1123},"Azevedo WF, Mathias LADST (2017) Work addiction and quality of life: a study with physicians. Einstein (sao Paulo) 15:130–135",{"doi":962},{"id":958,"text":1125,"url":960,"identifiers":1126},"Bernier MO, Doody MM, Van Dyke ME, Villoing D, Alexander BH, Linet MS, Kitahara CM (2018) Work history and radioprotection practices in relation to cancer incidence and mortality in US radiologic technologists performing nuclear medicine procedures. Occup Environ Med 75:533–561",{"doi":962},{"id":22,"text":1128,"url":22,"identifiers":1129},"Çakır M, Piyal B, Aycan S (2015) Healthy Lifestyle Behaviours and Quality of Life in Physicians: A Faculty of Medicine Based Cross-Sectional Study. Ankara Med J 15:209–219",{},{"id":1131,"text":1132,"url":1133,"identifiers":1134},"a74e1999-51ca-477b-988c-1a4e1f2c1b44","Calvert MJ, Skelton JR (2008) The need for education on health related-quality of life. BMC Med Educ 8:2","https:\u002F\u002Fbmcmededuc.biomedcentral.com\u002Farticles\u002F10.1186\u002F1472-6920-8-2",{"doi":1135},"10.1186\u002F1472-6920-8-2",{"id":1137,"text":1138,"url":1139,"identifiers":1140},"a01453da-6846-4d11-9df2-a926d69374bd","Chetlen AL, Chan TL, Ballard DH, Frigini LA, Hildebrand A, Kim S, Brian JM, Krupinski EA, Ganeshan D (2019) Addressing Burnout in Radiologists. Acad Radiol 26:526–533","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS1076633218303416",{"doi":1141},"10.1016\u002Fj.acra.2018.07.001",{"id":958,"text":1143,"url":960,"identifiers":1144},"Dargahi H, Changizi V, Gharabagh EJ (2012) Radiology Employees’ Quality of Work Life. Acta Med Iran 50:250–256",{"doi":962},{"id":958,"text":1146,"url":960,"identifiers":1147},"Dauda AM, Ozoh JO, Towobola OA (2019) Medical doctors’ awareness of radiation exposure in diagnostic radiology investigations in a South African academic institution. SA J Radiol 23:1707",{"doi":962},{"id":22,"text":1149,"url":22,"identifiers":1150},"Domantay JAA (2014) Health-related quality of life of future physicians at a medical school in the Philippines: a cross-sectional study. SAGE Open July–September. pp. 1–9.",{},{"id":22,"text":1152,"url":22,"identifiers":1153},"Gunasekara FI, Carter K, McKenzie S (2013) Income-related health inequalities in working age men and women in Australia and New Zealand. Aust N Z J Public Health 37:211–217",{},{"id":22,"text":1155,"url":22,"identifiers":1156},"Gundersen L (2001) Physician burnout. Ann Intern Med 135:145–148",{},{"id":958,"text":1158,"url":960,"identifiers":1159},"Haber Y, Palgi Y, Hamama-Raz Y, Shrira A, Ben-Ezra M (2013) Predictors of professional quality of life among physicians in a conflict setting: the role of risk and protective factors. Isr J Psychiatry Relat Sci 50:174–180",{"doi":962},{"id":958,"text":1161,"url":960,"identifiers":1162},"Jacobsen EL, Bye A, Aass N, Fosså SD, Grotmol KS, Kaasa S, Loge JH, Moum T, Hjermstad MJ (2018) Norwegian reference values for the short-form health survey 36: Development over time. Qual Life Res 27:1201–1212",{"doi":962},{"id":22,"text":1164,"url":22,"identifiers":1165},"Kiguli-Malwadde E, Ddungu Matovu P, Kawooya MG, Byanyima RK (2006) Radiation safety awareness among radiation workers and clientele at Mulago Hospital, Kampala, Uganda. East Cent Afr J Surg 11:49–51",{},{"id":958,"text":1167,"url":960,"identifiers":1168},"Kitahara CM, Preston DL, Neta G, Little MP, Doody MM, Simon SL, Sigurdson AJ, Alexander BH, Linet MS (2018) Occupational radiation exposure and thyroid cancer incidence in a cohort of U.S. radiologic technologists, 1983–2013. Int J Cancer 143:2145–2149",{"doi":962},{"id":22,"text":1170,"url":22,"identifiers":1171},"Kocyigit H, Aydemir O, Fisek G, Olmez N, Memis A (1999) Reliability and validity of Turkish version of Short Form 36: a study of patients with rheumatoid disorder. Drug Ther 12:102–106",{},{"id":958,"text":1173,"url":960,"identifiers":1174},"Laguardia J, Campos MR, Travassos C, Najar AL, Anjos LA, Vasconcellos MM (2013) Brazilian normative data for the short form 36 questionnaire, version 2. Rev Bras Epidemiol 16:889–897",{"doi":962},{"id":958,"text":1176,"url":960,"identifiers":1177},"Lee DK (2016) Altervatives to P value: confidence interval and effect size. Korean J Anesthesiol 69:555–562",{"doi":962},{"id":958,"text":1179,"url":960,"identifiers":1180},"Liang Y, Wang H, Tao X (2015) Quality of life of young clinical doctors in public hospitals in China’s developed cities as measured by the Nottingham Health Profile (NHP). Int J Equity Health 14:85",{"doi":962},{"id":958,"text":1182,"url":960,"identifiers":1183},"Lins L, Carvalho FM (2016) SF-36 total score as a single measure of health-related quality of life: Scoping review. SAGE Open Med 4:2050312116671725",{"doi":962},{"id":958,"text":1185,"url":960,"identifiers":1186},"Mojiri M, Moghimbeigi A (2011) Awareness and attitude of radiographers towards radiation protection. J Paramed Sci 2:3–5",{"doi":962},{"id":958,"text":1188,"url":960,"identifiers":1189},"Ozkan S, Aba G, Tekinsoy B (2016) The importance of radiation safety in terms of hospital administration and research on the awareness stage of radiology technicians. JAREM 6:162–169",{"doi":962},{"id":1191,"text":1192,"url":1193,"identifiers":1194},"e911fb58-996c-41cd-a7e9-989bab9df785","Perneger TV, Leplege A, Etter JF, Rougemont A (1995) Validation of a French-language version of the MOS 36-item Short Form Health Survey (SF-36) in young healthy adults. J Clin Epidemiol 48:1051–1060","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F089543569400227H",{"doi":1195},"10.1016\u002F0895-4356(94)00227-h",{"id":22,"text":1197,"url":1198,"identifiers":1199},"Radiology Technician: A Day in Life. https:\u002F\u002Fwww.radiology-technician.com\u002Fa-day-in-life\u002F. Accessed March 18, 2020.","https:\u002F\u002Fwww.radiology-technician.com\u002Fa-day-in-life\u002F",{},{"id":958,"text":1201,"url":960,"identifiers":1202},"Roser K, Mader L, Baenziger J, Sommer G, Kuehni CE, Michel G (2019) Health-related quality of life in Switzerland: normative data for the SF-36v2 questionnaire. Qual Life Res 28:1963–1977",{"doi":962},{"id":958,"text":1204,"url":960,"identifiers":1205},"Seo S, Lim WY, Lee DN, Kim JU, Cha ES, Bang YJ, Lee WJ, Park S, Jin YW (2018) Assessing the health effects associated with occupational radiation exposure in Korean radiation workers: protocol for a prospective cohort study. BMJ Open 8:e017359.",{"doi":962},{"id":22,"text":1207,"url":22,"identifiers":1208},"Sevimli F, İşcan ÖF (2005) Job Satisfaction in terms of individual and organizational factors. Ege Akademik Bakis Derg 5:55–64",{},{"id":22,"text":1210,"url":1211,"identifiers":1212},"Şavlı Emiroğlu P, Pala K (2015) Job Satisfaction and Quality Of Life Level of Physicians Working under Bursa Provincial Public Health Department and Influencing Factors. Unpublished Doctoral Dissertation, Uludag University faculty of Medicine, Bursa. https:\u002F\u002Facikerisim.uludag.edu.tr\u002Fhandle\u002F11452\u002F2030.","https:\u002F\u002Facikerisim.uludag.edu.tr\u002Fhandle\u002F11452\u002F2030",{},{"id":1214,"text":1215,"url":1216,"identifiers":1217},"f9cc8f7f-7735-41d8-a850-a807e23894c7","Shanafelt TD, Balch CM, Bechamps G, Russell T, Dyrbye L, Satele D, Collicott P, Novotny PJ, Sloan J, Freischlag J (2010) Burnout and medical errors among American surgeons. Ann Surg 251:995–1000","https:\u002F\u002Fjournals.lww.com\u002F00000658-201006000-00001",{"doi":1218},"10.1097\u002Fsla.0b013e3181bfdab3",{"id":22,"text":1220,"url":22,"identifiers":1221},"Sirgy MJ, Efraty D, Siegel P, Lee DJ (2001) A new measure of quality of work life based on need satisfaction and spillover theories. Soc Indicators Res 55:241–307",{},{"id":958,"text":1223,"url":960,"identifiers":1224},"Spickard A Jr, Gabbe SG, Christensen JF (2002) Mid-career burnout in generalist and specialist physicians. JAMA 288:1447",{"doi":962},{"id":958,"text":1226,"url":960,"identifiers":1227},"Szarmach A, Piskunowicz M, Świętoń D, Muc A, Mockałło G, Dzierżanowski J, Szurowska E (2015) Radiation safety awareness among medical staff. Pol J Radiol 80:57–61",{"doi":962},{"id":1229,"text":1230,"url":1231,"identifiers":1232},"8d18d435-a69e-420f-ac46-2c1e3f112fe2","Taqi AH, Faraj KA, Zaynal SA, Hameed AM, Mahmood AA (2018) Effects of occupational exposure of X-Ray on hematological parameters of diagnostic technicians. Radiat Phys Chem 147:45–52","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0969806X17308782",{"doi":1233},"10.1016\u002Fj.radphyschem.2018.01.027",{"id":22,"text":1235,"url":22,"identifiers":1236},"Tözün M, Çulhacı A, Ünsal A (2008) The Job Satisfaction of Physicians That Working in Primary Health Care Institutions in Family Medicine System (Eskişehir). TAF Prev Med Bull 7:377–384",{},{"id":22,"text":1238,"url":1239,"identifiers":1240},"Ulutasdemir N, Tanir F (2017) Occupational Risks of Health Professionals. In: Korhan O, ed. Occupational Health. INTECH; pp 45–57. Available from: https:\u002F\u002Fdoi.org\u002F10.5772\u002F67148. Accessed March 18, 2020.","https:\u002F\u002Fdoi.org\u002F10.5772\u002F67148",{"mag":1241,"openalex":1242,"doi":1243},"2583428375","W2583428375","10.5772\u002F67148",{"id":958,"text":1245,"url":960,"identifiers":1246},"Vural F, Fil Ş, Çiftçi S, Dura AA, Yıldırım F, Patan R (2012) Radiation safety in operating units; knowledge, attitude and behaviors of operating room staffs. Balıkesir Saglik Bil Derg 1:131–136",{"doi":962},{"id":22,"text":1248,"url":22,"identifiers":1249},"Ware JE, Kosinski M, Bjorner JB, Turner-Bowker DM, Gandek B, Maruish ME (2007) User's Manual for the SF-36v2 Health Survey. Quality Metric Incorporated, Lincoln, RI",{},{"id":958,"text":1251,"url":960,"identifiers":1252},"Williams ES, Manwell LB, Konrad TR, Linzer M (2007) The relationship of organizational culture, stress, satisfaction, and burnout with physicianreported error and suboptimal patient care: Results from the MEMO study. Health Care Manage Rev 32:203–212",{"doi":962},{"id":22,"text":1254,"url":1255,"identifiers":1256},"World Health Organization (2013). Health. Avaliable from: http:\u002F\u002Fwww.who.int\u002Ftrade\u002Fglossary\u002Fstory046\u002Fen\u002F","http:\u002F\u002Fwww.who.int\u002Ftrade\u002Fglossary\u002Fstory046\u002Fen\u002F",{},{"id":958,"text":1258,"url":960,"identifiers":1259},"Yoshinaga S, Mabuchi K, Sigurdson AJ, Doody MM, Ron E (2004) Cancer risks among radiologists and radiologic technologists: review of epidemiologic studies. Radiology 233:313–321",{"doi":962},{"id":1261,"createTime":1262,"updateTime":1263,"relativeEntities":1264,"slug":1265,"properties":1266,"entityType":294,"verifyStatus":295,"verifyTime":1277,"verifyNote":297,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":1278,"fullTextUrl":22,"authors":1279,"publicationType":539,"publisherRelationship":1313,"citationCount":23,"citationInfo":1361,"publishDate":1364,"publishYear":1362,"citationAnalyzeStatus":953,"lastCitationAnalyze":1365,"indexDatabases":1366,"openAccess":22,"references":22,"isForceReanalyzing":592},"dff61d9a-32f4-4f45-80bc-8b8ca5697bf9","2024-01-19T11:20:35.484+00:00","2026-07-29T08:47:38.938+00:00",[],"Studien-zur-Beziehung-zwischen-Gie%C3%9Ferei-Silikose-und-Tuberkulose",{"abstract":1267,"title":1269,"gsPaper":1271,"references":1273,"doi":1275},{"EN":1268},"1. In dem von uns zusammengestellten Material ist die Tuberkulose bei Quarzstaubexponierten aus dem Gießereibetrieb deutlich häufiger als bei Personen an nichtexponierten Arbeitsplätzen. 2. Die Altersverteilung der Tuberkulosen ist bei Exponierten und Nichtexponierten verschieden: die Tuberkulose nach dem 45. Altersjahr ist bei Exponierten deutlich häufiger als bei Nichtexponierten, im Sinne der „Zusatztuberkulose“ von Redeker. 3. Im Hinblick auf Schwere und Verlaufsform der Tuberkulose ergeben unsere Untersuchungen keinen wesentlichen Unterschied zwischen Exponierten und Nichtexponierten. 4. Ungefähr die Hälfte unserer Tuberkulosefälle bei Quarzexponierten tritt nach einer Expositionsdauer von weniger als 10 Jahren auf. Die durchschnittliche Quarzexposition unserer Tuberkulosefälle beträgt 14,8 Jahre. 5. Unsere Befunde unterstützen die Annahme, daß bereits geringfügige Quarzreaktionen der Lunge ohne manifeste Silikoseentwicklung die Disposition zu Tuberkulose steigern.",{"EN":1270},"Studien zur Beziehung zwischen Gießerei-Silikose und Tuberkulose",{"VOID":1272},"[\"5775488374986511489\"]",{"VOID":1274},"Bertschi, E., u. E. Stiefel: Silikose in einer Großgießerei. Schweiz. med. Wschr. 80, 1163–1166 (1950); 85, 1114–1117 (1955).\nDi Biasi, W.: Bericht über die Silikose-Arbeitstagung. Bochum 1951.\nHögger, E.: Silikosegefährdete Berufsgruppen. In Handbuch für innere Medizin, Bd. IV, S. 849–869. Berlin: Springer 1956.\nLanza, A. J., and R. J. Vane: The prevalence of silicosis in the general population and its effects upon the incidence of tuberculosis. Amer. Rev. Tuberc. 29, 8–16 (1934).\nRedeker, P., u. O. Walter: Entstehung und Entwicklung der Lungenschwindsucht der Erwachsenen. Leipzig: Curt Kabitsch 1929.\nReichmann, V.: Kurzer Überblick über den Stand der Silikoseforschung nebst einem Beitrag über die röntgenologischen und klinischen Beziehungen der Silikose zur Tuberkulose. Beitr. Silikose-Forsch. H. 1 (1949).\nReinl, W., W. Greinert u. W. Rascher: Die Silikosegefahr in den Gießereien. „Gießerei“ H. 13. 347–348 (1955).\nRüttner, J. R.: Die Silikoanthrakose der Gießer. Vjschr. naturf. Ges. Zürich 95, Beih. 2\u002F3, 73–98 (1950).\nFoundry worker's pneumoconiosis in Switzerland (Anthracosilicosis). A. M. A. Arch. Indust. Hyg. 9, 297–305 (1954).\nSchmid, H. J.: Die Silikose im Schaffhauser Industriegebiet. Mitt. naturforsch. Ges. Schaffhausen 18 (1943).\nDie Klinik der Silikose. In Handbuch der inneren Medizin, Bd. IV\u002F3, Berlin-Göttingen-Heidelberg: Springer 1956.\nTeleky, L.: Sterblichkeit und Krankheitsstatistik der Schleifer Solingens, Cronebergs und Remscheids. Arbeit u. Gesundheit H. 9, 31–43 (1928).\nUehlinger, E.: Pathologische Anatomie und experimentelle Pathologie der Stauberkrankungen. In Handbuch der inneren Medizin, Bd. IV, S. 739–750. Berlin-Göttingen-Heidelberg: Springer 1956.\nUehlinger, F.: Untersuchungen über die Silikose in einem Großbetrieb der Metallindustrie. Diss. Zürich 1949.\nWorth, G., u. E. Schiller: Pneumokoniosen. Köln: Staufen-Verlag 1954.",{"VOID":1276},"10.1007\u002FBF00312711","2024-05-13T10:18:13.813+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF00312711",[1280],{"id":1281,"sortIndex":23,"researcher":22,"roles":1282,"affiliations":1283,"properties":1310},"1b445063-a553-4805-86f0-e5ae56f059aa",[303],[1284,1292,1301],{"id":1285,"sortIndex":23,"affiliation":1286,"properties":22},"9f967561-31b7-4d83-84f6-c0d50aeb3c19",{"id":1285,"createTime":22,"updateTime":22,"relativeEntities":1287,"slug":22,"properties":1288,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1291,"statistic":22},[],{"title":1289},{"VI":1290},"Aus der Medizinischen Abteilung des Kantonsspitals Schaffhausen, Switzerland",[],{"id":1293,"sortIndex":157,"affiliation":1294,"properties":1300},"fb6fffc8-7aad-4052-ac15-e88cbb1d0072",{"id":1293,"createTime":22,"updateTime":22,"relativeEntities":1295,"slug":22,"properties":1296,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1299,"statistic":22},[],{"title":1297},{"VI":1298},"dem Pathologischen Institut der Universität Zürich, Switzerland",[],{},{"id":1302,"sortIndex":158,"affiliation":1303,"properties":1309},"a1913f24-e05a-4845-8d59-8263a6a63bcd",{"id":1302,"createTime":22,"updateTime":22,"relativeEntities":1304,"slug":22,"properties":1305,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":1308,"statistic":22},[],{"title":1306},{"VI":1307},"Zuoz, Engadin, Switzerland",[],{},{"title":1311},{"VI":1312},"W. 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mills are known to be a source of ambient polycyclic aromatic hydrocarbons (PAHs), and increased cancer risk has been reported among neighborhoods previously. In this study, we tried to assess the exposure to PAHs among residents nearby to a large steel mill in Korea by measuring urinary 1-hydroxypyrene (1-OHP). Two separate areas at different distances from a steel mill but on the same wind direction were chosen to evaluate the environmental exposures to polycyclic aromatic hydrocarbons. Three-hundred and fifty children living in the vicinity of steel plant (“nearby” group) and 606 children residing much farther from the factory (“remote” group) participated. Urine was collected on three consecutive days, and questionnaires about exposure to passive smoking and food consumption as well as demographics were obtained. Routine monitoring data of ambient pollutants were obtained and particulate matter less than 10 μm (PM10) was analyzed with multiple regressions to assess the associations with urinary 1-OHP. The geometric mean concentration of urinary 1-OHP among nearby group (0.048 ± 1.878 μmol\u002Fmol creatinine, GM ± GSD) was approximately 1.3 times higher than that among remote group (0.036 ± 2.425 μmol\u002Fmol creatinine, GM ± GSD), and using multiple regression techniques, the difference was significant (P \u003C 0.0001) after adjusting for confounding variables. When different periods before the sampling of urine were examined, PM10 averages over 2 days, 3 days, and 1 week prior to urine sampling showed significant associations with urinary 1-OHP levels. Our findings are consistent with the interpretation that residents nearby to a steel mill are exposed to PAHs through ambient exposures.",{"EN":1377},"1-Hydroxypyrene as a biomarker of PAH exposure among subjects living in two separate regions from a steel 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YS, Park RM, Stayner L et al (2006) Cancer morbidity in iron and steel workers in Korea. 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Int Arch Occup Environ Health 71(8):533–536","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs004200050319",{"doi":1542},"10.1007\u002Fs004200050319",{"id":958,"text":1544,"url":960,"identifiers":1545},"Brzeźnicki S, Jakubowski M, Czerski B (1997) Elimination of 1-hydroxypyrene after human volunteer exposure to polycyclic aromatic hydrocarbons. Int Arch Occup Environ Health 70:257–260",{"doi":962},{"id":958,"text":1547,"url":960,"identifiers":1548},"Buchet JP, Gennart JP, Mercado-Calderon F et al (1992) Evaluation of exposure to polycyclic aromatic hydrocarbons in a coke production and a graphite electrode manufacturing plant: assessment of urinary excretion of 1-hydroxypyrene as a biological indicator of exposure. Br J Ind Med 49(11):761–776",{"doi":962},{"id":958,"text":1550,"url":960,"identifiers":1551},"Buckley TJ, Lioy PJ (1992) An examination of the time course from human dietary exposure to polycyclic aromatic hydrocarbons to urinary elimination of 1-hydroxypyrene. Br J Ind Med 92:113–124",{"doi":962},{"id":958,"text":1553,"url":960,"identifiers":1554},"Castaño-Vinyals G, D’Errico A, Malats N et al (2004) Biomarkers of exposure to polycyclic aromatic hydrocarbons from environmental air pollution. Occup Environ Med 61:1–9",{"doi":962},{"id":22,"text":1556,"url":22,"identifiers":1557},"Chung JC, Callahan PJ, Lyu CW et al (1999) Polycyclic aromatic hydrocarbon exposures of children in low-income families. J Expos Anal Environ Epidemiol 1:193–225",{},{"id":958,"text":1559,"url":960,"identifiers":1560},"Dusseldorp A, Kruize H, Brunekreef B et al (1995) Associations of PM10 and airborne iron with respiratory health of adults living near a steel factory. Am J Respir Crit Care Med 152:1932–1939",{"doi":962},{"id":22,"text":1562,"url":22,"identifiers":1563},"EPA (1995) Preliminary study of the iron and steel category: effluent limitations guidelines and standards",{},{"id":1565,"text":1566,"url":1567,"identifiers":1568},"f04a8ba3-bf56-48e8-b41e-803c9cb7c551","Fiala Z, Vyskocil A, Krajak V et al (2001) Environmental exposure of small children to polycyclic aromatic hydrocarbons. Int Arch Occup Environ Health 74:411–420","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs004200100239",{"doi":1569},"10.1007\u002Fs004200100239",{"id":958,"text":1571,"url":960,"identifiers":1572},"Gündel J, Mannschreck C, Büttner K et al (1996) Urinary levels of 1-hydroxypyrene, 1-, 2-, 3- and 4-hydroxyphenanthrene in females living in an industrial area of Germany. Arch Environ Contam Toxicol 31:585–590",{"doi":962},{"id":1574,"text":1575,"url":1576,"identifiers":1577},"c6cc7fa5-306f-4712-9dee-51166357c351","Heudorf U, Angerer J (2001) Internal exposure to PAHs of children and adults living in homes with parquet flooring containing high levels of PAHs in the parquet glue. Int Arch Occup Environ Health 74:91–101","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs004200000214",{"doi":1578},"10.1007\u002Fs004200000214",{"id":958,"text":1580,"url":960,"identifiers":1581},"Huang W, Grainger J, Patterson Jr DG et al (2004) Comparison of 1-hydroxypyrene exposure in the US population with that in occupational exposure studies. Int Arch Occup Environ Health 77:491–498",{"doi":962},{"id":958,"text":1583,"url":960,"identifiers":1584},"IARC (1983) Polynuclear Aromatic Compounds. Part 1. Chemical, environmental, and experimental data. IARC monogr Eval Carcinog Risks Hum 32:33–45",{"doi":962},{"id":22,"text":1586,"url":22,"identifiers":1587},"IARC (1987) Overall evaluations of carcinogenicity. IARC monogr Eval Carcinog Risks Hum, volume 1–42, Supplement No. 7, Lyon",{},{"id":1589,"text":1590,"url":1591,"identifiers":1592},"117cae3d-4164-4ea9-b96d-7260555d3b59","Jacob J, Seidel A (2002) Biomonitoring of polycyclic aromatic hydrocarbons in human urine. J Chromatogr B Analyt Technol Biomed Life Sci 778:31–47","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0378434701004674",{"doi":1593},"10.1016\u002Fs0378-4347(01)00467-4",{"id":22,"text":1595,"url":22,"identifiers":1596},"Jaffe M (1986) Creatinine Jaffe endpoint methods with deproteinization. Z Physiol Chem 10:391–400",{},{"id":958,"text":1598,"url":960,"identifiers":1599},"Jongeneelen FJ (1994) Biological monitoring of environmental exposure to polycyclic aromatic hydrocarbons; 1-hydroxypyrene in urine of people. Toxicol Lett 72(1–3):205–211",{"doi":962},{"id":1601,"text":1602,"url":1603,"identifiers":1604},"69ef1a78-e170-4ed3-9e31-b6cc5b768975","Jongeneelen FJ (1997) Methods for routine biological monitoring of carcinogenic PAH-mixtures. Sci Total Environ 199:141–149","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0048969797000648",{"doi":1605},"10.1016\u002Fs0048-9697(97)00064-8",{"id":958,"text":1607,"url":960,"identifiers":1608},"Jongeneelen FJ, Bos RP, Anzion RB et al (1986) Biological monitoring of polycyclic aromatic hydrocarbons Metabolites in urine. Scand J Work Environ Health 12(2):137–143",{"doi":962},{"id":1610,"text":1611,"url":1612,"identifiers":1613},"17d1286a-d0f3-4bdb-b8cd-435317435a74","Jongeneelen FJ, Anzion RBM, Henderson PTh (1987) Determination of hydroxylated metabolites of polycyclic aromatic hydrocarbons in urine. J Chromatogr 413:227–232","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F037843478780230X",{"doi":1614},"10.1016\u002F0378-4347(87)80230-x",{"id":958,"text":1616,"url":960,"identifiers":1617},"Jongeneelen FJ, van Leeuwen FE, Oosterink S et al (1990) Ambient and biological monitoring of coke oven workers: determinants of the internal dose of polycyclic aromatic hydrocarbons. Br J Ind Med 47(7):454–461",{"doi":962},{"id":958,"text":1619,"url":960,"identifiers":1620},"Kang D, Rothman N, Poirier MC (1995) Interindividual differences in the concentration of 1-hydroxypyrene-glucuronide in urine and polycyclic aromatic hydrocarbon-DNA adducts in peripheral white blood cells after charbroiled beef consumption. Carcinogenesis 16:1079–1085",{"doi":962},{"id":958,"text":1622,"url":960,"identifiers":1623},"Kang JW, Cho SH, Kim H et al (2002) Correlation of urinary 1-hydroxypyrene and 2-naphthol with total suspended particulates in ambient air in municipal middle-school students in Korea. Arch Environ Health 57(4):377–382",{"doi":962},{"id":22,"text":1625,"url":1626,"identifiers":1627},"Kang JW, Lee CH, Rho SI et al (2004) Exposure assessment of polycyclic aromatic hydrocarbons via food by PAH biomarkers. The annual report of KFDA 8:2603–2604 http:\u002F\u002Fwww.kfda.go.kr","http:\u002F\u002Fwww.kfda.go.kr",{},{"id":22,"text":1629,"url":22,"identifiers":1630},"Kim H, Lim HS, Kang JW et al (1999) Effect of occupation, life style and genetic polymorphism of CYP1A1, GSTM1, and GSTT1 on urinary 1-hydroxypyrene and 2-naphthol concentration. Korean J Occup Environ Med 11(4):546–556",{},{"id":958,"text":1632,"url":960,"identifiers":1633},"Liberti L, Notarnicola M, Primerano R et al (2006) Air pollution from a large steel factory: polycyclic aromatic hydrocarbon emissions from coke-oven batteries. J Air Waste Manag Assoc 56(3):255–260",{"doi":962},{"id":22,"text":1635,"url":22,"identifiers":1636},"Lloyd JW (1971) Long term mortality study of steel workers: V. respiratory cancer in coke plant workers. J Occup Med 13(2):53–68",{},{"id":22,"text":1638,"url":22,"identifiers":1639},"Marcias ES, Husar RB (1976) A review of particulate atmospheric mass measurement via the beta attenuation technique. In: Liu BYH (ed) Fine particles. Academic, New York",{},{"id":22,"text":1641,"url":1642,"identifiers":1643},"Ministry of Construction and transportation, Republic of Korea (2004) Statistical yearbook of traffic volume 2004. Ministry of Construction and Transportation, Republic of Korea http:\u002F\u002Fwww.moct.go.kr","http:\u002F\u002Fwww.moct.go.kr",{},{"id":958,"text":1645,"url":960,"identifiers":1646},"Mucha AP, Hryhorczuk D, Serdyuk A et al (2006) Urinary 1-hydroxypyrene as a biomarker of PAH exposure in 3-year-old Ukrainian Children. Environ Health Perspect 114:603–609",{"doi":962},{"id":22,"text":1648,"url":22,"identifiers":1649},"Nelson D, Scheff PA, Keil C (1991) Characterization of volatile organic compounds contained in coke plant emissions. In: The 84th annual meeting & exhibition of air & waste management association, vol 6, Vancouver, pp 79–91",{},{"id":958,"text":1651,"url":960,"identifiers":1652},"Pless-Mulloli T, Phillimore P, Moffatt S et al (1998) Lung cancer, proximity to industry, and poverty in northeast England. Environ Health Perspect 106(4):189–196",{"doi":962},{"id":958,"text":1654,"url":960,"identifiers":1655},"Pope CA III (1989) Respiratory disease associated with community air pollution and a steel mill, Utah Valley. Am J Public Health 79(5):623–628",{"doi":962},{"id":958,"text":1657,"url":960,"identifiers":1658},"Rodriguez V, Tardon A, Kogevinas M et al (2000) Lung cancer risk in iron and steel foundry workers: a nested case control study in Asturias, Spain. Am J Ind Med 38(6):644–650",{"doi":962},{"id":1660,"text":1661,"url":1662,"identifiers":1663},"2adc1caf-8137-48d4-85b7-e024e91aae48","Strickland P, Kang D (1999) Urinary 1-hydroxypyrene and other PAH metabolites as biomarkers of exposure to environmental PAH in air particulate matter. Toxicol Lett 5(108):191–199","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0378427499000892",{"doi":1664},"10.1016\u002Fs0378-4274(99)00089-2",{"id":958,"text":1666,"url":960,"identifiers":1667},"Strickland P, Kang D, Sithisarankul P (1996) Polycyclic aromatic hydrocarbon metabolites in urine as biomarkers of exposure and effect. Environ Health Perspect 104(5):927–932",{"doi":962},{"id":958,"text":1669,"url":960,"identifiers":1670},"Strunk P, Ortlepp K, Heinz H et al (2002) Ambient and biological monitoring of coke plant workers—determination of exposure to polycyclic aromatic hydrocarbons. Int Arch Occup Environ Health 75(5):354–358",{"doi":962},{"id":958,"text":1672,"url":960,"identifiers":1673},"Viau C, Vyskocil A, Martel L (1995) Background urinary 1-hydroxypyreme levels in non-occupationally exposed individuals in the Province of Quebec, Canada, and comparison with its excretion in workers exposed to PAH mixtures. Sci Total Environ 164:191–194",{"doi":962},{"id":22,"text":1675,"url":22,"identifiers":1676},"de Vos RH, van Dokkum W, Schouten A et al (1990) Polycyclic aromatic hydrocarbons in Dutch total diet samples (1984–1986). Food Chem Toxicol 28(4):263–268",{},{"id":1678,"text":1679,"url":1680,"identifiers":1681},"1cb09ecf-8bb7-4fb7-8abd-9cb6fe2756cf","Vyskocil A, Fiala Z, Chénier V et al (2000) Assessment of multipathway exposure of small children to PAH. Environ Toxicol Pharmacol 8:111–118","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS1382668900000326",{"doi":1682},"10.1016\u002Fs1382-6689(00)00032-6",{"id":958,"text":1684,"url":960,"identifiers":1685},"van Wijnen JH, Slob R, Jongmans-Liedekerken G et al (1996) Exposure to polycyclic aromatic hydrocarbons among Dutch children. Environ Health Perspect 104(5):530–534",{"doi":962},{"id":958,"text":1687,"url":960,"identifiers":1688},"Xu Z, Brown LM, Pan GW et al (1996) Cancer risks among iron and steel workers in Anshan, China, Part II: case-control studies of lung and stomach cancer. Am J Ind Med 30(1):7–15",{"doi":962},{"id":958,"text":1690,"url":960,"identifiers":1691},"Yang M, Kim S, Lee E et al (2003) Sources of polycyclic aromatic hydrocarbon exposure in non-occupationally exposed Koreans. Environ Mol Mutagen 42:250–257",{"doi":962},{"id":1693,"createTime":1694,"updateTime":1695,"relativeEntities":1696,"slug":1697,"properties":1698,"entityType":294,"verifyStatus":295,"verifyTime":1709,"verifyNote":297,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":1710,"fullTextUrl":22,"authors":1711,"publicationType":539,"publisherRelationship":1792,"citationCount":1840,"citationInfo":1841,"publishDate":1844,"publishYear":1842,"citationAnalyzeStatus":953,"lastCitationAnalyze":1695,"indexDatabases":1845,"openAccess":22,"references":22,"isForceReanalyzing":592},"e75462d6-c87c-4681-8158-2c6eb74a91a1","2024-02-18T14:31:12.707+00:00","2026-07-26T01:32:36.309+00:00",[],"Circulatory-disturbances-of-the-foot-in-vibration-syndrome",{"abstract":1699,"title":1701,"gsPaper":1703,"references":1705,"doi":1707},{"EN":1700},"Circulatory disturbances of the foot in patients with vibration syndrome were studied by measuring the skin temperature of both index fingers and great toes through a 3-min immersion of the right foot in cold water at 10°C. Subjects included 11 patients with vibration-induced white finger (VWF) [VWF(+) group], 12 patients without VWF [VWF(−) group], and 20 healthy referents not exposed to vibration. Patients were all male chain saw operators who had scarcely been exposed to vibration of the foot. The prevalence of coldness felt in the upper and lower extremities was > 90% in the VWF(+) group, about 60% in the VWF(−) group, and \u003C 10% in the referents. The extent of the coldness was greatest in the VWF (+) group. The skin temperature of both fingers and toes was lowest in the VWF(+) group, somewhat higher in the VWF(−) group, and highest in the referents both before and after immersion. These findings indicate that patients with vibration syndrome, especially those with VWF, have circulatory disturbances in the foot as well as in the hand. The disturbances in the foot may be related to long-term repeated vasoconstriction in the foot induced by hand-arm vibration through the sympathetic nervous system.",{"EN":1702},"Circulatory disturbances of the foot in vibration syndrome",{"VOID":1704},"[\"5926978963395545233\"]",{"VOID":1706},"Asaba G, Kimura A, Tsubahara A, Sakai H, Shinohara Y (1981) Effect of hot-spring baths on peripheral circulatory disorders in vibration disease (in Japanese). JJA Phys M Baln Clim 45:3–4\nBini G, Hagbarth K-E, Hynninen P, Wallin BG (1980) Regional similarities and differences in thermoregulatory vaso- and sudomotor tone. J Physiol 306:553–565\nBurton AC (1939) The range and variability of the blood flow in the human fingers and the vasomotor regulation of body temperature. Am J Physiol 127:437–453\nEkenvall L, Lindblad LE, Bevegård S, Etzell B-M (1987) High vascular tone but no obliterative lesions in vibration white fingers. Am J Ind Med 12:47–54\nFärkkilä M, Pyykkö I (1979) Blood flow in the contralateral hand during vibration and hand grip contraction of lumberjacks. Scand J Work Environ Health 5:368–374\nFutatsuka M, Ueda T (1982) Quantitative observations on thermal and metabolic responses to cold of workers using vibrating tools. Int Arch Occup Environ Health 49:213–221\nFutatsuka M, Pyykkö I, Färkkilä M, Korhonen O, Starck J (1983) Blood pressure, flow and peripheral resistance of digital arteries in vibration syndrome. Br J Ind Med 40:434–441\nGomibuchi R, Ohi T (1962) So-called “white waxy finger” (in Japanese). JJTOM 15:177–182\nHashiguchi T, Sakakibara H, Furuta M, Yamada S, Horio K, Toibana N (1988) Raynaud's phenomenon in the lower extremities induced by vibration exposure, report of three cases (in Japanese, with English abstract). JJTOM 36:651–657\nHashiguchi T, Sakakibara H, Yamada S (1990) Changes of skin blood flow in the finger and dorsum of the foot during chain saw operation. In: Okada A, Taylor W, Dupuis H (eds) Hand-arm vibration. Kyoei Press, Kanazawa, Japan, pp 133–135\nHedlund U (1989) Raynaud's phenomenon of fingers and toes of miners exposed to local and whole-body vibration and cold. Int Arch Occup Environ Health 61:457–461\nIki M, Kurumatani N, Hirata K, Moriyama T, Satoh M, Arai T (1986) Association between vibration-induced white finger and hearing loss in forestry workers. Scand J Work Environ Health 12:365–370\nKondo T, Sakakibara H, Miyao M, Akamatsu Y, Yamada S, Nakagawa T, Koike Y (1987) Effect of exposure to hand-transmitted vibration on digital skin temperature change. Ind Health 25:41–53\nNakamoto M (1990) Responses of sympathetic nerve system to cold exposure in vibration syndrome subjects and age-matched healthy controls. Int Arch Occup Environ Health 62:177–181\nNasu Y (1977) Changes of the skin temperature caused by local vibratory stimulation in normals and patients with vibration syndrome. 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Sci Total Environ 293:143–150",{"doi":1982},"10.1016\u002FS0048-9697(02)00003-7",{"id":22,"text":1984,"url":22,"identifiers":1985},"Löfstedt H, Seldén A, Storéus L, Bodin L (1999) Blood lead in Swedish police officers. Am J Ind Med 35:519–522",{"doi":1986},"10.1002\u002F(SICI)1097-0274(199905)35:5\u003C519::AID-AJIM9>3.0.CO;2-N",{"id":22,"text":1988,"url":22,"identifiers":1989},"Schulz C, Conrad A, Becker K, Kolossa-Gehring M, Seiwert M, Seifert B (2007) Twenty years of the German environmental survey (GerES): human biomonitoring–temporal and spatial (West Germany\u002FEast Germany) differences in population exposure. Int J Hyg Environ-Health 210:271–297",{"doi":1990},"10.1016\u002Fj.ijheh.2007.01.034",{"id":22,"text":1992,"url":22,"identifiers":1993},"Svensson BG, Schütz A, Nilsson A, Skerfving S (1992) Lead exposure in indoor firing ranges. Int Arch Occup Environ Health 64:219–221",{"doi":1994},"10.1007\u002FBF00378278",{"id":22,"text":1996,"url":22,"identifiers":1997},"Wiesmüller G, Eckard R, Dobler L, Günsel A, Oganowski M, Schröter-Kermani C, Schlüter C, Gies A, Kemper F (2007) The environmental specimen bank for human tissues as part of the German environmental specimen bank. Int J Hyg Environ-Health 210:299–305",{"doi":1998},"10.1016\u002Fj.ijheh.2007.01.036",{"id":22,"text":2000,"url":22,"identifiers":2001},"Wurster U, Ebert H, Fleig E, Ott G (2006) Reduzierung der Gefahrstoffbelastung in Raumschießanlagen durch Verwendung bleifreier Trainingsmunition. Gefahrstoffe–Reinhaltung der Luft 66(7\u002F8):295–299",{},{"id":2003,"createTime":2004,"updateTime":2005,"relativeEntities":2006,"slug":2007,"properties":2008,"entityType":294,"verifyStatus":295,"verifyTime":2017,"verifyNote":297,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":2018,"fullTextUrl":22,"authors":2019,"publicationType":539,"publisherRelationship":2078,"citationCount":23,"citationInfo":2126,"publishDate":2129,"publishYear":2127,"citationAnalyzeStatus":953,"lastCitationAnalyze":2005,"indexDatabases":2130,"openAccess":22,"references":2131,"isForceReanalyzing":592},"c7bdb78b-fa34-44d4-804b-98e5f84f4894","2024-02-02T10:14:11.587+00:00","2026-07-24T17:31:16.348+00:00",[],"Metabolic-disturbances-in-male-workers-with-rotating-three-shift-work-Results-of-the-WOLF-study",{"abstract":2009,"title":2011,"gsPaper":2013,"doi":2015},{"EN":2010},"The aim of the present study was to investigate the relationship between important metabolic risk factors for coronary heart disease (CHD) and type 2 diabetes in shift workers and day workers. Cross-sectional data from a sub-population in the WOLF study consisting of 665 day workers and 659 three-shift workers in two plants were analysed. A higher proportion of shift workers than day workers had high triglyceride levels (≥1.7 mmol\u002Fl), low levels of HDL-cholesterol (\u003C0.9 mmol\u002Fl) and abdominal obesity (waist\u002Fhip ratio>0.9). The risk of low HDL-cholesterol was doubled in shift workers, (odds ratio (OR): 2.02, 95% confidence interval (95% CI): 1.24–3.28) after being adjusted for age, socio-economic factors, physical activity, current smoking, social support and job strain. High levels of triglycerides were also significantly associated with shift work (OR: 1.40, 95% CI: 1.08–1.83). The OR for abdominal obesity was 1.19, (95% CI: 0.92–1.56). The prevalence of hyperglycaemia (serum glucose ≥7.0 mmol\u002Fl) was similar in day and shift workers. No significant interaction was seen between shift work and abdominal obesity with regard to the associations with triglycerides and HDL-cholesterol. We found a significant association between shift work and lipid disturbances (i.e. low HDL-cholesterol and high triglyceride levels). We did not find any association with hyperglycaemia.",{"EN":2012},"Metabolic disturbances in male workers with rotating three-shift work. Results of the WOLF study",{"VOID":2014},"[\"6951717600981892447\"]",{"VOID":2016},"10.1007\u002Fs00420-003-0440-y","2024-04-30T09:51:44.300+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs00420-003-0440-y",[2020,2035,2048,2063],{"id":2021,"sortIndex":23,"researcher":22,"roles":2022,"affiliations":2023,"properties":2032},"2a48cfd0-31c6-4de9-aaa6-964c6ea5cc9a",[303],[2024],{"id":2025,"sortIndex":23,"affiliation":2026,"properties":22},"34bc8064-4918-4e43-b6e7-2850f7d961b5",{"id":2025,"createTime":22,"updateTime":22,"relativeEntities":2027,"slug":22,"properties":2028,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2031,"statistic":22},[],{"title":2029},{"VI":2030},"Occupational Medicine, Department of Public Health and Clinical Medicine, University of Umeå, Umeå, Sweden",[],{"title":2033},{"VI":2034},"Berndt H. Karlsson",{"id":2036,"sortIndex":157,"researcher":22,"roles":2037,"affiliations":2038,"properties":2045},"ea554b22-59c1-4140-8af0-ee7f1f39cef7",[303],[2039],{"id":2025,"sortIndex":23,"affiliation":2040,"properties":22},{"id":2025,"createTime":22,"updateTime":22,"relativeEntities":2041,"slug":22,"properties":2042,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2044,"statistic":22},[],{"title":2043},{"VI":2030},[],{"title":2046},{"VI":2047},"Anders K. Knutsson",{"id":2049,"sortIndex":158,"researcher":22,"roles":2050,"affiliations":2051,"properties":2060},"75eca440-2de6-4fb2-b139-59d7bc0a445a",[303],[2052],{"id":2053,"sortIndex":23,"affiliation":2054,"properties":22},"aa8ddbcd-96ac-4377-90e2-a0aac3f6e253",{"id":2053,"createTime":22,"updateTime":22,"relativeEntities":2055,"slug":22,"properties":2056,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2059,"statistic":22},[],{"title":2057},{"VI":2058},"Behavioural Medicine, Department of Public Health and Clinical Medicine, University of Umeå, Umeå, Sweden",[],{"title":2061},{"VI":2062},"Bernt O. Lindahl",{"id":2064,"sortIndex":344,"researcher":22,"roles":2065,"affiliations":2066,"properties":2075},"cce9ccf3-1d79-44a9-b14b-ad6c360d9a4d",[303],[2067],{"id":2068,"sortIndex":23,"affiliation":2069,"properties":22},"85251dbb-6564-442a-8192-6654fb073f20",{"id":2068,"createTime":22,"updateTime":22,"relativeEntities":2070,"slug":22,"properties":2071,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2074,"statistic":22},[],{"title":2072},{"VI":2073},"Division of Cardiovascular Epidemiology, Institute of Environmental Medicine, Karolinska Institute, Stockholm, Sweden",[],{"title":2076},{"VI":2077},"Lars S. Alfredsson",{"url":2018,"publisher":2079,"properties":2121},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":2080,"slug":10,"properties":2081,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":2085,"manageAffiliations":2090,"indexDatabases":2101,"url":22,"thumbnailPath":22,"statistic":2116,"gsStatistic":22,"type":274,"analyzePriority":22},[],{"issn":2082,"title":2083,"eissn":2084},{"VOID":15},{"EN":17},{"VOID":13},[2086],{"id":26,"createTime":22,"updateTime":22,"relativeEntities":2087,"label":2088,"description":2089,"parentId":22,"standard":22,"scholarHubFieldId":22},[],{"EN":29},{},[2091,2096],{"id":33,"createTime":22,"updateTime":22,"relativeEntities":2092,"slug":22,"properties":2093,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2095,"statistic":22},[],{"title":2094},{"EN":37},[],{"id":40,"createTime":22,"updateTime":22,"relativeEntities":2097,"slug":22,"properties":2098,"entityType":22,"verifyStatus":22,"verifyTime":22,"verifyNote":22,"languages":22,"translateLanguages":22,"viewCount":22,"url":22,"parentIds":2100,"statistic":22},[],{"title":2099},{"EN":44},[46],[2102,2109],{"id":49,"indexDatabase":2103,"url":60,"indexYears":61,"academicFieldIds":2108,"indexDatabaseRanking":64},{"id":51,"createTime":22,"updateTime":22,"relativeEntities":2104,"label":2105,"description":2106,"key":57,"publicationTags":2107,"standard":22},[],{"EN":54,"VI":54},{"EN":54,"VI":56},[59],[63],{"id":66,"indexDatabase":2110,"url":22,"indexYears":22,"academicFieldIds":2115,"indexDatabaseRanking":22},{"id":68,"createTime":22,"updateTime":22,"relativeEntities":2111,"label":2112,"description":2113,"key":75,"publicationTags":2114,"standard":22},[],{"EN":71,"VI":71},{"EN":73,"VI":74},[77,78],[80],{"impactFactor":23,"impactFactorByYear":2117,"i10Index":95,"i10IndexLast5Year":96,"totalPublication":97,"totalPublicationByYear":2118,"totalCitation":151,"totalCitationByYear":2119,"totalCitationPerPublication":207,"totalCitationPerPublicationByYear":2120,"hindexLast5Year":133,"hindex":133},{"2012":83,"2013":84,"2014":85,"2015":86,"2016":87,"2017":88,"2018":89,"2019":90,"2020":91,"2021":92,"2022":93,"2023":94},{"1930":99,"1931":100,"1932":101,"1933":102,"1934":103,"1935":104,"1936":102,"1937":105,"1938":106,"1939":107,"1940":108,"1941":106,"1942":96,"1943":109,"1944":110,"1954":111,"1955":112,"1956":113,"1957":114,"1958":99,"1959":114,"1960":99,"1961":111,"1962":115,"1963":116,"1964":103,"1965":111,"1966":114,"1967":117,"1968":118,"1969":104,"1970":119,"1971":105,"1972":112,"1973":96,"1974":120,"1975":121,"1976":112,"1977":122,"1978":119,"1979":123,"1980":124,"1981":125,"1982":124,"1983":126,"1984":127,"1985":125,"1986":128,"1987":125,"1988":129,"1989":130,"1990":131,"1991":132,"1992":133,"1993":134,"1994":135,"1995":126,"1996":136,"1997":137,"1998":132,"1999":138,"2000":139,"2001":125,"2002":127,"2003":138,"2004":140,"2005":141,"2006":140,"2007":142,"2008":143,"2009":129,"2010":140,"2011":141,"2012":137,"2013":144,"2014":145,"2015":146,"2016":146,"2017":147,"2018":148,"2019":129,"2020":136,"2021":149,"2022":150,"2023":132,"2024":107},{"1930":110,"1931":110,"1932":109,"1933":153,"1935":110,"1936":110,"1937":154,"1938":110,"1939":109,"1940":155,"1941":156,"1942":157,"1943":157,"1954":154,"1955":99,"1956":110,"1957":158,"1959":156,"1961":128,"1962":144,"1963":107,"1964":159,"1965":110,"1966":155,"1967":104,"1968":105,"1969":110,"1970":144,"1971":111,"1972":160,"1973":161,"1974":162,"1975":131,"1976":163,"1977":164,"1978":165,"1979":166,"1980":167,"1981":168,"1982":169,"1983":170,"1984":171,"1985":172,"1986":173,"1987":174,"1988":175,"1989":176,"1990":177,"1991":178,"1992":179,"1993":180,"1994":181,"1995":182,"1996":183,"1997":184,"1998":185,"1999":186,"2000":187,"2001":188,"2002":189,"2003":190,"2004":183,"2005":191,"2006":192,"2007":193,"2008":194,"2009":195,"2010":196,"2011":197,"2012":198,"2013":187,"2014":199,"2015":200,"2016":201,"2017":202,"2018":203,"2019":168,"2020":204,"2021":131,"2022":205,"2023":206},{"1930":209,"1931":210,"1932":211,"1933":212,"1935":213,"1936":85,"1937":214,"1938":89,"1939":88,"1940":87,"1941":215,"1942":216,"1943":217,"1954":218,"1955":84,"1956":219,"1957":220,"1959":214,"1961":221,"1962":222,"1963":223,"1964":224,"1965":225,"1966":94,"1967":89,"1968":226,"1969":213,"1970":227,"1971":91,"1972":228,"1973":229,"1974":230,"1975":231,"1976":232,"1977":233,"1978":234,"1979":235,"1980":236,"1981":237,"1982":238,"1983":239,"1984":240,"1985":241,"1986":242,"1987":207,"1988":243,"1989":244,"1990":245,"1991":158,"1992":246,"1993":247,"1994":248,"1995":249,"1996":250,"1997":251,"1998":240,"1999":252,"2000":237,"2001":253,"2002":254,"2003":255,"2004":256,"2005":257,"2006":258,"2007":259,"2008":260,"2009":261,"2010":262,"2011":263,"2012":264,"2013":265,"2014":266,"2015":267,"2016":268,"2017":269,"2018":270,"2019":271,"2020":272,"2021":88,"2022":2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GMM, Zimmet PZ (1998) Definition, diagnosis and classification of diabetes mellitus and its complications. Part1: Diagnosis and classification of diabetes mellitus. Provisional report of a WHO consultation. Diabet Med 15:539–553",{"doi":962},{"id":22,"text":2136,"url":22,"identifiers":2137},"Alfredsson LS, Hammar N, Fransson EIM, de Faire UH, Hallqvist J, Knutsson A, Nilsson T, Theorell T, Westerholm P (2002) Job strain and major risk factors for coronary heart disease. Baseline results from the Wolf study. Scand J Work Environ Health 28:238–248",{},{"id":22,"text":2139,"url":22,"identifiers":2140},"Boden G, Ruiz J, Urbain J-L, Xinhua C (1996) Evidence for a circadian rhythm of insulin. Am J Phys: E246–E252",{},{"id":958,"text":2142,"url":960,"identifiers":2143},"Bursey RG (1990) A cardiovascular study of shift workers with respect to coronary artery disease risk factor prevalence. J Soc Occup Med 40:65–67",{"doi":962},{"id":22,"text":2145,"url":22,"identifiers":2146},"Bøggild H, Knutsson A (1999) Shiftwork, risk factors and cardiovascular disease. Scand J Work Environ Health 25:85–99",{},{"id":958,"text":2148,"url":960,"identifiers":2149},"Bøggild H, Suadicani P, Hein H, Gyntelberg F (1999) Shiftwork, social class and ischaemic heart disease in middle aged and elderly men; a 22 year follow up in the Copenhagen male study. Occup Environ Med 56:640–645",{"doi":962},{"id":958,"text":2151,"url":960,"identifiers":2152},"Cesana G, Panza G, Ferrario M, Zanettini R, Arnoldi M, Grieco A (1985) Can glycosylated hemoglobin be a job stress parameter? J Occup Med 27:357–360",{"doi":962},{"id":22,"text":2154,"url":22,"identifiers":2155},"Costa G, Betta A, Uber D, Alexopoulos C (1990) Estimate of coronary risk in a group of Italian shiftworkers. In: Costa G, Cesana G, Kogi K, Wedderburn A (eds) Shiftwork: health, sleep and performance. Lang, Frankfurt am Main, pp 363–369",{},{"id":958,"text":2157,"url":960,"identifiers":2158},"De Backer G, Kornitzer M, Dramaix M, Peeters H, Kittel F (1987) Irregular working hours and lipid levels in men. In: G Schling, H Mörl (eds) Expanding horizons in atherosclerosis research. Springer, Berlin, pp 217–224",{"doi":962},{"id":958,"text":2160,"url":960,"identifiers":2161},"Hampton SM, Morgan LM, Lawrance N, Anastasiadou T, Norris F, Deacon S, Ribeiro D, Arendt J (1996) Postprandial hormone and metabolic responses in simulated shiftwork. J Endocrinol 151:257–267",{"doi":962},{"id":958,"text":2163,"url":960,"identifiers":2164},"Karlsson B, Knutsson A, Lindahl B (2001) Is there an association between shift work and having a metabolic syndrome? Results from a population based study of 27 485 people. Occup Environ Med 58:747–752",{"doi":962},{"id":958,"text":2166,"url":960,"identifiers":2167},"Kawachi I, Colditz G, Stampfer M, Willet W, Manson J, Speizer F, Hennekens C (1995) Prospective study of shiftwork and risk of coronary heart disease in women. Circulation 92:3178–3182",{"doi":962},{"id":22,"text":2169,"url":22,"identifiers":2170},"Knutsson A (1989) Shiftwork and coronary heart disease. Scand J Soc Med Suppl 44:1–36",{},{"id":958,"text":2172,"url":960,"identifiers":2173},"Knutsson A, Bøggild H (2000) Shiftwork and cardiovascular disease: review of disease mechanisms. Rev Environ Health 15:359–372",{"doi":962},{"id":958,"text":2175,"url":960,"identifiers":2176},"Knutsson A, Åkerstedt T, Jonsson BJ (1988) Prevalence of risk factors for coronary artery disease among day and shift workers. Scand J Work Environ Health 14:317–321",{"doi":962},{"id":958,"text":2178,"url":960,"identifiers":2179},"Knutsson A, Andersson H, Berglund U (1990) Serum lipoproteins in day and shiftworkers: a prospective study. Br J Ind Med 47:132–134",{"doi":962},{"id":958,"text":2181,"url":960,"identifiers":2182},"Lasfargues G, Vol S, Cacès E, Le Clésiau H, Lecomte P, Tichet J (1996) Relations among nightwork, dietary habits, biological measures, and health status. Int J Behav Med 3:123–134",{"doi":962},{"id":22,"text":2184,"url":22,"identifiers":2185},"Lennernäs MAC (1993) Nutrition and shiftwork. Thesis, Uppsala University, Sweden",{},{"id":958,"text":2187,"url":960,"identifiers":2188},"Lindahl B, Asplund K, Eliasson M, Evrin P-E (1996) Insulin resistance syndrome and fibrinolytic activity: the Northern Sweden MONICA study. Int J Epidemiol 25:1–9",{"doi":962},{"id":958,"text":2190,"url":960,"identifiers":2191},"Mikuni E, Ohoshi T, Hayashi K, Miyamura K (1983) Glucose intolerance in an employed population. Tohoku J Exp Med 141 [Suppl]:251–256",{"doi":962},{"id":958,"text":2193,"url":960,"identifiers":2194},"Nakamura K, Shimai S, Kikuchi S, Tominaga K, Takahashi H, Tanaka M, Nakano S, Motohashi Y, Nakadaira H, Yamamoto M (1997) Shiftwork and risk factors for coronary heart disease in Japanese blue-collar workers: serum lipids and anthropometric characteristics. Occup Med 47:142–146",{"doi":962},{"id":958,"text":2196,"url":960,"identifiers":2197},"Niedhammer I, Lert F, Marne M-J (1996) Prevalence of overweight and weight gain in relation to night work in nurses' cohort. Int J Obes 20:625–633",{"doi":962},{"id":958,"text":2199,"url":960,"identifiers":2200},"Orth-Gomér K (1983) Intervention on coronary risk factors by adapting a shift schedule to biologic rhythmicity. Psychosom Med 45:407–415",{"doi":962},{"id":958,"text":2202,"url":960,"identifiers":2203},"Parkes K (2002) Shift work and age as interactive predictors of body mass index among offshore workers. Scand J Work Environ Health 28:64–71",{"doi":962},{"id":958,"text":2205,"url":960,"identifiers":2206},"Ribeiro D, Hampton S, Morgan L, Deacon S, Arendt J (1998) Altered postprandial hormone and metabolic responses in a simulated shiftwork. J Endocrinol 158:305–310",{"doi":962},{"id":958,"text":2208,"url":960,"identifiers":2209},"Rivera-Col A, Funtes-Arderiu L, Diez-Noguera A (1994) Circadian rhythmic variation in serum concentrations of clinically important lipids. Clin Chem 40:1549–1553",{"doi":962},{"id":2211,"text":2212,"url":2213,"identifiers":2214},"f1559b1d-a49d-45b6-ade6-adfc54b20dc1","Romon M, Nuttens M-C, Fievet C, Pot P, Bard J, Furon D, Fruchart J-C (1992) Increased triglyceride levels in shift workers. Am J Med 93:259–262","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002F0002934392902309",{"doi":2215},"10.1016\u002F0002-9343(92)90230-9",{"id":958,"text":2217,"url":960,"identifiers":2218},"Rosmonds R, Lapidus L, Björntorp P (1996) The influence of occupational and social factors on obesity and body fat distribution in middle aged men. Int J Obes Relat Metab Disord 20:599–607",{"doi":962},{"id":22,"text":2220,"url":22,"identifiers":2221},"Thelle D, Førde O, Try K, Lehman E (1976) The Tromsø heart study. Acta Med Scand 200:107–118",{},{"id":958,"text":2223,"url":960,"identifiers":2224},"Theorell T, Åkerstedt T (1976) Day and night work: changes in cholesterol, uric acid, glucose and potassium in serum and in circadian patterns of urinary catecholamine excretion. Acta Med Scand 200:47–53",{"doi":962},{"id":958,"text":2226,"url":960,"identifiers":2227},"Theorell T, Tsutsumi A, Hallqvist J, Reuterwall C, Hogstedt C, Freedlund P (1998) Decision latitude, job strain and myocardial infarction: a study of working men in Stockholm. The SHEEP Study Group. Stockholm heart epidemiology program. Am J Public Health 88:382–388",{"doi":962},{"id":958,"text":2229,"url":960,"identifiers":2230},"van Amelsvoort L, Schouten E, Kok F (1999) Duration of shiftwork related to body mass index and waist to hip ratio. Int J Obes 23:973–978",{"doi":962},{"id":2232,"createTime":2233,"updateTime":2234,"relativeEntities":2235,"slug":2236,"properties":2237,"entityType":294,"verifyStatus":295,"verifyTime":2248,"verifyNote":297,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":2249,"fullTextUrl":22,"authors":2250,"publicationType":539,"publisherRelationship":2334,"citationCount":23,"citationInfo":2382,"publishDate":2385,"publishYear":2383,"citationAnalyzeStatus":953,"lastCitationAnalyze":2386,"indexDatabases":2387,"openAccess":22,"references":22,"isForceReanalyzing":592},"8bb192e2-a424-47a0-813c-8713b556145c","2023-12-01T22:55:20.947+00:00","2026-07-24T11:43:42.516+00:00",[],"Adverse-birth-outcomes-and-maternal-complications-in-licensed-cosmetologists-and-manicurists-in-California",{"abstract":2238,"title":2240,"gsPaper":2242,"references":2244,"doi":2246},{"EN":2239},"\nDue to concerns around occupational chemical exposures, this study sought to examine whether women working as cosmetologists (providing hair and nail care services) and manicurists (providing only nail care services) have an elevated risk for adverse pregnancy outcomes. In this population-based retrospective study of cosmetologists and manicurists in California, we linked cosmetology licensee and birth registry files to identify births during 1996–2009. We compared outcomes among cosmetologists and manicurists to those of the general female population and to women from other industries. We also conducted restricted analyses for Vietnamese women, who comprise a significant proportion of the workforce. There was little evidence of increased risk for adverse birth outcomes, but we observed an association for small for gestational age (SGA) among Vietnamese manicurists (OR 1.39; 95 % CI 1.08–1.78) and cosmetologists (OR 1.40; 95 % CI 1.08–1.83) when compared to other working women. Some maternal complications were observed, notably an increased risk for gestational diabetes (OR 1.28; 95 % CI 1.10–1.50 for manicurists; OR 1.19; 95 % CI 1.07–1.33 for cosmetologists) compared with the general population, which further elevated when restricted to Vietnamese workers (OR 1.59; 95 % CI 1.20–2.11 for manicurists; OR 1.49; 95 % CI 1.04–2.11 for cosmetologists). Additionally, we observed an association for placentia previa among manicurists (OR 1.46; 95 % CI 1.08–1.97) and cosmetologists (OR 1.22; 95 % CI 1.02–1.46) compared with the general population. Women in the nail and hair care industry may be potentially at increased risk for some maternal complications, although further research is warranted. Vietnamese workers may also have increased risk for SGA.",{"EN":2241},"Adverse birth outcomes and maternal complications in licensed cosmetologists and manicurists in California",{"VOID":2243},"[\"15345073402160385873\"]",{"VOID":2245},"Attarchi MS, Ashouri M, Labbafinejad Y, Mohammadi S (2012) Assessment of time to pregnancy and spontaneous abortion status following occupational exposure to organic solvents mixture. Int Arch Occup Environ Health 85(3):295–303\nBaste V, Moen BE, Riise T, Hollund BE, Oyen N (2008) Infertility and spontaneous abortion among female hairdressers: the Hordaland Health Study. J Occup Environ Med 50(12):1371–1377\nBustamante-Montes L, Hernandez-Valero M, Garcia-Fabila M, Halley-Castillo E, Karam-Calderon M, Borja-Aburto V (2008) Prenatal phthalate exposure and decrease in ano-genital distance in Mexican newborns. Epidemiology 19(6):S270\nCalifornia Department of Public Health (2010) Maternal and Infant Health Assessment (MIHA) Snapshot\nCasals-Casas C, Feige JN, Desvergne B (2008) Interference of pollutants with PPARs: endocrine disruption meets metabolism. Int J Obes (Lond) 32(Suppl 6):S53–S61\nCobellis L, Latini G, De Felice C, Razzi S, Paris I, Ruggieri F et al (2003) High plasma concentrations of di-(2-ethylhexyl)-phthalate in women with endometriosis. Hum Reprod 18(7):1512–1515\nDesvergne B, Feige JN, Casals-Casas C (2009) PPAR-mediated activity of phthalates: a link to the obesity epidemic? Mol Cell Endocrinol 304(1–2):43–48\nDietz PM, England LJ, Callaghan WM, Pearl M, Wier ML, Kharrazi M (2007) A comparison of LMP-based and ultrasound-based estimates of gestational age using linked California livebirth and prenatal screening records. Paediatr Perinat Epidemiol 21(Suppl 2):62–71\nDuty SM, Silva MJ, Barr DB, Brock JW, Ryan L, Chen Z et al (2003) Phthalate exposure and human semen parameters. Epidemiology 14(3):269–277\nDuty SM, Calafat AM, Silva MJ, Ryan L, Hauser R (2005) Phthalate exposure and reproductive hormones in adult men. Hum Reprod 20:604–610\nFederman MN, Harrington DE, Krynski K (2006) Vietnamese manicurists: are immigrants displacing natives or finding new nails to polish? Ind Labor Relat Rev 59:302–318\nFerguson KK, Loch-Caruso R, Meeker JD (2012) Exploration of oxidative stress and inflammatory markers in relation to urinary phthalate metabolites: NHANES 1999–2006. Environ Sci Technol 46(1):477–485\nFerguson KK, McElrath TF, Meeker JD (2014) Environmental phthalate exposure and preterm birth. JAMA Pediatr 168(1):61–68\nHalliday-Bell JA, Gissler M, Jaakkola JJ (2009) Work as a hairdresser and cosmetologist and adverse pregnancy outcomes. Occup Med (Lond) 59(3):180–184\nHerdt-Losavio ML, Lin S, Druschel CM, Hwang SA, Mauer MP, Carlson GA (2009a) The risk of congenital malformations and other neonatal and maternal health outcomes among licensed cosmetologists. Am J Perinatol 26(9):625–631\nHerdt-Losavio ML, Lin S, Druschel CM, Hwang SA, Mauer MP, Carlson GA (2009b) The risk of having a low birth weight or preterm infant among cosmetologists in New York State. Matern Child Health J 13(1):90–97\nHewitt JB, Tellier L (1998) Risk of adverse outcomes in pregnant women exposed to solvents. J Obstet Gynecol Neonatal Nurs 27(5):521–531\nHines CJ, Nilsen Hopf NB, Deddens JA, Calafat AM, Silva MJ, Grote AA et al (2009) Urinary phthalate metabolite concentrations among workers in selected industries: a pilot biomonitoring study. Ann Occup Hyg 53(1):1–17\nHuang PC, Kuo PL, Guo YL, Liao PC, Lee CC (2007) Associations between urinary phthalate monoesters and thyroid hormones in pregnant women. Hum Reprod 22(10):2715–2722\nJames-Todd T, Stahlhut R, Meeker JD, Powell SG, Hauser R, Huang T et al (2012) Urinary phthalate metabolite concentrations and diabetes among women in the National Health and Nutrition Examination Survey (NHANES) 2001–2008. Environ Health Perspect 120(9):1307–1313\nJaro MA (1989) Advances in record linkage methodology as applied to matching the 1985 census of Tampa, Florida. J Am Stat Assoc 89:414–420\nJaro MA (1995) Probabilistic linkage of large public health data files. Stat Med 14(5–7):491–498\nJohn EM, Savitz DA, Shy CM (1994) Spontaneous abortions among cosmetologists. Epidemiology 5(2):147–155\nKang KS, Che JH, Ryu DY, Kim TW, Li GX, Lee YS (2002) Decreased sperm number and motile activity on the F1 offspring maternally exposed to butyl p-hydroxybenzoic acid (butyl paraben). J Vet Med Sci 64(3):227–235\nKersemaekers WM, Roeleveld N, Zielhuis GA (1997) Reproductive disorders among hairdressers. Epidemiology 8(4):396–401\nKim JH, Moon JY, Park EY, Lee KH, Hong YC (2011) Changes in oxidative stress biomarker and gene expression levels in workers exposed to volatile organic compounds. Ind Health 49(1):8–14\nKwapniewski R, Kozaczka S, Hauser R, Silva MJ, Calafat AM, Duty SM (2008) Occupational exposure to dibutyl phthalate among manicurists. J Occup Environ Med 50(6):705–711\nNails Magazine (2006) Nail technician demographics. NAILS, Torrance\nMarks TA, Gupta BN, Ledoux TA, Staples RE (1981) Teratogenic evaluation of 2-nitro-p-phenylenediamine, 4-nitro-o-phenylenediamine, and 2, 5-toluenediamine sulfate in the mouse. Teratology 24(3):253–265\nMoorman WJ, Ahlers HW, Chapin RE, Daston GP, Foster PM, Kavlock RJ et al (2000) Prioritization of NTP reproductive toxicants for field studies. Reprod Toxicol 14(4):293–301\nNortham S, Knapp TR (2006) The reliability and validity of birth certificates. J Obstet Gynecol Neonatal Nurs 35(1):3–12\nOken E, Kleinman KP, Rich-Edwards J, Gillman MW (2003) A nearly continuous measure of birth weight for gestational age using a United States national reference. BMC Pediatr 3:6\nQuach T, Nguyen KD, Doan-Billings PA, Okahara L, Fan C, Reynolds P (2008) A preliminary survey of Vietnamese nail salon workers in Alameda County California. J Community Health 33(5):336–343\nQuach T, Gunier R, Tran A, Von Behren J, Doan-Billings PA, Nguyen KD et al (2011) Characterizing workplace exposures in Vietnamese women working in California nail salons. Am J Public Health 101(Suppl 1):S271–S276\nQuach T, Varshavsky J, Von Behren J, Garcia E, Tong M, Nguyen T et al (2013) Reducing chemical exposures in nail salons through owner and worker trainings: an exploratory intervention study. Am J Ind Med 56(7):806–817\nRoelofs C, Do T (2012) Exposure assessment in nail salons: an indoor air approach. International Scholarly Research Network 2012:1–7\nRoelofs C, Azaroff LS, Holcroft C, Nguyen H, Doan T (2008) Results from a community-based occupational health survey of Vietnamese-American nail salon workers. J Immigr Minor Health 10(4):353–361\nRylander L, Axmon A, Toren K, Albin M (2002) Reproductive outcome among female hairdressers. Occup Environ Med 59(8):517–522\nSAS Institute (2010) SAS 9.3. SAS Institute Inc\nSheriff RL (2008) Policy matters: pedicures at what price? Policy matters. California Senate Office of Research, Sacramento\nStahlhut RW, van Wijngaarden E, Dye TD, Cook S, Swan SH (2007) Concentrations of urinary phthalate metabolites are associated with increased waist circumference and insulin resistance in adult US males. Environ Health Perspect 115(6):876–882\nSwan SH (2006) Prenatal phthalate exposure and anogenital distance in male infants. Environ Health Perspect 114(2):A88–A89\nSwan SH (2008) Environmental phthalate exposure in relation to reproductive outcomes and other health endpoints in humans. Environ Res 108(2):177–184\nSwan SH, Main KM, Liu F, Stewart SL, Kruse RL, Calafat AM et al (2005) Decrease in anogenital distance among male infants with prenatal phthalate exposure. Environ Health Perspect 113(8):1056–1061\nUS Bureau of Labor Statistics (2012) Occupational outlook handbook. Barbers, hairdressers, and cosmetologists. United States Department of Labor, Division of Occupational Employment Statistics, Washington\nWajda A, Roos LL, Layefsky M, Singleton JA (1991) Record linkage strategies: part II. Portable software and deterministic matching. Methods Inf Med 30(3):210–214\nWhite HouseInitiative on Asians Americans and Pacific Islanders (2011) Two year anniversary major highlights. White House, Washington\nZhu JL, Vestergaard M, Hjollund NH, Olsen J (2006) Pregnancy outcomes among female hairdressers who participated in the Danish National Birth Cohort. 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