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Oral lichen planus: A disease or a spectrum of tissue reactions? Types, causes, diagnostic algorhythms, prognosis, management strategies. Periodontol. 2000;2019(80):105–25.\nCheng Y-SL, Gould A, Kurago Z, Fantasia J, Muller S. Diagnosis of oral lichen planus: a position paper of the American Academy of Oral and maxillofacial pathology. Oral Surg Oral med Oral Pathol Oral Radiol. 2016;122:332–54.\nDeAngelis LM, Cirillo N, McCullough MJ. The immunopathogenesis of oral lichen planus-is there a role for mucosal associated invariant T cells? J Oral Pathol Med. 2019;48:552–9.\nRadochová V, Dřízhal I, Slezák R. A retrospective study of 171 patients with oral lichen planus in the East Bohemia - Czech Republic - single center experience. J Clin Exp Dent. 2014;6:e556–61.\nArnold DL, Krishnamurthy K, Planus L. StatPearls. Treasure Island: StatPearls Publishing; 2019. [cited 2018 Aug 21]. Available from: http:\u002F\u002Fwww.ncbi.nlm.nih.gov\u002Fbooks\u002FNBK526126\u002F\nAu J, Patel D, Campbell JH. Oral lichen planus. Oral Maxillofac Surg Clin North Am. 2013;25(93–100):vii.\nParashar P. Oral lichen planus. Otolaryngol Clin N Am. 2011;44(89–107):vi.\nFitzpatrick SG, Hirsch SA, Gordon SC. The malignant transformation of oral lichen planus and oral lichenoid lesions: a systematic review. J Am Dent Assoc. 2014;145:45–56.\nThomson PJ, Goodson ML, Smith DR. Potentially malignant disorders revisited—the lichenoid lesion\u002Fproliferative verrucous leukoplakia conundrum. J Oral Pathol Med. 2018;47:557–65.\nCasparis S, Borm JM, Tektas S, Kamarachev J, Locher MC, Damerau G, et al. Oral lichen planus (OLP), oral lichenoid lesions (OLL), oral dysplasia, and oral cancer: retrospective analysis of clinicopathological data from 2002-2011. Oral Maxillofac Surg. 2015;19:149–56.\nNavarro-Triviño FJ, Navarro-Rivero PM, Ruiz-Villaverde R. A case report of oral lichenoid lesions. Are patch tests necessary? Contact Dermatitis. 2020;83:59–61.\nEl-Reshaid K, Al-Bader S. Rituximab therapy for severe and persistent Lichenoid drug-reaction. J Drug Deliv Therapeut. 2019;9:751–3.\nChiang C-P, Yu-Fong Chang J, Wang Y-P, Wu Y-H, Lu S-Y, Sun A. Oral lichen planus – differential diagnoses, serum autoantibodies, hematinic deficiencies, and management. J Formos Med Assoc. 2018;117:756–65.\nGiudice A, Liborio F, Averta F, Barone S, Fortunato L. Oral Lichenoid reaction: an uncommon side effect of rituximab. Case Rep Dent. 2019;2019:1–3.\nAntiga E, Melani L, Cardinali C, Giomi B, Caproni M, Francalanci S, et al. A case of Lichenoid drug eruption associated with sildenafil Citratus. J Dermatol. 2005;32:972–5.\nKader Ç, Çölgeçen Özel E, Secki̇n S, Erbay A. Nüks Kronik Hepatit C Tedavisi Sırasında Gelişen Likenoid İlaç Reaksiyonu. vhd. 2014;20:32–5.\nSchmidt-Westhausen AM. Oral lichen planus and lichenoid lesions: what’s new? Quintessence Int. 2020;51:156–61.\nBronny AT, Thies RM. Oral mucosal lichenoid reaction to sulfamethoxazole. Special Care Dent. 1990;10:55–7.\nLacouture M, Sibaud V. Toxic side effects of targeted therapies and immunotherapies affecting the skin, Oral mucosa, hair, and nails. Am J Clin Dermatol. 2018;19:31–9.\nKuten-Shorrer M, Hochberg EP, Woo S-B. Lichenoid mucosal reaction to rituximab. Oncologist. 2014;19:e12–3.\nKusano Y, Terui Y, Yokoyama M, Hatake K. Lichenoid drug eruption associated with Bendamustine. Blood Cancer J. 2016;6:e438.\nSeghers AC, Tey HL, Tee S-I, Cao T, Chong W-S. Pegylated liposomal doxorubicin-induced miliaria crystallina and lichenoid follicular eruption. Indian J Dermatol Venereol Leprol. 2018;84:121.\nSuryana K. Lichenoid reaction caused by antihistamines and corticosteroids. J Asthma Allergy. 2020;13:205–11.\nThomas DA, O’Brien S, Cortes J, Giles FJ, Faderl S, Verstovsek S, et al. Outcome with the hyper-CVAD regimens in lymphoblastic lymphoma. Blood. 2004;104:1624–30.\nFlinn IW, van der Jagt R, Kahl B, Wood P, Hawkins T, MacDonald D, et al. First-line treatment of patients with indolent non-Hodgkin lymphoma or mantle-cell lymphoma with Bendamustine plus rituximab versus R-CHOP or R-CVP: results of the BRIGHT 5-year follow-up study. J Clin Oncol. 2019;37:984–91.\nAbaza Y, M Kantarjian H, Faderl S, Jabbour E, Jain N, Thomas D, et al. Hyper-CVAD plus nelarabine in newly diagnosed adult T-cell acute lymphoblastic leukemia and T-lymphoblastic lymphoma. Am J Hematol. 2018;93:91–9.\nOuedraogo E, Gottlieb J, de Masson A, Lepelletier C, Jachiet M, Rybojad M, et al. Chronic oral lichenoid erosions revealing haematological malignancies. J Eur Acad Dermatol Venereol. 2018;32:e402–3.\nSchifter M, Jamma Li. Oral Lichen Planus | IntechOpen [Internet]. 2013 [cited 2018 Aug 30]. Available from: https:\u002F\u002Fwww.intechopen.com\u002Fbooks\u002Fskin-biopsy-diagnosis-and-treatment\u002Foral-lichen-planus. Apud Hallopeau H. Sur un cas de lichen de Wilson gingival avec neoplasia voisine dans la région maxillaire. Bull Soc Fr Dermatol Syphiligr 1910;17:32.\nLopes de Oliveira LM, Batista LHC, Neto AP dos S, Silva LB, Cimões R, Leão JC, et al. Oral Lichenoid lesion manifesting as Desquamative gingivitis: unlikely association? Case report. Open Dent J. 2018;12:679–86.\nHiremath SKS, Kale AD, Charantimath S. Oral lichenoid lesions: Clinico-pathological mimicry and its diagnostic implications. Indian J Dent Res. 2011;22:827.\nWarnakulasuriya S, Kujan O, Aguirre-Urizar JM, Bagan JV, González-Moles MÁ, Kerr AR, et al. Oral potentially malignant disorders: a consensus report from an international seminar on nomenclature and classification, convened by the WHO collaborating Centre for Oral Cancer. Oral Dis. 2021;27:1862–80.\nAguirre-Urizar JM, Alberdi-Navarro J, Lafuente-Ibáñez de Mendoza I, Marichalar-Mendia X, Martínez-Revilla B, Parra-Pérez C, et al. Clinicopathological and prognostic characterization of oral lichenoid disease and its main subtypes: A series of 384 cases. Med Oral Patol Oral Cir Bucal. 2020;25:e554–62.\nGiuliani M, Troiano G, Cordaro M, Corsalini M, Gioco G, Lo Muzio L, et al. Rate of malignant transformation of oral lichen planus: A systematic review. Oral Dis. 2019;25:693–709.\nvan der Meij EH, Mast H, van der Waal I. The possible premalignant character of oral lichen planus and oral lichenoid lesions: a prospective five-year follow-up study of 192 patients. Oral Oncol. 2007;43:742–8.\nGonzalez-Moles MA, Scully C, Gil-Montoya JA. Oral lichen planus: controversies surrounding malignant transformation. Oral Dis. 2008;14:229–43.\nLandini G, Mylonas P, Shah IZ, Hamburger J. The reported rates of transformation of oral lichen planus. J Oral Maxillofacial Surg Med Pathol. 2014;26:213–20.\nLarsson A, Warfvinge G. Malignant transformation of oral lichen planus. Oral Oncol. 2003;39:630–1.\nLodi G, Scully C, Carrozzo M, Griffiths M, Sugerman PB, Thongprasom K. Current controversies in oral lichen planus: report of an international consensus meeting. Part 2. Clinical management and malignant transformation. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2005;100:164–78.\nMattsson U, Jontell M, Holmstrup P. Oral lichen planus and malignant transformation: is a recall of patients justified? Crit Rev Oral Biol Med. 2002;13:390–6.\nShearston K, Fateh B, Tai S, Hove D, Farah CS. Oral lichenoid dysplasia and not oral lichen planus undergoes malignant transformation at high rates. J Oral Pathol Med. 2019;48:538–45.\nvan der Meij EH, Schepman KP, Smeele LE, van der Wal JE, Bezemer PD, van der Waal I. A review of the recent literature regarding malignant transformation of oral lichen planus. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1999;88:307–10.\nBhattacharyya I, Chehal H, Migliorati C. Severe oral erosive lichenoid reaction to pembrolizumab therapy. Oral Surg Oral Med Oral Pathol Oral Radiol. 2020;130:e301–7.\nAl-Hashimi I, Schifter M, Lockhart PB, Wray D, Brennan M, Migliorati CA, et al. Oral lichen planus and oral lichenoid lesions: diagnostic and therapeutic considerations. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2007;103(Suppl):S25.e1–12.\nLee YS, Fong PH. Extensive ulcerative and erosive lichenoid dermatosis in a patient with malignant lymphoma. Am J Dermatopathol. 1993;15:576–80.\nLodi G, Porter SR. Hepatitis C virus infection and lichen planus: a short review. Oral Dis. 1997;3:77–81.\nBolognia JL, Jorizzo JL, Schaffer JV. Dermatologia. 3. ed. Rio de Janeiro: Elsevier; 2015. Section 3, Chapter 11.\nKim JH, Kim S-C. Paraneoplastic pemphigus: Paraneoplastic autoimmune disease of the skin and mucosa. Front Immunol. 2019;10:1259.\nChoi Y, Nam K-H, Lee J-B, Lee JY, Ihm C-W, Lee SE, et al. Retrospective analysis of 12 Korean patients with paraneoplastic pemphigus. J Dermatol. 2012;39:973–81.\nCummins DL, Mimouni D, Tzu J, Owens N, Anhalt GJ, Meyerle JH. Lichenoid paraneoplastic pemphigus in the absence of detectable antibodies. J Am Acad Dermatol. 2007;56:153–9.",{"EN":204},"The diagnosis of oral lichenoid lesions (OLL) remains a challenge for clinicians and pathologists. Although, in many cases, OLL cannot be clinically and histopathologically distinguishable from oral lichen planus (OLP), one important difference between these lesions is that OLL has an identifiable etiological factor, e.g. medication, restorative material, and food allergy. The list of drugs that can cause OLL is extensive and includes anti-inflammatory drugs, anticonvulsants, antihypertensives, antivirals, antibiotics, chemotherapeutics, among others. This work aimed to perform a literature review of OLL related to chemotherapy drugs and to report two cases of possible OLL in patients with B-cell and T-cell non-Hodgkin lymphomas in use of chemotherapy and adjuvant medications. We also discuss the challenge to clinically and histopathologically differentiate OLL and OLP. In both cases, oral lesions presented reticular, atrophic, erosive\u002Fulcerated, and plaque patterns. The diagnosis of OLL was initially established in both cases by the association of histopathology and history of onset of lesions after the use of medications. Although the patients have presented a significant improvement in the oral clinical picture for more than 2 years of follow-up, they still have some lesions. A well-detailed anamnesis associated with the drug history, temporal relationship of the appearance of the lesions, and follow-up of patients are fundamental for the diagnosis of OLL related to drugs. Nevertheless, its differentiation from OLP is still a challenge.",{"EN":206},"Oral lichenoid lesion in association with chemotherapy treatment for non-Hodgkin lymphoma or lichen planus? Review of the literature and report of two challenging cases",{"VOID":208},"10.1186\u002Fs13005-022-00333-2","PUBLICATION","VERIFIED","Auto Verify","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002Fs13005-022-00333-2",[214,230,242,255,271,284,296,309,322],{"id":215,"sortIndex":19,"researcher":18,"roles":216,"affiliations":218,"properties":227},"0584a2a9-89bf-4c1d-b30e-2818ec60448b",[217],"AUTHOR",[219],{"id":18,"sortIndex":19,"affiliation":220,"properties":18},{"id":221,"createTime":222,"updateTime":222,"relativeEntities":223,"slug":18,"properties":224,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"5a745b26-f069-4c8d-b4f1-595a2e46f71c","2023-12-01T21:30:36.610+00:00",[],{"title":225},{"VI":226},"Postgraduate Program in Pathology, School of Medicine, Universidade Federal Fluminense (UFF), Niterói, Brazil",{"title":228},{"VI":229},"Letícia Côgo 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Santos",{"id":256,"sortIndex":257,"researcher":18,"roles":258,"affiliations":259,"properties":268},"b57b5080-2d39-44c3-ae43-62167dc24347",5,[217],[260],{"id":18,"sortIndex":19,"affiliation":261,"properties":18},{"id":262,"createTime":263,"updateTime":263,"relativeEntities":264,"slug":18,"properties":265,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"e938c408-2c9a-491f-9258-08a659e55ea2","2023-12-19T02:18:39.526+00:00",[],{"title":266},{"VI":267},"Department of Pathology, School of Medicine, Universidade Federal Fluminense (UFF), Niterói, Brazil",{"title":269},{"VI":270},"Adrianna 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Studienabbruch und Studienfachwechsel in den mathematisch‐naturwissenschaftlichen Bachelorstudiengängen der Humboldt‐Universität zu Berlin Schriftenreihe zum Qualitätsmanagement an Hochschulen. 2012; Band 6, Berlin. URL: https:\u002F\u002Fwww.hu-berlin.de\u002Fde\u002Fhu\u002Fverwaltung\u002Fqm\u002Flehrevaluation\u002Fmint-studie-1\u002Fmint-studie. Accessed 09.02.2016.\nHeublein U, Spangenberg H, Sommer D. Ursachen des Studienabbruchs, Analyse 2002. Hannover: Hochschulplanung Bd; 2003. p. 163. ISBN 3-930447-54-1.\nWissenschaftsrat. Empfehlungen zur Reform des Hochschulzugangs. Januar 2004. URL: http:\u002F\u002Fwww.wissenschaftsrat.de\u002Fdownload\u002Farchiv\u002F5920-04.pdf. Accessed 09.02.2016.\nWegmann WU. Das IMC Master Program – ein Beispiel einer postgradualenuniversitären Ausbildung im Bereich der oralen Medizin. Vogt: Wa(h)re Bildung, Deutsche Gesellschaft für Wissenschaftliche Weiterbildung und Fernstudium; 2008.\nAschersleben K. Welche Bildung brauchen Schüler? Vom Umgang mit dem Unterrichtsstoff. Bad Heilbrunn: Verlag Julius Klinkardt; 1993.\nGrüner G. Die didaktische Reduktion als Kernstück der Didaktik. In: Die deutsche Schule. DDS. Münster: Waxmann Verlag; 1967.\nLanger I, Schulz von Thun F, Tausch R. Sich verständlich ausdrücken. 2011; 9. Auflage. München: Ernst Reinhardt Verlag.\nBallstaedt SP. Wissensvermittlung. Die Gestaltung von Lernmaterial; Weinheim: Beltz Psychologische Verlags Union; 1997.\nHolzinger A. Basiswissen Multimedia, Band 2: Lernen. Würzburg: Vogel Buchverlag; 2002.\nBrody L, Stanley J. Young college students: Assessing factors that contribute to success. In: Southern T, Jones ED, editors. Academic acceleration of gifted children. New York: Teachers College Press; 1991. p. 102–32.\nBrody L, Stanley J. Youths who reason exceptionally well mathematically and or verbally. Conceptions of giftedness, 2005, 2. Jg., S. 20–37.\nStanley J. The study of mathematically precocious youth. In: Intellectual talent. Baltimore: John Hopkins University Press; 1996. p. 225–35.\nStanley J. Varieties of Intellectual talent 1. J Creative Behav. 1997;31(2):93–119.\nStanley J. A quiet revolution: Finding boys and girls who reason exceptionally well and\u002For verbally and helping them get the supplemental educational opportunities they need. High Abil Stud. 2005;16(1):5–14.\noezbf. Begabtenförderung und Begabungsforschung in Österreich. Bilanz und Perspektive 1996–2006. 2006. http:\u002F\u002Fwww.oezbf.at\u002Fcms\u002Ftl_files\u002FPublikationen\u002FVeroeffentlichungen\u002Fbegabten_neu.pdf'. Accessed 09.02.2016.\nWeilguny W, Resch C, Samhaber E, Hartel B. Weißbuch Begabungs- und Exzellenzförderung. Salzburg: ÖZBF; 2011.\nBund-Länder-Kommission für Bildungsplanung und Forschungsförderung Kooperative Strukturen an der Schnittstelle Schule\u002FHochschule zur Studien- und Berufswahlvorbereitung Bericht, Empfehlungen und Handreichung. 2005; Heft 126.\nSolzbacher C. Schüler an die Universität - Ergebnisse einer bundesweiten Untersuchung zum Frühstudium. In: Journal für Begabtenförderung. 2008, S. 44–52.\nSolzbacher C. Frühstudium - Schüler an die Universität. Herausgeber: Deutsche Telekom Stiftung Bonn. 2010. http:\u002F\u002Fwww.telekom-stiftung.de\u002Fdts-cms\u002Fsites\u002Fdefault\u002Ffiles\u002F\u002Fdts-library\u002Fbody-files\u002Frechte-spalte\u002F04_Talentfoerderung\u002FFruehstudium\u002Fbuch_fruehstudium.pdf. Accessed 09.02.2016.\nSolzbacher C. Frühstudium in Deutschland: Ergebnisse einer bundesweiten Untersuchung. In: Bayrisches Staatsinstitut für Hochschulforschung und Hochschulplanung (Hrsg.): Beiträge zur Hochschulforschung - Themenheft “Frühstudium für begabte Jugendliche”, 2011, S. 8–25.\nThomanek A, Schönfeldt C, Donick M, Schwelgengräber W, Tavangarian D. Media-based Junior Studies (MbJS) in Context of the “New learning Culture”. eLearning Baltics 2009, Proceedings of the 2nd International eLBa Science Conference 2009; S. 2736.\nNeumann M, Perleth C. Studieren im virtuellen Raum. Erfahrungen mit dem mediengestützten Schülerstudium an der Universität Rostock. Beiträge zur Hochschulforschung. 2011;1:50–69.\nSadeghi R, Sedaghat MM, Sha Ahmadi F. Comparism of the effect of lecture and blended teaching methods ob students learning and satisfaction. J Adv Med Educ Prof. 2014;2(4):146–50.\nMayer B, Ring C, Muche R, Rothenbacher D, Schmidt-Straßburger U. Creating a blended learning module in an online master study programme in oncology. Educ Health (Abingdon). 2015;28(1):101–5. doi:10.4103\u002F1357-6283.161951.",{"EN":380},"Biomedical science, especially biomaterials, is an expanding field in medicine. Universities are being challenged to gain the best students for a later academic career. Pre-university assessment of pupils has become crucial to reach this aim. Blended learning is an emerging paradigm for science education even though it has not yet been rigorously assessed, especially in the pupil\u002Fundergraduate situation. The aim of the study was to develop and preliminarily test a blended-learning system in biomedicine for university applicants. An internet-based blended-learning module in material science was developed in close collaboration between a university (Biomaterials Department, Dresden TU), a German Gymnasium and an internationally oriented medical college (IMC®, Münster). Forty pre-university students were taught by this learning module composed of school education and internet-based knowledge transfer and involved in the evaluation of the utility of this learning tool. Finally, the students took first-year university examinations in order to evaluate the success of this kind of education. The internet-based blended-learning module as a combination of e-learning tutorials and live online lectures which was applied in phase 3 of this study was developed on the basis of the findings of both pre-university studies. The results of the learning behavior regarding the number of invokes and the dwell time of the individual pages of the pre-university learning material, the results of the online evaluation and the results of the pre-phase examination were successively used to optimize the next phase. At the end of the pre-university learning, seven of eight participants were able to pass the first-year university examination followed by nationally accepted credit award. Internet-based blended-learning module proved to be suitable to prepare students for biomedical university education while also giving them the possibility to assess their qualifications for studying biomedicine and subsequent scientific careers. 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Ambulatory sagittal split ramus osteotomy: strategy for enhanced recovery after surgery. Int J Oral Maxillofac Surg. 2023;52(4):476–80.\nTrauner R, Obwegeser H. The surgical correction of mandibular prognathism and retrognathia with consideration of genioplasty. I. Surgical procedures to correct mandibular prognathism and reshaping of the chin. Oral Surg Oral Med Oral Pathol. 1957;10(7):677–889.\nDal Pont G. Retromolar osteotomy for the correction of prognathism. J Oral Surg Anesth Hosp Dent Serv. 1961;19:42–7.\nHunsuck EE. A modified intraoral sagittal splitting technique for correction of mandibular prognathism. J Oral Surg. 1968;26(4):250–3.\nGallo WJ, Moss M, Gaul JV. Modification of the sagittal ramus-split osteotomy for retroghnatia. J Oral Surg. 1976;34(2):178–9.\nEpker BN. Modifications in the sagittal osteotomy of the mandible. J Oral Surg. 1977;35(2):157–9.\nWolford LM, Bennett MA, Rafferty CG. Modification of the mandibular ramus sagittal split osteotomy. Oral Surg Oral Med Oral Pathol. 1987;64(2):146–55.\nVerweij JP, Mensink G, Houppermans PN, van Merkesteyn JP. Angled osteotomy design aimed to influence the lingual fracture line in bilateral sagittal split Osteotomy: A human cadaveric study. J Oral Maxillofac Surg. 2015;73(10):1983–93.\nWolford LM, Davis WM. The mandibular inferior border split: a modification in the sagittal split osteotomy. J Oral Maxillofac Surg. 1990;48(1):92–4.\nMont’Alverne ALF, Xavier FG, Meneses AM, Santos ES, Franco JMPL. Is bilateral sagittal split osteotomy of the mandible with no step possible? A modification in the technique. J Craniofac Surg. 2019;30(7):2275–6.\nde Sanata ST, Albuquerque KM, Santos ME, Laureano Filho JR. Survey on complications of orthognathic surgery among oral and maxillofacial surgeons. J Craniofac Surg. 2012;23(5):e423-430.\nChrcanovic BR, Freire-Maia B. Risk factors and prevention of bad splits during sagittal split osteotomy. Oral Maxillofac Surg. 2012;16(1):19–27.\nAgbaje JO, Salem AS, Lambrichts I, Jacobs R, Politis C. Systematic review of the incidence of inferior alveolar nerve injury in bilateral sagittal split osteotomy and the assessment of neurosensory disturbances. Int J Oral Maxillofac Surg. 2015;44(4):447–51.\nColella G, Cannavale R, Vicidomini A, Lanza A. Neurosensory disturbance of the inferior alveolar nerve after bilateral sagittal split osteotomy: a systematic review. Int J Oral Maxillofac Surg. 2007;65(9):1707–15.\nVerweij JP, Houppermans PN, Gooris P, Mensink G, van Merkesteyn JP. Risk factors for common complications associated with bilateral sagittal split osteotomy: A literature review and meta-analysis. J Craniomaxillofac Surg. 2016;44(9):1170–80.\nYlikontiola L, Kinnunen J, Oikarinen K. Factors affecting neurosensory disturbance after mandibular bilateral sagittal split osteotomy. J Oral Maxillofac Surg. 2000;58(11):1234–40.\nBruckmoser E, Bulla M, Alacamlioglu Y, Steiner I, Watzke IM. Factors influencing neurosensory disturbance after bilateral sagittal split osteotomy: retrospective analysis after 6 and 12 months. Oral Surg Oral Med Oral Pathol Oral Radiol. 2013;115(4):473–82.\nAlolayan AB, Leung YY. Risk factors of neurosensory disturbance following orthognathic surgery. PLoS One. 2014;9(3):e91055.\nPlooij JM, Naphausen MT, Maal TJ, Xi T, Rangel FA, Swennnen G, de Koning M, Borstlap WA, Bergé SJ. 3D evaluation of the lingual fracture line after a bilateral sagittal split osteotomy of the mandible. Int J Oral Maxillofac Surg. 2009;38(12):1244–9.\nSchoen P, Frotscher M, Eggeler G, Kessler P, Wolff KD, Boeckmann R. Modification of the bilateral sagittal split osteotomy (BSSO) in a study using pig mandibles. Int J Oral Maxillofac Surg. 2011;40(5):516–20.\nBöckmann R, Schön P, Frotscher M, Eggeler G, Lethaus B, Wolff KD. Pilot study of modification of the bilateral sagittal split osteotomy (BSSO) in pig mandibles. J Craniomaxillofac Surg. 2011;39(3):169–72.\nBöckmann R, Schön P, Neuking K, Meyns J, Kessler P, Eggeler G. In vitro comparison of the sagittal split osteotomy with and without inferior border osteotomy. J Oral Maxillofac Surg. 2015;73(2):316–23.\nHouppermans PNWJ, Verweij JP, Mensink G, Gooris PJJ, van Merkesteyn JPR. Influence of inferior border cut on lingual fracture pattern during bilateral sagittal split osteotomy with splitter and separators: A prospective observational study. J Craniomaxillofac Surg. 2016;44(10):1592–8.\nMöhlhenrich SC, Ayoub N, Peters F, Winterhalder P, Prescher A, Hölzle F, Wolf M, Modabber A. Evaluation of the lingual fracture patterns after bilateral sagittal split osteotomy according to Hunsuck\u002FEpker modified by an additional inferior border osteotomy using a burr or ultrasonic device. Int J Oral Maxillofac Surg. 2019;48(5):620–8.\nEl-Gheriani AA, Maher BS, El-Gheriani AS, Sciote JJ, Abu-Shahba FA, Al-Azemi R, Marazita ML. J Dent Res. 2003;82(7):523–7.\nLukacs JR. Dental paleopathology and agricultural intensification in south Asia: new evidence from Bronze Age Harappa. Am J Phys Anthropol. 1992;87(2):133–50.\nCoquerelle M, Bookstein FL, Braga J, Halazonetis DJ, Weber GW, Mitteroecker P. Sexual dimorphism of the human mandible and its association with dental development. Am J Phys Anthropol. 2011;145(2):192–202.\nSingh GD, McNamara JA Jr, Lozanoff S. Comparison of mandibular morphology in Korean and European-American children with Class III malocclusions using finite-element morphometry. J Orthod. 2000;27(2):135–42.\nBöckmann R, Meyns J, Dik E, Kessler P. The modifications of the sagittal ramus split osteotomy: a literature review. Plast Reconstr Surg Glob Open. 2015;2(12):e271.\nHou M, Yu TP, Wang JG. Evaluation of the mandibular split patterns in sagittal split ramus osteotomy. J Oral Maxillofac Surg. 2015;73(5):985–93.\nZamiri B, Tabrizi R, Shahidi S, Pouzesh A. Medial cortex fracture patterns after sagittal split osteotomy using short versus long medial cuts: can we obviate bad splits? Int J Oral Maxillofac Surg. 2015;44(7):809–15.\nZeynalzadeh F, Shooshtari Z, Eshghpour M, Hoseini Zarch SH, Tohidi E, Samieirad S. Dal Pont vs Hunsuck: which technique can lead to a lower incidence of bad split during bilateral sagittal split osteotomy? A triple-blind randomized clinical trial. World J Plast Surg. 2021;10(3):25–33.\nAarabi M, Tabrizi R, Hekmat M, Shahidi S, Puzesh A. Relationship between mandibular anatomy and the occurrence of a bad split upon sagittal split osteotomy. J Oral Maxillofac Surg. 2014;72(12):2508–13.\nTelha W, Abotaleb B, Zhang J, Bi R, Zhu S, Jiang N. Correlation between mandibular anatomy and bad split occurrence during bilateral sagittal split osteotomy: a three-dimensional study. Clin Oral Investig. 2023;27(3):1035–42.\nFernandes AC, Cardoso PM, Fernandes IS, de Moraes M. Anatomic study for the horizontal cut of the sagittal split ramus osteotomy. J Oral Maxillofac Surg. 2013;71(7):1239–44.\nCillo JE, Stella JP. Selection of sagittal split ramus osteotomy technique based on skeletal anatomy and planned distal segment movement: current therapy. J Oral Maxillofac Surg. 2005;63(1):109–14.",{"EN":693},"The purpose of this study was to evaluate the effect of adding a fourth osteotomy at the lower border of the mandible on the lingual cortical fracture pattern in bilateral sagittal split ramus osteotomies. The sample of the study consisted of 20 patients (12 male and 8 female, with a mean age of 26.79 ± 7.12 years) with mandibular deformities who needed bilateral sagittal split ramus osteotomy. One side underwent a traditional sagittal split ramus osteotomy, and the procedure was modified on the other side by adding a 1 cm horizontal osteotomy at the lower border of the mandible, just distal to the caudal end of the vertical buccal osteotomy cut. A 3D CBCT was used to identify the split pattern. In the total sample, 40% of the lingual splits ran vertically toward the lower border of the mandible (LSS1), 20% of the splits passed horizontally to the posterior border of the mandible (LSS2), 32.5% of the splits took place along the inferior alveolar canal (LSS3), and 7.5% of the splits were unfavourable fractures (LSS4). On the inferior border osteotomy sides, the distribution of LSS1, LSS2, LSS3, and LSS4 was 10 (25%), 6 (15%), 4 (10%), and 0 (00), respectively. Their distribution on the sides without inferior border osteotomy was 6 (15%), 8 (20%), 13 (32.5%), and 3 (7.5%), respectively. Statistical analysis revealed a significant difference between the two groups (p \u003C 0.05). Inferior border osteotomy tends to direct the lingual split fracture line toward the lower and posterior borders of the mandible and minimizes bad splits; however, further studies are needed to confirm our findings.",{"EN":695},"Does osteotomizing the lower border of the mandible affect the lingual split pattern in a sagittal split ramus osteotomy?",{"VOID":697},"10.1186\u002Fs13005-023-00396-9","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002Fs13005-023-00396-9",[700,715,730,745],{"id":701,"sortIndex":19,"researcher":18,"roles":702,"affiliations":703,"properties":712},"a5c4f849-bda3-492e-8952-c9f16b87db26",[217],[704],{"id":18,"sortIndex":19,"affiliation":705,"properties":18},{"id":706,"createTime":707,"updateTime":707,"relativeEntities":708,"slug":18,"properties":709,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"28258bd7-b489-46a4-a3d8-e1b5f350257b","2024-01-14T18:08:31.340+00:00",[],{"title":710},{"VI":711},"Al-Manara College for Medical Sciences, Mysan, Iraq",{"title":713},{"VI":714},"Alah Dawood Al-Dawoody",{"id":716,"sortIndex":298,"researcher":18,"roles":717,"affiliations":718,"properties":727},"77aaaccc-a680-4f4d-9071-65867a07289b",[217],[719],{"id":18,"sortIndex":19,"affiliation":720,"properties":18},{"id":721,"createTime":722,"updateTime":722,"relativeEntities":723,"slug":18,"properties":724,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"261680bb-2fe8-4a36-8489-66a2ab47071e","2024-01-14T18:08:31.353+00:00",[],{"title":725},{"VI":726},"Kurdistan Higher Council of Medical Specialties, Erbil, Iraq",{"title":728},{"VI":729},"Shehab Ahmed Hamad",{"id":731,"sortIndex":324,"researcher":18,"roles":732,"affiliations":733,"properties":742},"8843c256-e292-4003-9cf9-4b56fa35ed6f",[217],[734],{"id":18,"sortIndex":19,"affiliation":735,"properties":18},{"id":736,"createTime":737,"updateTime":737,"relativeEntities":738,"slug":18,"properties":739,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"d91f015f-fb94-4d70-92c5-08c73368a6bd","2024-01-14T18:08:31.376+00:00",[],{"title":740},{"VI":741},"College of Dentistry, Hawler Medical University, Erbil, Iraq",{"title":743},{"VI":744},"Twana Hoshyar Saleem",{"id":746,"sortIndex":244,"researcher":18,"roles":747,"affiliations":748,"properties":754},"49ef49f6-16dc-4a57-b62d-0179c2ec2792",[217],[749],{"id":18,"sortIndex":19,"affiliation":750,"properties":18},{"id":736,"createTime":737,"updateTime":737,"relativeEntities":751,"slug":18,"properties":752,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":753},{"VI":741},{"title":755},{"VI":756},"Khurshid A. 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The effectiveness of repetition or multiplicity of different surgical and non-surgical procedures compared to a single procedure application in accelerating orthodontic tooth movement: a systematic review and meta-analysis. Cureus. 2022;14(3):e23105.\nGasparro R, Bucci R, De Rosa F, Sammartino G, Bucci P, D’Antò V, Marenzi G. Effectiveness of surgical procedures in the acceleration of orthodontic tooth movement: findings from systematic reviews and meta-analyses. Jpn Dent Sci Rev. 2022;58:137–54.\nLandin-Ramos M, Yadav S, Gandhi V, Upadhyay M, Tadinada A. Is there a relationship between mandibular cortical bone thickness and orthodontic treatment time? Angle Orthod. 2020;90(6):794–800.\nAlfawal AMH, Hajeer MY, Ajaj MA, Hamadah O, Brad B. Evaluation of piezocision and laser-assisted flapless corticotomy in the acceleration of canine retraction: a randomized controlled trial. Head Face Med. 2018;14(1):4.\nAl-Imam GMF, Ajaj MA, Hajeer MY, Al-Mdalal Y, Almashaal E. Evaluation of the effectiveness of piezocision-assisted flapless corticotomy in the retraction of four upper incisors: a randomized controlled clinical trial. Dent Med Probl. 2019;56(4):385–94.\nRosvall MD, Fields HW, Ziuchkovski J, Rosenstiel SF, Johnston WM. Attractiveness, acceptability, and value of orthodontic appliances. Am J Orthod Dentofacial Orthop. 2009;135(3):276 .e1-12; discussion 276-7.\nShaadouh RI, Hajeer MY, Mahmoud G, Murad RMT. Systematic review: is high-energy laser therapy (HELT) with flapless corticotomy effective in accelerating orthodontic tooth movement? Cureus. 2022;14(2):e22337.\nKamal AT, Malik DES, Fida M, Sukhia RH. Does periodontally accelerated osteogenic orthodontics improve orthodontic treatment outcome? A systematic review and meta-analysis. Int Orthod. 2019;17(2):193–201.\nKole H. Surgical operations on the alveolar ridge to correct occlusal abnormalities. Oral Surg Oral Med Oral Pathol. 1959;12(5):515–29 concl.\nFrost HM. The regional acceleratory phenomenon: a review. Henry Ford Hosp Med J. 1983;31(1):3–9.\nCharavet C, Lecloux G, Bruwier A, Rompen E, Maes N, Limme M, Lambert F. Localized piezoelectric alveolar decortication for orthodontic treatment in adults: a randomized controlled trial. J Dent Res. 2016;95(9):1003–9.\nOmidkhoda M, Radvar M, Azizi M, Dehghani M. Evaluating the efficacy of a modified piezo-puncture method on the rate of tooth movement in orthodontic patients: a clinical study. Turk J Orthod. 2020;33(1):13–20.\nKumar P, Rampurawala AH, Patil AS. Effect of micro-osteoperforations (MOPs) on the rate of en masse orthodontic tooth retraction: a randomized controlled trial. J Orofac Orthop. 2022;26. English. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00056-022-00420-8.\nBani-Hani M, Amin Karami M. Piezoelectric tooth aligner for accelerated orthodontic tooth movement. Annu Int Conf IEEE Eng Med Biol Soc. 2018;2018:4265–8.\nGibreal O, Al-Modallal Y, Mahmoud G, Gibreal A. The efficacy and accuracy of 3D-guided orthodontic piezocision: a randomized controlled trial. BMC Oral Health. 2023;23(1):181.\nHan Y, Miao L, Liu J, Xu X, Yue Z, Xu M, Shu C, Xu L, Hou J. Periodontal soft tissue increase induced by periodontally accelerated osteogenic orthodontics surgery. BMC Oral Health. 2022;22(1):506.\nKrishna VB, Duggal I, Sharan J, Mangaraj M, Duggal R, Jena AK. Effect of leukocyte-platelet-rich fibrin (L-PRF) on the rate of orthodontic tooth movement and expression of various biomarkers in gingival crevicular fluid. Clin Oral Investig. 2023;27(5):2311–9.\nHuang T, Wang Z, Li J. Efficiency of photobiomodulation on accelerating the tooth movement in the alignment phase of orthodontic treatment-A systematic review and meta-analysis. Heliyon. 2023;9(2):e13220.\nWang B, Shen G, Fang B, Yu H, Wu Y. Augmented corticotomy-assisted presurgical orthodontics of class III malocclusions: a cephalometric and cone-beam computed tomography study. J Craniofac Surg. 2013;24(6):1886–90.\nChen Z, Zhou H, Zhang K, Wang X, Zhong L, Hou Y, Chen Y. The clinical efficacy of periodontally accelerated osteogenic orthodontics in patients with bone fenestration and dehiscence: a retrospective study. Head Face Med. 2022;18(1):40.\nAttri S, Mittal R, Batra P, Sonar S, Sharma K, Raghavan S, Rai KS. Comparison of rate of tooth movement and pain perception during accelerated tooth movement associated with conventional fixed appliances with micro-osteoperforations - a randomised controlled trial. J Orthod. 2018;45(4):225–33.\nCharavet C, Lecloux G, Jackers N, Maes N, Lambert F. Patient-reported outcomes measures (PROMs) following a piezocision-assisted versus conventional orthodontic treatments: a randomized controlled trial in adults. Clin Oral Investig. 2019;23(12):4355–63.\nBakdach WMM, Hadad R. Effectiveness of low-level laser therapy in accelerating the orthodontic tooth movement: a systematic review and meta-analysis. Dent Med Probl. 2020;57(1):73–94.\nPouliezou I, Xenou A, Vavetsi K, Mitsea A, Sifakakis I. Adverse effects of surgically accelerated orthodontic techniques: a systematic review. Child (Basel). 2022;9(12):1835.\nPatterson BM, Dalci O, Papadopoulou AK, Madukuri S, Mahon J, Petocz P, Spahr A, Darendeliler MA. Effect of piezocision on root resorption associated with orthodontic force: a microcomputed tomography study. Am J Orthod Dentofacial Orthop. 2017;151(1):53–62.\nPage MJ, McKenzie JE, Bossuyt PM, Boutron I, Hoffmann TC, Mulrow CD, Shamseer L, Tetzlaff JM, Akl EA, Brennan SE, Chou R, Glanville J, Grimshaw JM, Hróbjartsson A, Lalu MM, Li T, Loder EW, Mayo-Wilson E, McDonald S, McGuinness LA, Stewart LA, Thomas J, Tricco AC, Welch VA, Whiting P, Moher D. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ. 2021;372:n71.\nHiggins JPT, Thomas J, Chandler J, Cumpston M, Li T, Page MJ, Welch VA, editors. Cochrane Handbook for Systematic Reviews of Interventions version 6.4 (updated August 2023). Cochrane; 2023. Available from www.training.cochrane.org\u002Fhandbook.\nRobinson KA, Saldanha IJ, McKoy NA. Development of a framework to identify research gaps from systematic reviews. J Clin Epidemiol. 2011;64(12):1325–30.\nSterne JAC, Savović J, Page MJ, Elbers RG, Blencowe NS, Boutron I, Cates CJ, Cheng HY, Corbett MS, Eldridge SM, Emberson JR, Hernán MA, Hopewell S, Hróbjartsson A, Junqueira DR, Jüni P, Kirkham JJ, Lasserson T, Li T, McAleenan A, Reeves BC, Shepperd S, Shrier I, Stewart LA, Tilling K, White IR, Whiting PF, Higgins JPT. RoB 2: a revised tool for assessing risk of bias in randomised trials. BMJ. 2019;366:l. (Shoreibah, Ibrahim 2012)4898.\nSterne JA, Hernán MA, Reeves BC, Savović J, Berkman ND, Viswanathan M, Henry D, Altman DG, Ansari MT, Boutron I, Carpenter JR, Chan AW, Churchill R, Deeks JJ, Hróbjartsson A, Kirkham J, Jüni P, Loke YK, Pigott TD, Ramsay CR, Regidor D, Rothstein HR, Sandhu L, Santaguida PL, Schünemann HJ, Shea B, Shrier I, Tugwell P, Turner L, Valentine JC, Waddington H, Waters E, Wells GA, Whiting PF, Higgins JP. ROBINS-I: a tool for assessing risk of bias in non-randomised studies of interventions. BMJ. 2016;355:i4919.\nMa H, Lyu H, Xu L, Hou J, Wang X, Li W, Li X. Augmented corticotomy-assisted presurgical orthodontic treatment to prevent alveolar bone loss in patients with skeletal class III malocclusion. Am J Orthod Dentofacial Orthop. 2023;163(2):210–21.\nWang X, Mei M, Han G, Luan Q, Zhou Y. Effectiveness of modified periodontally accelerated osteogenic orthodontics in skeletal class II malocclusion treated by a camouflage approach. Am J Transl Res. 2022;14(2):979–89.\nWu J, Jiang JH, Xu L, Liang C, Bai Y, Zou W. A pilot clinical study of class III surgical patients facilitated by improved accelerated osteogenic orthodontic treatments. Angle Orthod. 2015;85(4):616–24.\nSirri MR, Burhan AS, Hajeer MY, Nawaya FR, Abdulhadi A. Efficiency of corticision in accelerating leveling and alignment of crowded lower anterior teeth in young adult patients: a randomised controlled clinical trial. J Clin Diagn Res. 2020;14(10):ZC26–31.\nSultana S, Ab Rahman N, Zainuddin SLA, Ahmad B. Effect of piezocision procedure in levelling and alignment stage of fixed orthodontic treatment: a randomized clinical trial. Sci Rep. 2022;12(1):6230.\nUribe F, Davoody L, Mehr R, Jayaratne YSN, Almas K, Sobue T, Allareddy V, Nanda R. Efficiency of piezotome-corticision assisted orthodontics in alleviating mandibular anterior crowding-a randomized clinical trial. Eur J Orthod. 2017;39(6):595–600.\nAhn HW, Seo DH, Kim SH, Park YG, Chung KR, Nelson G. Morphologic evaluation of dentoalveolar structures of mandibular anterior teeth during augmented corticotomy-assisted decompensation. Am J Orthod Dentofacial Orthop. 2016;150(4):659–69.\nJing WD, Jiao J, Xu L, Hou JX, Li XT, Wang XX, Xu X, Mao MX. Periodontal soft- and hard-tissue changes after augmented corticotomy in Chinese adult patients with skeletal angle class III malocclusion: a non-randomized controlled trial. J Periodontol. 2020;91(11):1419–28.\nXu X, Wu JQ, Jiang JH, Liang C, Wang XE, Jing WD, Xu L. Periodontal effect of periodontally accelerated osteogenic orthodontics in skeletal angle class III: a nonrandomized, controlled trial. Int J Periodontics Restorative Dent. 2020;40(4):e169-177.\nKilinc B, Baka ZM. Comparison of the effectiveness of piezocision and microosteoperforation in leveling mandibular anterior teeth. Am J Orthod Dentofacial Orthop. 2023;163(4):491–500.\nWilcko MT, Ferguson DJ, Makki L, Wilcko WM. Keratinized gingiva height increases after alveolar corticotomy and augmentation bone grafting. J Periodontol. 2015;86(10):1107–15.\nAksakalli S, Calik B, Kara B, Ezirganli S. Accelerated tooth movement with piezocision and its periodontal-transversal effects in patients with class II malocclusion. Angle Orthod. 2016;86(1):59–65.\nÇağlı Karcı İ, Baka ZM. Assessment of the effects of local platelet-rich fibrin injection and piezocision on orthodontic tooth movement during canine distalization. Am J Orthod Dentofacial Orthop. 2021;160(1):29–40.\nRaj SC, Praharaj K, Barik AK, Patnaik K, Mahapatra A, Mohanty D, Katti N, Mishra D, Panda SM. Retraction with and without piezocision-facilitated orthodontics: a randomized controlled trial. Int J Periodontics Restorative Dent. 2020;40(1):e19–26.\nShoreibah EA, Ibrahim SA, Attia MS, Diab MM. Clinical and radiographic evaluation of bone grafting in corticotomy-facilitated orthodontics in adults. J Int Acad Periodontol. 2012;14(4):105–13 PMID: 23210199.\nBahammam MA. Effectiveness of bovine-derived xenograft versus bioactive glass with periodontally accelerated osteogenic orthodontics in adults: a randomized, controlled clinical trial. BMC Oral Health. 2016;16(1):126.\nAgrawal AA, Kolte AP, Kolte RA, Vaswani V, Shenoy U, Rathi P. Comparative CBCT analysis of the changes in buccal bone morphology after corticotomy and micro-osteoperforations assisted orthodontic treatment - case series with a split mouth design. Saudi Dent J. 2019;31(1):58–65.\nTsichlaki A, Chin SY, Pandis N, Fleming PS. How long does treatment with fixed orthodontic appliances last? A systematic review. Am J Orthod Dentofacial Orthop. 2016;149(3):308–18.\nTalic NF. Adverse effects of orthodontic treatment: a clinical perspective. Saudi Dent J. 2011;23(2):55–9.\nAmit G, Jps K, Pankaj B, Suchinder S, Parul B. Periodontally accelerated osteogenic orthodontics (PAOO) - a review. J Clin Exp Dent. 2012;4(5):e292-296.\nGao J, Nguyen T, Oberoi S, Oh H, Kapila S, Kao RT, Lin GH. The significance of utilizing a corticotomy on periodontal and orthodontic outcomes: a systematic review and meta-analysis. Biology (Basel). 2021;10(8):803.\nKao RT, Curtis DA, Kim DM, Lin GH, Wang CW, Cobb CM, Hsu YT, Kan J, Velasquez D, Avila-Ortiz G, Yu SH, Mandelaris GA, Rosen PS, Evans M, Gunsolley J, Goss K, Ambruster J, Wang HL. American Academy of Periodontology best evidence consensus statement on modifying periodontal phenotype in preparation for orthodontic and restorative treatment. J Periodontol. 2020;91(3):289–98.\nCharavet C, Lecloux G, Jackers N, Albert A, Lambert F. Piezocision-assisted orthodontic treatment using CAD\u002FCAM customized orthodontic appliances: a randomized controlled trial in adults. Eur J Orthod. 2019;41(5):495–501.\nKeser E, Naini FB. Accelerated orthodontic tooth movement: surgical techniques and the regional acceleratory phenomenon. Maxillofac Plast Reconstr Surg. 2022;44(1):1.\nSuryavanshi HN, Das VR, Deshmukh A, Rai R, Vora M. Comparison of rate of maxillary canine movement with or without modified corticotomy facilitated orthodontic treatment: a prospective clinical trial. APOS Trends Orthod. 2015;5:138–43.\nKhlef HN, Hajeer MY. Is it possible to achieve favorable accelerated dental changes with no periodontal complications when retracting upper anterior teeth assisted by flapless corticotomy compared to traditional corticotomy? A two-arm randomized controlled trial. Sci World J. 2022;2022:4261248.\nZawawi KH. Patients’ acceptance of corticotomy-assisted orthodontics. Patient Prefer Adherence. 2015;9:1153–8.",{"EN":800},"The surgically facilitated orthodontic strategy has been a promising strategy for orthodontic treatment recently. Therefore, the present meta-analysis was conducted to assess the available scientific evidence regarding the clinical outcomes, including the potential detrimental effects associated with these surgical procedures, with the aim of providing much more evidence-based information for clinical practice. An electronic search of three databases (PubMed, Cochrane, and Embase) and a manual search of relevant articles published up to May 2023 were carried out. Clinical trials (≥ 10 subjects) that utilized surgically facilitated orthodontic strategies with clinical and\u002For radiographic outcomes were included. Meta-analyses and sub-group analyses were performed to analyze the standardized mean difference (SMD) or weighted mean difference (WMD), and confidence interval (CI) for the recorded variables. Nineteen studies published from Oct 2012 to May 2023 met the inclusion criteria. Based on the analysis outcomes, corticotomy treatment significantly decreased the alignment duration (WMD: -1.08 months; 95% CI = -1.65, -0.51 months, P = 0.0002), and accelerated the canine movement (WMD: 0.72 mm; 95% CI = 0.63, 0.81 mm, P \u003C 0.00001) compared to the traditional orthodontic group. The periodontally accelerated osteogenic orthodontic (PAOO) strategy markedly reduced the total treatment duration (SMD: -1.98; 95% CI = -2.59, -1.37, P \u003C 0.00001) and increased the bone thickness (SMD:1.07; 95% CI = 0.74, 1.41, P \u003C 0.00001) compared to traditional orthodontic treatment. The present study suggests that facilitated orthodontic treatment in terms of corticotomy and PAOO strategy may represent attractive and effective therapeutic strategy for orthodontic patients.",{"EN":802},"The efficacy and safety of corticotomy and periodontally accelerated osteogenic orthodontic interventions in tooth movement: an updated meta-analysis",{"VOID":804},"10.1186\u002Fs13005-024-00409-1","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002Fs13005-024-00409-1",[807,832,854,876,895,914],{"id":808,"sortIndex":19,"researcher":18,"roles":809,"affiliations":810,"properties":829},"c7c33d0d-b852-41a0-be08-77176cb0decc",[217],[811,821],{"id":812,"sortIndex":298,"affiliation":813,"properties":820},"877fc294-5a9a-4d80-a79a-c9f442985b34",{"id":814,"createTime":815,"updateTime":815,"relativeEntities":816,"slug":18,"properties":817,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"73b79f11-e054-4d3d-9459-4a53802a422f","2024-02-18T23:48:37.315+00:00",[],{"title":818},{"VI":819},"Department of Periodontology, College of Stomatology, Xi’an Jiaotong University, Xi’an, China",{},{"id":18,"sortIndex":19,"affiliation":822,"properties":18},{"id":823,"createTime":824,"updateTime":824,"relativeEntities":825,"slug":18,"properties":826,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"84449897-be04-4926-942e-1843c2818037","2023-12-05T20:42:01.806+00:00",[],{"title":827},{"VI":828},"Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi’an Jiaotong University, Xi’an, China",{"title":830},{"VI":831},"Huan Zhou",{"id":833,"sortIndex":244,"researcher":18,"roles":834,"affiliations":835,"properties":851},"6f96c80e-4646-41b0-b62c-3df55ba2dfeb",[217],[836,841],{"id":18,"sortIndex":19,"affiliation":837,"properties":18},{"id":823,"createTime":824,"updateTime":824,"relativeEntities":838,"slug":18,"properties":839,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":840},{"VI":828},{"id":842,"sortIndex":298,"affiliation":843,"properties":850},"517aa89f-cd1d-4081-a020-b3c89f2484e4",{"id":844,"createTime":845,"updateTime":845,"relativeEntities":846,"slug":18,"properties":847,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"967842f7-7305-4511-baec-8ef6f5b891aa","2024-02-18T23:48:37.270+00:00",[],{"title":848},{"VI":849},"Department of Prosthodontics, College of Stomatology, Xi’an Jiaotong University, Xi’an, China",{},{"title":852},{"VI":853},"Yan-Xin Qi",{"id":855,"sortIndex":324,"researcher":18,"roles":856,"affiliations":857,"properties":873},"06408b59-0ed3-40b1-8b67-e913dc12f50f",[217],[858,868],{"id":859,"sortIndex":298,"affiliation":860,"properties":867},"415abefb-d8b0-494c-ac16-693e147a7d8f",{"id":861,"createTime":862,"updateTime":862,"relativeEntities":863,"slug":18,"properties":864,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"8d04f9bb-59a8-4d9d-b4ab-eaeb8b0edd64","2024-01-22T19:11:28.840+00:00",[],{"title":865},{"VI":866},"Department of Orthodontics, College of Stomatology, Xi’an Jiaotong University, Xi’an, 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DK, Murti PR, Bhonsle RR, Gupta PC, Mehta FS, Pindborg JJ: Risk factors and risk areas of the world. Oral cancer : the detection of patients and lesions at risk. Edited by: Johnson NW. 1991, Cambridge University Press, 29-63.\nShah J, Johsnon N, Batasakis J: Global epidemiology, oral cancer, Martin Duntiz Group. 2003, 3:\nQuarri D, Adams G, Shons Alan , Browne G: Head & Neck Cancer : Clinical decisions and management principles. 1997, 219-220.\nDeshpande VA, Jussawalla DJ: Evaluation of cancer risk in tobacco chewers and smokers : An epidemiological assessment. Cancer. 1971, 28: 244-252. 10.1002\u002F1097-0142(197107)28:1\u003C244::AID-CNCR2820280150>3.0.CO;2-H.\nGupta PC, Mehta FS: Comparison of carcinogenecity of Betel quid with or without tobacco: a review. Ecology of Disease. 1982, 1: 213-19.\nBouquot JE, Whitaker SB: Oral Leukoplakia rationale for diagnosis and prognosis of its clinical subtypes or \"phases\". Quintessence Int. 1994, 25: 133-140.\nChen J, Eisenberg E: Changing trends in oral cancer in United States 1935–1985. A Connecticut Study. J Oral Maxillofac Surg. 1991, 49: 1152-1158.\nOstman J, Anneroth E: Malignant oral tumours in Sweden 1962–1989. An Epidemiological Study – Eu. J Cancer & Oral Oncology. 1995, 8: 106-112. 10.1016\u002F0964-1955(94)00018-Y.\nGupta PC: Leukoplakia and the incidence of oral cancer. J Oral Pathol Med. 1989, 18: 11-10.1111\u002Fj.1600-0714.1989.tb00725.x.\nBabu S, Bhat RV, Kumar PV, Sesikaran B, Rao KV, Aruna P, Reddy PR: A comparative clinicopathological study of OSMF in habitual chewers of pan masala and betel quid. Clin Toxicology. 1996, 34 (3):\nSpermulli VN, Dexter DL: Human tumour cell heterogenecity and metastasis. J Clin Oncology. 1983, 1: 496-\nSalinas : Immune Complexes and human neoplasia : Review II,Biomed. Pharmather. 1983, 37: 211-\nSalinas FA, Wee KH, Silver HK: Tumour burden and antigen size and composition of IC. Peptides of the biological fluids. Edited by: Peeters H. 1984, Pergamon Press Oxford, 31: 749-752.\nSchwartz MK: Role of Trace elements in Cancer. Cancer Research. 1975, 35: 3481-87.\nBhatt , Dholakia : Mast Cell density in oral submucous fibrosis. J Ind Dent Asso. 1977, 49: 187-91.\nBhosle RB, Murti PR: Malignant transformation in OSMF over 17 year period. Comm Dent in Epidem. 1985, 13: 340-45. 10.1111\u002Fj.1600-0528.1985.tb00468.x.\nAxell T, Pindborg JJ, Smith CJ, Van der waal : Oral white lesions : Conclusions of International Symposium held in Sweden 1994. J Oral Pathol Med. 1996, 25: 49-54. 10.1111\u002Fj.1600-0714.1996.tb00191.x.\nPindborg JJ, Murti PR: OSMF as a precancerous condition. Scan J Dent Research. 1984, 92: 224-229.\nRiha I: The use of polyethyleneglycol for immune complex detection in human sera. Immunol. 1979, 16: 489-\nGowenlock AH, Wells FE: Estimation of iron and copper. Varley's Practical Clinical Biochemistry. 1988, 622-634. 6\nRaghunath Radha : Studies on environmental levels of toxic metals and their exposure assessment in Greater Bombay. Ph D Thesis. 1996, Environment Assessment Division, BARC\nSalinas FA, Kian Wee, Hulbert Silver: Clinical relevance of immune complexes associated antigen and antibody in cancer. Immune complexes and human cancer. 1985, Penguin Publishing Corp, 62-\nDeshpande VA, Jussawalla DJ: Evaluation of cancer risk in tobacco chewers and smokers. Cancer. 1971, 28: 244-252. 10.1002\u002F1097-0142(197107)28:1\u003C244::AID-CNCR2820280150>3.0.CO;2-H.\nGupta PC, Mehta FS: Comparision of Carcinogenicity of betel quid with and without tobacco : an epidemiological review. Ecology of Disease. 1982, 1: 213-19.\nCanniff JP, Harvey W, Harris M: OSMF – Its pathogenesis as management. Br Dent J. 1986, 10: 429-34. 10.1038\u002Fsj.bdj.4805876.\nBouquot JE: Reviewing oral Leukoplakia: Clinical concepts. J Am Dent Asso. 1991, 122: 80-82.\nLichtenstein : Comparison of immune derangements in patients with different malignancies. Cancer. 1990, 45: 2090-5. 10.1002\u002F1097-0142(19800415)45:8\u003C2090::AID-CNCR2820450816>3.0.CO;2-O.\nScully Crispian : Immunologic abnormalities in oral carcinoma and oral keratosis. J Max Fac Surg. 1982, 113-115. 10.1016\u002FS0301-0503(82)80021-0.\nGross L: Immunological defect in the aged population and its relationship to cancer. Cancer. 1965, 18: 201-6. 10.1002\u002F1097-0142(196502)18:2\u003C201::AID-CNCR2820180211>3.0.CO;2-V.\nScully C, Barkas T, Boyle P, McGregor IA: Circulating immune complexes detected by binding on radiolabelled protein in patients with oral cancer and oral premalignant lesions. J Clin Lab Immunol. 1982, 8: 113-15.\nHoffken K: Circulating immune complexes in rats bearing chemically induced tumors. Int J Cancer. 1978, 22: 576-582.\nMa RH: Increased lysyl oxidase activity in fibroblasts cultured from OSMF. J Oral Pathol Med. 1995, 24 (9): 407-12. 10.1111\u002Fj.1600-0714.1995.tb01210.x.\nJaydeep A: Serum levels of copper, zinc, iron and ceruloplasmin in oral leukoplakia and Squamous cell carcinoma. J Exp Clin Cancer Res. 1997, 16: 3-\nVarghese , Sugathan CK, Balsubramaniyan G, Vijayakumar T: Serum copper and zinc levels in premalignant or malignant lesions of oral cavity. Oncology. 1987, 44: 224-227.\nMargalith EJ, Schenker JG: Copper and zinc levels in normal and malignant tissues. Cancer. 1983, 52: 868-872. 10.1002\u002F1097-0142(19830901)52:5\u003C868::AID-CNCR2820520521>3.0.CO;2-K.\nHuang S, Ling T, Wu H: Experimental study on aqueous areca nut extracts inducing OSMF in rats. effect of mast cells on collagen metabolism Hua Xi Kou Qiang Yi, Xve Za Zhi. 1997, 15 (2): 94-96.\nRamanthan K: OSMF – an alterative hypothesis to its cause. Med J Malay. 1981, 36 (4): 243-45.\nSimpson JW: \"Proteins in teeth\" chapter 2 in Dental Biochemistry, Eugene Lazzari. 1976, Lea & Febiger, 39-46. 2\nChellacombe SJ: Int J Oral Maxillofac Surg. 1986, 15: 72-80.\nShamberger RJ: Antioxidants and Cancer-VI Selenium – sex and age adjusted human cancer mortality. Arch Environ Health. 1976, 31: 231-33.\nRajendran : Serum levels of some trace and bulk element in OSMF. JIDA. 1992, 631 (6): 251-254.\nKrishnaswamy K: A case Control Study of Selenium in Cancer. Indian J Med Res. 1993, 98 (B): 124-128.\nVijaykumar T: Circulating immune complexes as biological marker for solid tumors. J Exp Clin Cancer Res. 1986, 5: 3-",{"EN":978},"To evaluate the levels of circulating immune complexes, trace elements (copper, iron and selenium) in serum of patients with oral submucous fibrosis (OSMF), oral leukoplakia (L), and oral squamous cell carcinoma (SCC), analyze the alteration and identify the best predictors amongst these parameters for disease occurrence and progression. Circulating immune complexes (CIC) were estimated using 37.5% Polyethylene Glycol 6000(PEG) serum precipitation. Serum estimation of copper (Cu), Iron (Fe) and selenium (Se) was done using the Oxalyl Dihydrazide method, Colorimetric Dipyridyl method and the Differential Pulse Cathodic Stripping Voltametry respectively. The data analysis revealed increased circulating immune complex levels in the precancer and cancer patients. Serum copper levels showed gradual increase from precancer to cancer patients. However, serum iron levels were decreased significantly in the cancer group. Selenium levels showed marked decrease in the cancer group. Among CIC, serum, copper, iron and selenium the best predictors for the occurrence of lesions were age, serum iron, CIC, serum selenium in the decreasing order. The present study shows that these immunological and biological markers may be associated with the pathogenesis of oral premalignant and malignant lesions and their progressions. Concerted efforts would, therefore, help in early detection, management, and monitoring the efficacy of treatment.",{"EN":980},"Circulating Immune Complexes and trace elements (Copper, Iron and Selenium) as markers in oral precancer and cancer : a randomised, controlled clinical trial",{"VOID":982},"10.1186\u002F1746-160X-2-33","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002F1746-160X-2-33",[985,1000],{"id":986,"sortIndex":298,"researcher":18,"roles":987,"affiliations":988,"properties":997},"9f73fbc2-bd49-4b10-8844-de92839b2271",[217],[989],{"id":18,"sortIndex":19,"affiliation":990,"properties":18},{"id":991,"createTime":992,"updateTime":992,"relativeEntities":993,"slug":18,"properties":994,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"b3e7cac7-8c72-439d-9f97-aec4b3b1b4f3","2024-01-15T23:09:17.600+00:00",[],{"title":995},{"VI":996},"Department of Oral Medicine and Radiology, Nair Hospital Dental College, Mumbai, India",{"title":998},{"VI":999},"Freny R Karjodkar",{"id":1001,"sortIndex":19,"researcher":18,"roles":1002,"affiliations":1003,"properties":1009},"9507e4c3-d75d-4c00-9d41-37fff6ebd029",[217],[1004],{"id":18,"sortIndex":19,"affiliation":1005,"properties":18},{"id":991,"createTime":992,"updateTime":992,"relativeEntities":1006,"slug":18,"properties":1007,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":1008},{"VI":996},{"title":1010},{"VI":1011},"Sunali S Khanna",{"url":983,"publisher":1013,"properties":1040},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1014,"slug":10,"properties":1015,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1018,"manageAffiliations":1019,"indexDatabases":1020,"url":18,"thumbnailPath":18,"statistic":1035,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"eissn":1016,"title":1017},{"VOID":13},{"EN":15},[],[],[1021,1028],{"id":100,"indexDatabase":1022,"url":115,"indexYears":18,"academicFieldIds":1027,"indexDatabaseRanking":18},{"id":102,"createTime":103,"updateTime":104,"relativeEntities":1023,"label":1024,"description":1025,"key":111,"publicationTags":1026,"standard":18},[],{"EN":107,"VI":107},{"VI":109,"EN":110},[113,114],[117],{"id":78,"indexDatabase":1029,"url":91,"indexYears":92,"academicFieldIds":1034,"indexDatabaseRanking":98},{"id":80,"createTime":81,"updateTime":82,"relativeEntities":1030,"label":1031,"description":1032,"key":88,"publicationTags":1033,"standard":18},[],{"EN":85,"VI":85},{"EN":85,"VI":87},[90],[94,95,96,97],{"impactFactor":19,"impactFactorByYear":1036,"i10Index":132,"i10IndexLast5Year":133,"totalPublication":134,"totalPublicationByYear":1037,"totalCitation":152,"totalCitationByYear":1038,"totalCitationPerPublication":171,"totalCitationPerPublicationByYear":1039,"hindexLast5Year":145,"hindex":145},{"2012":120,"2013":121,"2014":122,"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130,"2023":131},{"2005":136,"2006":137,"2007":138,"2008":139,"2009":139,"2010":140,"2011":141,"2012":142,"2013":143,"2014":144,"2015":143,"2016":145,"2017":146,"2018":147,"2019":148,"2020":139,"2021":149,"2022":150,"2023":151,"2024":147},{"2005":154,"2006":155,"2007":156,"2008":157,"2009":158,"2010":159,"2011":160,"2012":161,"2013":162,"2014":163,"2015":164,"2016":165,"2017":166,"2018":167,"2019":140,"2020":168,"2021":169,"2022":170},{"2005":173,"2006":174,"2007":171,"2008":175,"2009":176,"2010":177,"2011":178,"2012":179,"2013":180,"2014":181,"2015":182,"2016":183,"2017":184,"2018":185,"2019":186,"2020":187,"2021":188,"2022":189},{"volume":1041,"pages":1043},{"VOID":1042},"2",{"VOID":1044},"1-10","2006-10-16",2006,{"id":1048,"createTime":1049,"updateTime":1050,"relativeEntities":1051,"slug":1052,"properties":1053,"entityType":209,"verifyStatus":210,"verifyTime":1050,"verifyNote":211,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1062,"fullTextUrl":18,"authors":1063,"publicationType":335,"publisherRelationship":1164,"citationCount":18,"citationInfo":18,"publishDate":1197,"publishYear":1198,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":371},"9be6ef1a-1e8e-4227-975d-330bf110b1fa","2023-12-07T14:00:17.696+00:00","2025-01-07T23:44:13.850+00:00",[],"The-predominant-bacteria-isolated-from-radicular-cysts",{"references":1054,"abstract":1056,"title":1058,"doi":1060},{"VOID":1055},"Marcal JR, Samuel RO, Fernandes D, de Araujo MS, Napimoga MH, Pereira SA, Clemente-Napimoga JT, Alves PM, Mattar R, Rodrigues V: T-helper cell type 17\u002Fregulatory T-cell immunoregulatory balance in human radicular cysts and periapical granulomas. J Endod. 2010, 36 (6): 995-999. 10.1016\u002Fj.joen.2010.03.020.\nNair PN, Sundqvist G, Sjogren U: Experimental evidence supports the abscess theory of development of radicular cysts. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2008, 106 (2): 294-303. 10.1016\u002Fj.tripleo.2008.04.009.\nAvelar RL, Antunes AA, Carvalho RW, Bezerra PG, Oliveira Neto PJ, Andrade ES: Odontogenic cysts: a clinicopathological study of 507 cases. J Oral Sci. 2009, 51 (4): 581-586. 10.2334\u002Fjosnusd.51.581.\nSharifian MJ, Khalili M: Odontogenic cysts: a retrospective study of 1227 cases in an Iranian population from 1987 to 2007. J Oral Sci. 2011, 53 (3): 361-367. 10.2334\u002Fjosnusd.53.361.\nAbou-Rass M, Bogen G: Microorganisms in closed periapical lesions. Int Endod J. 1998, 31 (1): 39-47. 10.1046\u002Fj.1365-2591.1998.t01-1-00088.x.\nSamaranayake LP, Stassen LF, Still DM: A microbiological study of pre- and postoperative apicoectomy sites. Clin Oral Investig. 1997, 1 (2): 77-80. 10.1007\u002Fs007840050015.\nIwu C, MacFarlane TW, MacKenzie D, Stenhouse D: The microbiology of periapical granulomas. Oral Surg Oral Med Oral Pathol. 1990, 69 (4): 502-505. 10.1016\u002F0030-4220(90)90386-7.\nIatrou IA, Legakis N, Ioannidou E, Patrikiou A: Anaerobic bacteria in jaw cysts. Br J Oral Maxillofac Surg. 1988, 26 (1): 62-69. 10.1016\u002F0266-4356(88)90152-0.\nCorson MA, Postlethwaite KP, Seymour RA: Are dental infections a cause of brain abscess? Case report and review of the literature. Oral Dis. 2001, 7 (1): 61-65. 10.1034\u002Fj.1601-0825.2001.70112.x.\nJimenez Y, Bagan JV, Murillo J, Poveda R: Odontogenic infections. Complications. Systemic manifestations. Medicina oral, patologia oral y cirugia bucal. 2004, 9: 143-147. 139–143\nBrunworth J, Shibuya TY: Craniocervical necrotizing fasciitis resulting from dentoalveolar infection. Oral Maxillofac Surg Clin North Am. 2011, 23 (3): 425-432. 10.1016\u002Fj.coms.2011.04.007.\nRega AJ, Aziz SR, Ziccardi VB: Microbiology and antibiotic sensitivities of head and neck space infections of odontogenic origin. J Oral Maxillofac Surg. 2006, 64 (9): 1377-1380. 10.1016\u002Fj.joms.2006.05.023.\nBaqain ZH, Newman L, Hyde N: How serious are oral infections?. J Laryngol Otol. 2004, 118 (7): 561-565.\nHirvonen TP, Ertama L: [An infected radicular cyst--a rare cause for facial cellulitis]. Duodecim; laaketieteellinen aikakauskirja. 1998, 114 (17): 1734-1736.\nTseng SK, Tsai YL, Li UM, Jeng JH: Radicular cyst with actinomycotic infection in an upper anterior tooth. J Formos Med Assoc. 2009, 108 (10): 808-813. 10.1016\u002FS0929-6646(09)60409-5.\nRamachandran Nair PN, Pajarola G, Schroeder HE: Types and incidence of human periapical lesions obtained with extracted teeth. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1996, 81 (1): 93-102. 10.1016\u002FS1079-2104(96)80156-9.\nBecconsall-Ryan K, Tong D, Love RM: Radiolucent inflammatory jaw lesions: a twenty-year analysis. Int Endod J. 2010, 43 (10): 859-865. 10.1111\u002Fj.1365-2591.2010.01751.x.\nMetin M, Tek M, Sener I: Comparison of two chlorhexidine rinse protocols on the incidence of alveolar osteitis following the surgical removal of impacted third molars. J Contemp Dent Pract. 2006, 7 (2): 79-86.\nMombelli A: Antimicrobial advances in treating periodontal diseases. Front Oral Biol. 2012, 15: 133-148.\nAkimoto Y, Kaneko K, Fujii A, Yamamoto H: Ampicillin concentrations in human radicular granuloma following a single oral dose of bacampicillin. J Oral Maxillofac Surg. 1992, 50 (1): 11-13. 10.1016\u002F0278-2391(92)90185-3.\nAkimoto Y, Mochizuki Y, Uda A, Shibutani J, Nishimura H, Komiya M, Kaneko K, Fujii A, Yamamoto H: Ampicillin concentrations in radicular cysts following a single oral administration of bacampicillin. Gen Pharmacol. 1993, 24 (4): 895-898. 10.1016\u002F0306-3623(93)90166-U.\nLewis MA, MacFarlane TW, McGowan DA: Quantitative bacteriology of acute dento-alveolar abscesses. J Med Microbiol. 1986, 21 (2): 101-104. 10.1099\u002F00222615-21-2-101.\nvon Konow L, Nord CE, Nordenram A: Anaerobic bacteria in dentoalveolar infections. Int J Oral Surg. 1981, 10 (5): 313-322. 10.1016\u002FS0300-9785(81)80027-0.\nLabriola JD, Mascaro J, Alpert B: The microbiologic flora of orofacial abscesses. J Oral Maxillofac Surg. 1983, 41 (11): 711-714. 10.1016\u002F0278-2391(83)90186-6.\nSklavounos A, Legakis NJ, Ioannidou H, Patrikiou A: Anaerobic bacteria in dentoalveolar abscesses. Int J Oral Maxillofac Surg. 1986, 15 (3): 288-291. 10.1016\u002FS0300-9785(86)80087-4.\nWilliams BL, McCann GF, Schoenknecht FD: Bacteriology of dental abscesses of endodontic origin. J Clin Microbiol. 1983, 18 (4): 770-774.\nWhiley RA, Beighton D, Winstanley TG, Fraser HY, Hardie JM: Streptococcus intermedius, Streptococcus constellatus, and Streptococcus anginosus (the Streptococcus milleri group): association with different body sites and clinical infections. J Clin Microbiol. 1992, 30 (1): 243-244.\nMejare B, Edwardsson S: Streptococcus milleri (Guthof); an indigenous organism of the human oral cavity. Arch Oral Biol. 1975, 20 (11): 757-762. 10.1016\u002F0003-9969(75)90048-5.\nPoole PM, Wilson G: Occurrence and cultural features of Streptococcus milleri in various body sites. J Clin Pathol. 1979, 32 (8): 764-768. 10.1136\u002Fjcp.32.8.764.\nRuoff KL, Kunz LJ: Identification of viridans streptococci isolated from clinical specimens. J Clin Microbiol. 1982, 15 (5): 920-925.\nUnsworth PF: The isolation of streptococci from human faeces. J Hyg (Lond). 1980, 85 (1): 153-164. 10.1017\u002FS0022172400027169.\nGossling J: Occurrence and pathogenicity of the Streptococcus milleri group. Rev Infect Dis. 1988, 10 (2): 257-285. 10.1093\u002Fclinids\u002F10.2.257.\nApproved Lists of Bacterial Names (Amended). Edited by: Skerman VBD, McGowan V, Sneath PHA. 1989, Washington (DC): ASM Press\nHan JK, Kerschner JE: Streptococcus milleri: an organism for head and neck infections and abscess. Arch Otolaryngol Head Neck Surg. 2001, 127 (6): 650-654. 10.1001\u002Farchotol.127.6.650.\nKowlessar PI, O'Connell NH, Mitchell RD, Elliott S, Elliott TS: Management of patients with Streptococcus milleri brain abscesses. J Infect. 2006, 52 (6): 443-450. 10.1016\u002Fj.jinf.2005.08.028.\nChua D, Reinhart HH, Sobel JD: Liver abscess caused by Streptococcus milleri. Rev Infect Dis. 1989, 11 (2): 197-202. 10.1093\u002Fclinids\u002F11.2.197.\nWong CA, Donald F, Macfarlane JT: Streptococcus milleri pulmonary disease: a review and clinical description of 25 patients. Thorax. 1995, 50 (10): 1093-1096. 10.1136\u002Fthx.50.10.1093.\nConcistre G, Chiaramonti F, Miceli A, Glauber M: Mitral and aortic valve endocarditis caused by a rare pathogen: Streptococcus constellatus. Interact Cardiovasc Thorac Surg. 2012, 14 (6): 889-890. 10.1093\u002Ficvts\u002Fivs032.\nTecson-Tumang F, Sen P, Kapila R: Fatal Streptococcus MG-intermedius (Streptococcus milleri) meningitis in an adult. Am J Clin Pathol. 1982, 77 (4): 480-484.\nHrvacanin S: [Bacteriologic study of the contents of radicular cysts]. Medicinski pregled. 2002, 55 (1–2): 41-43.\nSmego RA, Foglia G: Actinomycosis. Clin Infect Dis. 1998, 26 (6): 1255-1261. 10.1086\u002F516337. quiz 1262–1253\nBelmont MJ, Behar PM, Wax MK: Atypical presentations of actinomycosis. Head Neck. 1999, 21 (3): 264-268. 10.1002\u002F(SICI)1097-0347(199905)21:3\u003C264::AID-HED12>3.0.CO;2-Y.\nAguirrebengoa K, Romana M, Lopez L, Martin J, Montejo M, Gonzalez De Zarate P: [Oral and cervicofacial actinomycosis. Presentation of five cases]. Enfermedades infecciosas y microbiologia clinica. 2002, 20 (2): 53-56. 10.1016\u002FS0213-005X(02)72741-9.\nBhargava D, Bhusnurmath B, Sundaram KR, Raman R, Al Okbi HM, Al Abri R, Date A: Tonsillar actinomycosis: a clinicopathological study. Acta tropica. 2001, 80 (2): 163-168. 10.1016\u002FS0001-706X(01)00172-3.\nStewart MG, Sulek M: Pediatric actinomycosis of the head and neck. Ear Nose Throat J. 1993, 72 (9): 614-616. 618–619\nVolante M, Contucci AM, Fantoni M, Ricci R, Galli J: Cervicofacial actinomycosis: still a difficult differential diagnosis. Acta Otorhinolaryngol Ital. 2005, 25 (2): 116-119.\nHirshberg A, Tsesis I, Metzger Z, Kaplan I: Periapical actinomycosis: a clinicopathologic study. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2003, 95 (5): 614-620. 10.1067\u002Fmoe.2003.87.",{"EN":1057},"To detect predominant bacteria associated with radicular cysts and discuss in light of the literature. Clinical materials were obtained from 35 radicular cysts by aspiration. Cultures were made from clinical materials by modern laboratory techniques, they underwent microbiologic analysis. The following are microorganisms isolated from cultures: Streptococcus milleri Group (SMG) (23.8%) [Streptococcus constellatus (19.1%) and Streptococcus anginosus (4.7%)], Streptococcus sanguis (14.3%), Streptococcus mitis (4.7%), Streptococcus cremoris (4.7%), Peptostreptococcus pevotii (4.7%), Prevotella buccae (4.7%), Prevotella intermedia (4.7%), Actinomyces meyeri (4.7%), Actinomyces viscosus (4.7%), Propionibacterium propionicum (4.7%), Bacteroides capillosus (4.7%), Staphylococcus hominis (4.7%), Rothia denticariosa (4.7%), Gemella haemolysans (4.7%), and Fusobacterium nucleatum (4.7%). Results of this study demonstrated that radicular cysts show a great variety of anaerobic and facultative anaerobic bacterial flora. It was observed that all isolated microorganisms were the types commonly found in oral flora. Although no specific microorganism was found, Streptococcus spp. bacteria (47.5%) – especially SMG (23.8%) – were predominantly found in the microorganisms isolated. Furthermore, radicular cysts might be polymicrobial originated. Although radicular cyst is an inflammatory cyst, some radicular cyst fluids might be sterile.",{"EN":1059},"The predominant bacteria isolated from radicular cysts",{"VOID":1061},"10.1186\u002F1746-160X-9-25","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002F1746-160X-9-25",[1064,1079,1094,1109,1121,1133,1148],{"id":1065,"sortIndex":311,"researcher":18,"roles":1066,"affiliations":1067,"properties":1076},"6d838329-49e1-4863-8026-e1401210f70f",[217],[1068],{"id":18,"sortIndex":19,"affiliation":1069,"properties":18},{"id":1070,"createTime":1071,"updateTime":1071,"relativeEntities":1072,"slug":18,"properties":1073,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"ea50a05c-f676-4580-b6e2-1123615b527a","2023-12-13T12:53:34.673+00:00",[],{"title":1074},{"VI":1075},"Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Bezmialem Vakif University, İstanbul, Turkey",{"title":1077},{"VI":1078},"Seref Ezirganli",{"id":1080,"sortIndex":244,"researcher":18,"roles":1081,"affiliations":1082,"properties":1091},"001b57e0-e656-49c1-9baf-b44ba2f92317",[217],[1083],{"id":18,"sortIndex":19,"affiliation":1084,"properties":18},{"id":1085,"createTime":1086,"updateTime":1086,"relativeEntities":1087,"slug":18,"properties":1088,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"b9e0aaf1-87ae-4309-8594-7938391ea75f","2024-01-17T18:20:06.463+00:00",[],{"title":1089},{"VI":1090},"Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Ondokuz Mayis University, Samsun, Turkey",{"title":1092},{"VI":1093},"Ismail Sener",{"id":1095,"sortIndex":298,"researcher":18,"roles":1096,"affiliations":1097,"properties":1106},"257abd6c-720c-4229-87f3-e29489100838",[217],[1098],{"id":18,"sortIndex":19,"affiliation":1099,"properties":18},{"id":1100,"createTime":1101,"updateTime":1101,"relativeEntities":1102,"slug":18,"properties":1103,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"c44c0499-eaad-4407-b806-e7d887da5398","2023-12-07T14:00:25.439+00:00",[],{"title":1104},{"VI":1105},"Oral and Maxillofacial Surgen, Private Practitioner, Bursa, Turkey",{"title":1107},{"VI":1108},"Murat 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F, Ahlberg J, Raphael KG, Wetselaar P, Glaros AG, Kato T, et al. International consensus on the assessment of bruxism: report of a work in progress. J Oral Rehabil. 2018;45:837–44.\nLobbezoo F, Soucy JP, Hartman NG, Montplaisir JY, Lavigne GJ. Effects of the D2 receptor agonist bromocriptine on sleep bruxism: report of two single-patient clinical trials. J Dent Res. 1997;76:1610–4.\nKato T, Montplaisir JY, Guitard F, Sessle BJ, Lund JP, Lavigne GJ. Evidence that experimentally induced sleep bruxism is a consequence of transient arousal. J Dent Res. 2003;82:284–8.\nLavigne GJ, Kato T, Kolta A, Sessle BJ. Neurobiological mechanisms involved in sleep bruxism. Crit Rev Oral Biol Med. 2003;14:30–46.\nMascaro MB, Prosdocimi FC, Bittencourt JC, Elias CF. Forebrain projections to brainstem nuclei involved in the control of mandibular movements in rats. Eur J Oral Sci. 2009;117:676–84.\nSeraidarian P, Seraidarian PI, das Neves Cavalcanti B, Marchini L, Claro Neves AC. Urinary levels of catecholamines among individuals with and without sleep bruxism. Sleep Breath. 2009;13:85–8.\nWinocur E, Uziel N, Lisha T, Goldsmith C, Eli I. Self-reported bruxism - associations with perceived stress, motivation for control, dental anxiety and gagging. J Oral Rehabil. 2011;38:3–11.\nCarra MC, Bruni O, Huynh N. Topical review: sleep bruxism, headaches, and sleep-disordered breathing in children and adolescents. J Orofac Pain. 2012;26:267–76.\nHuang GJ, LeResche L, Critchlow CW, Martin MD, Drangsholt MT. Risk factors for diagnostic subgroups of painful temporomandibular disorders (TMD). J Dent Res. 2002;81:284–8.\nFernandes G, Franco AL, Siqueira JT, Goncalves DA, Camparis CM. Sleep bruxism increases the risk for painful temporomandibular disorder, depression and non-specific physical symptoms. J Oral Rehabil. 2012;39:538–44.\nMichelotti A, Cioffi I, Festa P, Scala G, Farella M. Oral parafunctions as risk factors for diagnostic TMD subgroups. J Oral Rehabil. 2010;37:157–62.\nGlaros AG, Williams K, Lausten L. The role of parafunctions, emotions and stress in predicting facial pain. J Am Dent Assoc. 2005;136:451–8.\nJanal MN, Raphael KG, Klausner J, Teaford M. The role of tooth-grinding in the maintenance of myofascial face pain: a test of alternate models. Pain Med. 2007;8:486–96.\nRamirez-Maestre C, Lopez Martinez AE, Zarazaga RE. Personality characteristics as differential variables of the pain experience. J Behav Med. 2004;27:147–65.\nLoggia ML, Mogil JS, Bushnell MC. Experimentally induced mood changes preferentially affect pain unpleasantness. J Pain. 2008;9:784–91.\nWiderstrom-Noga E, Dyrehag LE, Borglum-Jensen L, Aslund PG, Wenneberg B, Andersson SA. Pain threshold responses to two different modes of sensory stimulation in patients with orofacial muscular pain: psychologic considerations. J Orofac Pain. 1998;12:27–34.\nGeisser ME, Roth RS, Theisen ME, Robinson ME, Riley JL, 3rd. Negative affect, self-report of depressive symptoms, and clinical depression: relation to the experience of chronic pain. Clin J Pain 2000;16:110–120.\nLitt MD, Shafer D, Napolitano C. Momentary mood and coping processes in TMD pain. Health Psychol. 2004;23:354–62.\nReissmann DR, John MT, Schierz O, Seedorf H, Doering S. Stress-related adaptive versus maladaptive coping and temporomandibular disorder pain. J Orofac Pain. 2012;26:181–90.\nTurner JA, Brister H, Huggins K, Mancl L, Aaron LA, Truelove EL. Catastrophizing is associated with clinical examination findings, activity interference, and health care use among patients with temporomandibular disorders. J Orofac Pain. 2005;19:291–300.\nBayar GR, Tutuncu R, Acikel C. Psychopathological profile of patients with different forms of bruxism. Clin Oral Investig. 2012;16:305–11.\nSchneider C, Schaefer R, Ommerborn MA, Giraki M, Goertz A, Raab WH, et al. Maladaptive coping strategies in patients with bruxism compared to non-bruxing controls. Int J Behav Med. 2007;14:257–61.\nLautenbacher S. Schmerzmessung. In: Kröner-Herwig B, Frettlöh J, Klinger R, Nilges P, editors. Schmerzpsychotherapie Grundlagen – Diagnostik – Krankheitsbilder – Behandlung. 6th ed. Heidelberg: Springer; 2007. p. 275–92.\nOmmerborn MA, Schneider C, Giraki M, Schafer R, Handschel J, Franz M, et al. Effects of an occlusal splint compared with cognitive-behavioral treatment on sleep bruxism activity. Eur J Oral Sci. 2007;115:7–14.\nHiller W, Zaudig M, Mombour WIDCL. Internationale Diagnose Checklisten für ICD-10 und DSM IV. Bern: Huber; 1995.\nLavigne GJ, Rompre PH, Montplaisir JY. Sleep bruxism: validity of clinical research diagnostic criteria in a controlled polysomnographic study. J Dent Res. 1996;75:546–52.\nOmmerborn MA, Giraki M, Schneider C, Schäfer R, Gotter A, Franz M, et al. A new analyzing method for quantification of abrasion on the Bruxcore device for sleep bruxism diagnosis. J Orofac Pain. 2005;19:232–8.\nOmmerborn MA, Schneider C, Giraki M, Schafer R, Singh P, Franz M, et al. In vivo evaluation of noncarious cervical lesions in sleep bruxism subjects. J Prosthet Dent. 2007;98:150–8.\nAmerican Academy of Sleep Medicine. The international classification of sleep disorders, revised: diagnostic and coding manual. 2nd ed. Westchester: American Academy of Sleep Med; 2005.\nAmerican Academy of Sleep Med The international classification of sleep disorders, revised: diagnostic and coding manual. Rochester: American Academy of Sleep Medicine; 2001.\nJohansson A, Haraldson T, Omar R, Kiliaridis S, Carlsson GE. A system for assessing the severity and progression of occlusal tooth wear. J Oral Rehabil. 1993;20:125–31.\nLavigne GJ, Manzini C. Bruxism. In: Kryger MH, Roth T, Dement WC, editors. Principles and practice of sleep medicine. 3rd ed. Philadelphia: WB Saunders; 2000. p. 773–85.\nLavigne GJ, Khoury S, Abe S, Yamaguchi T, Raphael K. Bruxism physiology and pathology: an overview for clinicians. J Oral Rehabil. 2008;35:476–94.\nKaluza G. Gelassen und sicher im Stress. Psychologisches Programm zur Gesundheitsförderung. Berlin: Springer; 1986.\nBernstein DA, Borkovec TD. Entspannungstraining. Handbuch der 'progressiven Muskelentspannung' nach Jacobson. Stuttgart: Klett Cotta; 2002.\nJacobson E. Progressive relaxation. Chicago: University of Chicago Press; 1938.\nAsh MM, Schmidseder J, editors. Schienentherapie. 3rd ed. München: Urban & Fischer; 2004.\nGeissner E. Die Schmerzempfindungsskala SES. Göttingen: Hogrefe; 1996.\nKröner-Herwig B, Lautenbacher S. Schmerzmessung und klinische Diagnostik. In: Kröner-Herwig B, Frettlöh J, Klinger R, Nilges P, editors. Schmerzpsychotherapie Grundlagen – Diagnostik – Krankheitsbilder – Behandlung. 7th ed. Heidelberg: Springer; 2011. p. 295–318.\nOmmerborn MA, Giraki M, Schneider C, Fuck LM, Handschel J, Franz M, et al. Effects of sleep bruxism on functional and occlusal parameters: a prospective controlled investigation. Int J Oral Sci. 2012;4:141–5.\nGerber A, Steinhardt G. Disturbed biomechanics of the temporomandibular joint. In: Gerber A, Steinhardt G, editors. Dental occlusion and the temporomandibular joint. Chicago: quintessence publishing co Inc; 1990. p. 27–47.\nGreenhouse SW, Geisser S. On methods in the analysis of profile data. Psychometrika. 1959;24:95–112.\nCohen J. Statistical power analysis for the behavioral sciences. 2nd ed. Hillsdale: Lawrence Erlbaum Associates; 1988.\nSchmuth G. Befunderhebung und Systematik in der Kieferorthopädie. In: Schmuth G, editor. Kieferorthopädie - Praxis der Zahnheilkunde 11. 3rd ed. München: Urban & Schwarzenberg; 1994. p. 1–48.\nLobbezoo F, Rompre PH, Soucy JP, Iafrancesco C, Turkewicz J, Montplaisir JY, et al. Lack of associations between occlusal and cephalometric measures, side imbalance in striatal D2 receptor binding, and sleep-related oromotor activities. J Orofac Pain. 2001;15:64–71.\nOmmerborn MA, Giraki M, Schneider C, Fuck LM, Zimmer S, Franz M, et al. Clinical significance of sleep bruxism on several occlusal and functional parameters. Cranio. 2010;28:238–48.\nRaigrodski AJ, Mohamed SE, Gardiner DM. The effect of amitriptyline on pain intensity and perception of stress in bruxers. J Prosthodont. 2001;10:73–7.\nJohn MT, Frank H, Lobbezoo F, Drangsholt M, Dette KE. No association between incisal tooth wear and temporomandibular disorders. J Prosthet Dent. 2002;87:197–203.\nLobbezoo F, Ahlberg J, Glaros AG, Kato T, Koyano K, Lavigne GJ, et al. Bruxism defined and graded: an international consensus. J Oral Rehabil. 2013;40:2–4.\nLoggia ML, Schweinhardt P, Villemure C, Bushnell MC. Effects of psychological state on pain perception in the dental environment. J Can Dent Assoc. 2008;74:651–6.\nDerogatis LR, Lipman RS, Covi L. SCL-90: an outpatient psychiatric rating scale--preliminary report. Psychopharmacol Bull. 1973;9:13–28.\nFranke G, Stäcker KH. Reliabilität und Validität der Symptom-Check-Liste (SCL-90-R; Derogatis, 1986) bei Standardreihenfolge versus inhaltshomogener Itemblockbildung. Diagnostica. 1995;41:349–73.\nBracha HS, Ralston TC, Williams AE, Yamashita JM, Bracha AS. The clenching-grinding spectrum and fear circuitry disorders: clinical insights from the neuroscience\u002Fpaleoanthropology interface. CNS Spectr. 2005;10:311–8.\nGiraki M, Schneider C, Schafer R, Singh P, Franz M, Raab WH, et al. Correlation between stress, stress-coping and current sleep bruxism. Head Face Med. 2010;6:2.\nHori N, Lee MC, Sasaguri K, Ishii H, Kamei M, Kimoto K, et al. Suppression of stress-induced nNOS expression in the rat hypothalamus by biting. J Dent Res. 2005;84:624–8.\nSlavicek R, Sato S. Bruxism--a function of the masticatory organ to cope with stress. Wien Med Wochenschr. 2004;154:584–9.\nMehta NR, Forgione AG, Maloney G, Greene R. Different effects of nocturnal parafunction on the masticatory system: the weak link theory. Cranio. 2000;18:280–6.\nHodges PW. Pain and motor control: from the laboratory to rehabilitation. J Electromyography and Kinesiology. 2011;21:220–8.\nHodges PW, Tucker K. Moving differently in pain: a new theory to explain the adaptation to pain. Pain. 2011;152(Suppl 3):90–8.\nMurray GM, Peck CC. Orofacial pain and jaw muscle activity: a new model. J Orofac Pain. 2007;21:263–78 discussion 279-88.",{"EN":1207},"This study was conducted to assess the individual pain perception in sleep bruxism (SB) subjects. Moreover, the effects of a cognitive behavioural therapy (CBT) compared to an occlusal appliance (OA) on pain perception and a possible continuative impact on several functional parameters were investigated. A total of 57 SB subjects participated in this investigation. The diagnosis of SB was based on the clinical criteria of the American Academy of Sleep Medicine (AASM). Twenty-eight SB subjects were randomly allocated to the CBT group and 29 to the OA group. The therapeutic intervention took place over a period of 12 weeks, whereby both groups were examined at baseline, immediately after termination of the intervention, and at a 6-month follow-up for pain perception and functional parameters. At each of the three measurement periods, participants completed the pain perception scale and ten functional\u002Focclusal parameters were recorded. Of the 12 parameters recorded, statistically significant main effects were found for the affective pain perception (p \u003C 0.05) and for the three functional variables. Interestingly, the values obtained for the affective pain perception were considerably below that of a reference group. Apart from the determined statistically significant results, the values recorded for all functional\u002Focclusal variables as well as those obtained for the sensory pain perception were clearly located within normative ranges. Within the limitations of this study, it might be concluded that the significantly reduced affective pain perception in SB subjects is the expression of an adaptation mechanism.",{"EN":1209},"Pain perception and functional\u002Focclusal parameters in sleep bruxism subjects following a therapeutic intervention",{"VOID":1211},"10.1186\u002Fs13005-019-0188-6","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002Fs13005-019-0188-6",[1214,1229,1241,1256,1268,1283,1295],{"id":1215,"sortIndex":19,"researcher":18,"roles":1216,"affiliations":1217,"properties":1226},"869a29f5-9e4a-46c2-a352-728029ede2e8",[217],[1218],{"id":18,"sortIndex":19,"affiliation":1219,"properties":18},{"id":1220,"createTime":1221,"updateTime":1221,"relativeEntities":1222,"slug":18,"properties":1223,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"630a2f83-948d-4543-816c-01dea21dff68","2024-02-05T23:40:46.694+00:00",[],{"title":1224},{"VI":1225},"Department of Operative Dentistry, Periodontics, and Endodontics, Faculty of Medicine, Heinrich-Heine-University, Düsseldorf, Germany",{"title":1227},{"VI":1228},"Michelle Alicia 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DL, Richardson WS, Rosenberg WMC, Haynes RB: Evidence-Based Medicine. How to practice and teach EBM. 2000, Edinburgh: Churchill Livingstone, 2\nMarbach JJ, Raphael KG: Future directions in the treatment of chronic musculoskeletal facial pain. The role of evidence based care. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997, 83: 170-176. 10.1016\u002FS1079-2104(97)90110-4.\nAl-Ani MZ, Davies SJ, Gray RJM, Sloan P, Glenny AM: Stabilization splint therapy for temporomandibular pain dysfunction syndrome. The Cochrane Database of Systematic Reviews [website]. 2004, The Cochrane Library, Oxford: England, 1\nForssell H, Kalso F: Application of the principles of evidence-based medicine to occlusal treatment for temporomandibular disorders: are there lesions to be learned?. J Orofac Pain. 2004, 18: 9-22. discussion 23–32.\nAsh MM: Paradigmatic shifts in occlusion and temporomandibular disorders. J Oral Rehabil. 2001, 72: 1124-32.\nAsh MM: Occlusion: reflections on science and clinical reality. J Prosthet Dent. 2003, 90: 373-384. 10.1016\u002FS0022-3913(03)00453-0.\nAsh MM: Occlusal adjustment: quo vadis?. Cranio. 2003, 21 (1): 1-4.\nDe Boever JA, Carlsson GE, Klineberg IJ: Need for occlusal therapy and prosthodontic treatment in the management of temporomandibular disorders. Part I. Occlusal interferences and occlusal adjustment. J Oral Rehabil. 2000, 27: 367-379. 10.1046\u002Fj.1365-2842.2000.00574.x.\nAsh MM: Schienentherapie 3rd edition (German). 2006, München: Urban & Fischer, Chapt. 10:\nAsh MM, Ramfjord SP: Occlusion. 1995, Philadelphia: WB Saunders, 4",{"EN":1350},"The paradigmatic shift to evidence-based dentistry (EBD) that relates to occlusal therapy, selective occlusal adjustment (OA) and stabilization splints therapy (SS) for TMDs has had an unfavourable impact on the teaching of many of the important aspects of occlusion needed in dental practice. The teaching of OA systematically in dental schools has been nearly abandoned because of the belief that OA is an irreversible procedure and gives the impression that it is without merit elsewhere in the management of occlusion. However, a particular dose of knowledge and practice of occlusion that is necessary for all aspects of dental care should be taught systematically in dental schools. The uses and misuses of OA and SS and their limitations should be emphasized because of their importance to bring clinical reality into the dental curriculum. Thus, and irrespective of EBD induced contradictions, OA and SS should still have a significant place in systematically teaching of occlusal therapy. However, there are many more aspects of the management of occlusion that should to be considered. Hopefully, because of their importance, other aspects of the management of occlusion will once again become a significant part of the dental curriculum.",{"EN":1352},"Occlusion, TMDs, and dental education",{"VOID":1354},"10.1186\u002F1746-160X-3-1","https:\u002F\u002Fhead-face-med.biomedcentral.com\u002Farticles\u002F10.1186\u002F1746-160X-3-1",[1357],{"id":1358,"sortIndex":19,"researcher":18,"roles":1359,"affiliations":1360,"properties":1369},"c2d1ca76-43a9-4061-b459-32e76bd9a5df",[217],[1361],{"id":18,"sortIndex":19,"affiliation":1362,"properties":18},{"id":1363,"createTime":1364,"updateTime":1364,"relativeEntities":1365,"slug":18,"properties":1366,"entityType":62,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"694c60cc-99c2-4611-b280-496412f2c169","2024-02-06T23:38:44.949+00:00",[],{"title":1367},{"VI":1368},"Professor and research scientist, emeritus, University of Michigan, USA",{"title":1370},{"VI":1371},"Major M Ash",{"url":1355,"publisher":1373,"properties":1400},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1374,"slug":10,"properties":1375,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1378,"manageAffiliations":1379,"indexDatabases":1380,"url":18,"thumbnailPath":18,"statistic":1395,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"eissn":1376,"title":1377},{"VOID":13},{"EN":15},[],[],[1381,1388],{"id":100,"indexDatabase":1382,"url":115,"indexYears":18,"academicFieldIds":1387,"indexDatabaseRanking":18},{"id":102,"createTime":103,"updateTime":104,"relativeEntities":1383,"label":1384,"description":1385,"key":111,"publicationTags":1386,"standard":18},[],{"EN":107,"VI":107},{"VI":109,"EN":110},[113,114],[117],{"id":78,"indexDatabase":1389,"url":91,"indexYears":92,"academicFieldIds":1394,"indexDatabaseRanking":98},{"id":80,"createTime":81,"updateTime":82,"relativeEntities":1390,"label":1391,"description":1392,"key":88,"publicationTags":1393,"standard":18},[],{"EN":85,"VI":85},{"EN":85,"VI":87},[90],[94,95,96,97],{"impactFactor":19,"impactFactorByYear":1396,"i10Index":132,"i10IndexLast5Year":133,"totalPublication":134,"totalPublicationByYear":1397,"totalCitation":152,"totalCitationByYear":1398,"totalCitationPerPublication":171,"totalCitationPerPublicationByYear":1399,"hindexLast5Year":145,"hindex":145},{"2012":120,"2013":121,"2014":122,"2015":123,"2016":124,"2017":125,"2018":126,"2019":127,"2020":128,"2021":129,"2022":130,"2023":131},{"2005":136,"2006":137,"2007":138,"2008":139,"2009":139,"2010":140,"2011":141,"2012":142,"2013":143,"2014":144,"2015":143,"2016":145,"2017":146,"2018":147,"2019":148,"2020":139,"2021":149,"2022":150,"2023":151,"2024":147},{"2005":154,"2006":155,"2007":156,"2008":157,"2009":158,"2010":159,"2011":160,"2012":161,"2013":162,"2014":163,"2015":164,"2016":165,"2017":166,"2018":167,"2019":140,"2020":168,"2021":169,"2022":170},{"2005":173,"2006":174,"2007":171,"2008":175,"2009":176,"2010":177,"2011":178,"2012":179,"2013":180,"2014":181,"2015":182,"2016":183,"2017":184,"2018":185,"2019":186,"2020":187,"2021":188,"2022":189},{"volume":1401,"pages":1403},{"VOID":1402},"3",{"VOID":1404},"1-4","2007-01-03",2007,{"id":1408,"createTime":1409,"updateTime":1410,"relativeEntities":1411,"slug":1412,"properties":1413,"entityType":209,"verifyStatus":210,"verifyTime":1410,"verifyNote":211,"syncStatus":17,"languages":1429,"translateLanguages":18,"viewCount":19,"primaryUrl":1431,"fullTextUrl":18,"authors":1432,"publicationType":335,"publisherRelationship":1503,"citationCount":1531,"citationInfo":1532,"publishDate":1534,"publishYear":1535,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":1536,"isForceReanalyzing":371},"81384351-e685-44f7-8f8e-059f638070df","2024-04-15T23:27:06.962+00:00","2024-12-25T23:37:17.267+00:00",[],"Palatal-development-of-preterm-and-low-birthweight-infants-compared-to-term-infants-What-do-we-know-Part-1-The-palate-of-the-term-newborn",{"mag":1414,"keywords":1416,"pmc":1417,"openalex":1419,"abstract":1421,"title":1423,"pm":1425,"doi":1427},{"VOID":1415},"1593109141",{},{"VOID":1418},"1308841",{"VOID":1420},"W1593109141",{"EN":1422},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:sec>\u003Cjats:title>Background\u003C\u002Fjats:title>\u003Cjats:p>The evidence on prematurity as 'a priori' a risk for palatal disturbances that increase the need for orthodontic or orthognathic treatment is still weak. Further well-designed clinical studies are needed. The objective of this review is to provide a fundamental analysis of methodologies, confounding factors, and outcomes of studies on palatal development. One focus of this review is the analysis of studies on the palate of the term newborn, since knowing what is 'normal' is a precondition of being able to assess abnormalities.\u003C\u002Fjats:p>\u003C\u002Fjats:sec>\u003Cjats:sec>\u003Cjats:title>Methods\u003C\u002Fjats:title>\u003Cjats:p>A search profile based on Cochrane search strategies applied to 10 medical databases was used to identify existing studies. Articles, mainly those published before 1960, were identified from hand searches in textbooks, encyclopedias, reference lists and bibliographies. Sources in English, German, and French of more than a century were included. Data for term infants were recalculated if particular information about weight, length, or maturity was given. The extracted values, especially those from non-English paper sources, were provided unfiltered for comparison.\u003C\u002Fjats:p>\u003C\u002Fjats:sec>\u003Cjats:sec>\u003Cjats:title>Results\u003C\u002Fjats:title>\u003Cjats:p>The search strategy yielded 182 articles, of which 155 articles remained for final analysis. Morphology of the term newborn's palate was of great interest in the first half of the last century. Two general methodologies were used to assess palatal morphology: visual and metrical descriptions. Most of the studies on term infants suffer from lack of reliability tests. The groove system was recognized as the distinctive feature of the infant palate. The shape of the palate of the term infant may vary considerably, both visually and metrically. Gender, race, mode of delivery, and nasal deformities were identified as causes contributing to altered palatal morphology. Until today, anatomical features of the newborn's palate are subject to a non-uniform nomenclature.\u003C\u002Fjats:p>\u003C\u002Fjats:sec>\u003Cjats:sec>\u003Cjats:title>Conclusion\u003C\u002Fjats:title>\u003Cjats:p>Today's knowledge of a newborn's 'normal' palatal morphology is based on non-standardized and limited methodologies for measuring a three-dimensional shape. This shortcoming increases bias and is the reason for contradictory research results, especially if pathologic conditions like syndromes or prematurity are involved. Adequate measurement techniques are needed and the 'normal palatal morphology' should be defined prior to new clinical studies on palatal development.\u003C\u002Fjats:p>\u003C\u002Fjats:sec>",{"EN":1424},"Palatal development of preterm and low birthweight infants compared to term infants – What do we know? 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Neonatology: Pathophysiology and Management of the Newborn. Edited by: Avery G. 1981, Philadephia: JB Lippincott, 2",{},{"id":18,"text":1541,"url":18,"identifiers":1542},"Seow WK, Masel JP, Weir C, Tudehope DI: Mineral deficiency in the pathogenesis of enamel hypoplasia in prematurely born, very low birthweight children. Pediatr Dent. 1989, 11: 297-302.",{},{"id":18,"text":1544,"url":18,"identifiers":1545},"Garbe W: Das Frühchen – Buch. 1997, Stuttgart: Thieme",{},{"id":18,"text":1547,"url":18,"identifiers":1548},"Fearne JM, Brook AH: Small primary tooth-crown size in low birthweight children. Early Hum Dev. 1993, 33: 81-90. 10.1016\u002F0378-3782(93)90203-7.",{"doi":1549},"10.1016\u002F0378-3782(93)90203-7",{"id":18,"text":1551,"url":18,"identifiers":1552},"Evaldson G, Lagrelius A, Winiarski J: Premature rupture of the membranes. Acta Obstet Gynecol Scand. 1980, 59: 385-393.",{"doi":1553},"10.3109\u002F00016348009155416",{"id":18,"text":1555,"url":18,"identifiers":1556},"Klinisches Wörterbuch: Psychrembel. 1990, Berlin: W de Gruyter , 256",{},{"id":18,"text":1558,"url":18,"identifiers":1559},"Copper RL, Goldenberg RL, Das A, Elder N, Swain M, Norman G, Ramsey R, Cotroneo P, Collins BA, Johnson F, Jones P, Meier AM: The preterm prediction study: maternal stress is associated with spontaneous preterm birth at less than thirty-five weeks' gestation. National Institute of Child Health and Human Development Maternal-Fetal Medicine Units Network. Am J Obstet Gynecol. 1996, 175: 1286-1292. 10.1016\u002FS0002-9378(96)70042-X.",{"doi":1560},"10.1016\u002FS0002-9378(96)70042-X",{"id":18,"text":1562,"url":18,"identifiers":1563},"Walker BR, McConnachie A, Noon JP, Webb DJ, Watt GC: Contribution of parental blood pressures to association between low birth weight and adult high blood pressure: cross sectional study. BMJ. 1998, 316: 834-837.",{"doi":1564},"10.1136\u002Fbmj.316.7134.834",{"id":18,"text":1566,"url":18,"identifiers":1567},"Hillier SL, Nugent RP, Eschenbach DA, Krohn MA, Gibbs RS, Martin DH, Cotch MF, Edelman R, Pastorek JGn, Rao AV: Association between bacterial vaginosis and preterm delivery of a low-birth-weight infant. The Vaginal Infections and Prematurity Study Group. 1995",{},{"id":18,"text":1569,"url":18,"identifiers":1570},"Boyd DL, Katz V, Ferktik GS, Offenbacher S: Relationship between periodontal disease status and birth outcome [abstract]. J Dent Res. 1994, 73: s394-",{},{"id":18,"text":1572,"url":18,"identifiers":1573},"Collins G, Windley HW, Arnold RR, Offenbacher S: Effects of a Porphyromonas gingivalis infection on inflammatory mediator response and pregnancy outcome in hamsters. Infect Immun. 1994, 62: 4356-4361.",{"doi":1574},"10.1128\u002Fiai.62.10.4356-4361.1994",{"id":18,"text":1576,"url":18,"identifiers":1577},"Windley HW, Collins JG, Arnold RR, Offenbacher S: Molecular mechanisms of P. gingivalis-induced pregnacy abnormalties in hamster model [abstract]. J Dent Res. 1994, 189: s702-",{},{"id":18,"text":1579,"url":18,"identifiers":1580},"Offenbacher S, Katz V, Fertik G, Collins J, Boyd D, Maynor G, McKaig R, Beck J: Periodontal infection as a possible risk factor for preterm low birth weight. J Periodontol. 1996, 1103-1113. Suppl 67",{"doi":1581},"10.1902\u002Fjop.1996.67.10s.1103",{"id":18,"text":1583,"url":18,"identifiers":1584},"Lopez NJ, Smith PC, Gutierrez J: Higher risk of preterm birth and low birth weight in women with periodontal disease. J Dent Res. 2002, 81: 58-63.",{"doi":1585},"10.1177\u002F002203450208100113",{"id":18,"text":1587,"url":18,"identifiers":1588},"Davenport ES, Williams CECS, Sterne JAC, Murad S, Sivapathasundram V, Curtis MA: Maternal periodontal disease and preterm low birthweight: case-control study. J Dent Res. 2002, 81: 313-8.",{"doi":1589},"10.1177\u002F154405910208100505",{"id":18,"text":1591,"url":18,"identifiers":1592},"Kovar IZ, Mayne PD, Robbe I: Hypophosphataemic rickets in the preterm infant; hypocalcaemia after calcium and phosphorus supplementation. Arch Dis Child. 1983, 58: 629-631.",{"doi":1593},"10.1136\u002Fadc.58.8.629",{"id":18,"text":1595,"url":18,"identifiers":1596},"Seino Y, Ishii T, Shimotsuji T, Ishida M, Yabuuchi H: Plasma active vitamin D concentration in low birthweight infants with rickets and its response to vitamin D treatment. Arch Dis Child. 1981, 56: 628-632.",{"doi":1597},"10.1136\u002Fadc.56.8.628",{"id":18,"text":1599,"url":18,"identifiers":1600},"Harris EF, Barcroft BD, Haydar S, Haydar B: Delayed tooth formation in low birthweight African-American children. Pediatr Dent. 1993, 15: 30-35.",{},{"id":18,"text":1602,"url":18,"identifiers":1603},"Seow WK, Brown JP, Tudehope DI, O'Callaghan M: Developmental defects in the primary dentition of low birth-weight infants: adverse effects of laryngoscopy and prolonged endotracheal intubation. Pediatr Dent. 1984, 6: 28-31.",{},{"id":18,"text":1605,"url":18,"identifiers":1606},"Burns Y, Rogers Y, Neil M: Development of oral function in pre-term infants. Physiother Pract. 1987, 3: 168-178.",{"doi":1607},"10.3109\u002F09593988709044182",{"id":18,"text":1609,"url":18,"identifiers":1610},"Rickards AL, Ford GW, Kitchen WH, Doyle LW, Lissenden JV, Keith CG: Extremely-low-birthweight infants: neurological, psychological, growth and health status beyond five years of age. Med J Aust. 1987, 147: 476-481.",{"doi":1611},"10.5694\u002Fj.1326-5377.1987.tb133638.x",{"id":18,"text":1613,"url":18,"identifiers":1614},"Eight-year outcome in infants with birth weight of 500 to 999 grams: continuing regional study of 1979 and 1980 births. Victorian Infant Collaborative Study Group. J Pediatr. 1991, 118: 761-767.",{"doi":1615},"10.1016\u002FS0022-3476(05)80044-7",{"id":18,"text":1617,"url":18,"identifiers":1618},"Escobar GJ, Littenberg B, Petitti DB: Outcome among surviving very low birthweight infants: a meta-analysis. Arch Dis Child. 1991, 66: 204-211.",{"doi":1619},"10.1136\u002Fadc.66.2.204",{"id":18,"text":1621,"url":18,"identifiers":1622},"Fadavi S, Adeni S, Dziedzic K, Punwani I, Vidyasagar D: The oral effects of orotracheal intubation in prematurely born preschoolers. ASDC J Dent Child. 1992, 59: 420-424.",{},{"id":18,"text":1624,"url":18,"identifiers":1625},"Leighton BC: A preliminary study of the morphology of the upper gum pad at the age of 6 months. Swed Dent J. 1982, 115-122. Suppl 15",{},{"id":18,"text":1627,"url":18,"identifiers":1628},"McCormick MC: The contribution of low birth weight to infant mortality and childhood morbidity. N Engl J Med. 1985, 312: 82-90.",{"doi":1629},"10.1056\u002FNEJM198501103120204",{"id":18,"text":1631,"url":18,"identifiers":1632},"Kim Seow W, Tudehope DI, Brown JP, O'Callaghan M: Effect of neonatal laryngoscopy and endotracheal intubation on palatal symmetry in two- to five-year old children. Pediatr Dent. 1985, 7: 30-36.",{},{"id":18,"text":1634,"url":18,"identifiers":1635},"Morris KM, Seow WK, Burns YR: Palatal measurements of prematurely born, very low birth weight infants: comparison of three methods. Am J Orthod Dentofacial Orthop. 1993, 103: 368-373.",{"doi":1636},"10.1016\u002F0889-5406(93)70019-K",{"id":18,"text":1638,"url":18,"identifiers":1639},"Viscardi RM, Romberg E, Abrams RG: Delayed primary tooth eruption in premature infants: relationship to neonatal factors. Pediatr Dent. 1994, 16: 23-28.",{},{"id":18,"text":1641,"url":18,"identifiers":1642},"Davidson S, Schrayer A, Wielunsky E, Krikler R, Lilos P, Reisner SH: Energy intake, growth, and development in ventilated very-low-birth-weight infants with and without bronchopulmonary dysplasia. Am J Dis Child. 1990, 144: 553-559.",{},{"id":18,"text":1644,"url":18,"identifiers":1645},"Hack M, Breslau N, Weissman B, Aram D, Klein N, Borawski E: Effect of very low birth weight and subnormal head size on cognitive abilities at school age. N Engl J Med. 1991, 325: 231-237.",{"doi":1646},"10.1056\u002FNEJM199107253250403",{"id":18,"text":1648,"url":18,"identifiers":1649},"Vaucher YE, Harker L, Merritt TA, Hallman M, Gist K, Bejar R, Heldt GP, Edwards D, Pohjavuori M: Outcome at twelve months of adjusted age in very low birth weight infants with lung immaturity: a randomized, placebo-controlled trial of human surfactant. J Pediatr. 1993, 122: 126-132.",{"doi":1650},"10.1016\u002FS0022-3476(05)83505-X",{"id":18,"text":1652,"url":18,"identifiers":1653},"Bosma JF: Examination of the mouth and pharynx of the infant. Proceedings: The comprehensive management of infants at risk for CNS deficits. Edited by: Heriza C. 1974, Department of Medical Allied Health Professions, University of North Carolina, Chapel Hill",{},{"id":18,"text":1655,"url":18,"identifiers":1656},"Palmer B: The influence of breast feeding on the development of the oral cavity. J Hum Lactat. 1998, 14: 93-98.",{"doi":1657},"10.1177\u002F089033449801400203",{"id":18,"text":1659,"url":18,"identifiers":1660},"Pirttiniemi P, Grön M, Alvesalo L, Heikkinen T, Osborne R: Relationship of difficult forceps delivery to dental arches and occlusion. Pediatr Dent. 1994, 16: 289-293.",{},{"id":18,"text":1662,"url":18,"identifiers":1663},"Paulsson L, Bondemark L, Soderfeldt B: A systematic review of the consequences of premature birth on palatal morphology, dental occlusion, tooth-crown dimensions, and tooth maturity and eruption. Angle Orthod. 2004, 74: 269-279.",{},{"id":18,"text":1665,"url":18,"identifiers":1666},"Jones DR: Meta-analysis of observational epidemiological studies: a review. J R Soc Med. 1992, 85: 165-168.",{},{"id":18,"text":1668,"url":18,"identifiers":1669},"Derks A, Katsaros C, Frencken JE, van't Hof MA, Kuijpers-Jagtman AM: Caries-inhibiting effect of preventive measures during orthodontic treatment with fixed appliances. A systematic review. Caries Res. 2004, 38: 413-420. 10.1159\u002F000079621.",{"doi":1670},"10.1159\u002F000079621",{"id":18,"text":1672,"url":18,"identifiers":1673},"O'Neill J: Little evidence exists about optimal caries-prevention strategies during orthodontic treatment. Evid Based Dent. 2004, 5: 97-10.1038\u002Fsj.ebd.6400300.",{"doi":1674},"10.1038\u002Fsj.ebd.6400300",{"id":18,"text":1676,"url":18,"identifiers":1677},"Lagravere MO, Major PW, Flores-Mir C: Long-term dental arch changes after rapid maxillary expansion treatment: a systematic review. Angle Orthod. 2005, 75: 155-161.",{},{"id":18,"text":1679,"url":18,"identifiers":1680},"Lagravere MO, Major PW, Flores-Mir C: Skeletal and dental changes with fixed slow maxillary expansion treatment: a systematic review. J Am Dent Assoc. 2005, 136: 194-199.",{"doi":1681},"10.14219\u002Fjada.archive.2005.0141",{"id":18,"text":1683,"url":18,"identifiers":1684},"Hunt O, Burden D, Hepper P, Johnston C: The psychosocial effects of cleft lip and palate: a systematic review. Eur J Orthod. 2005, 27: 274-285. 10.1093\u002Fejo\u002Fcji004.",{"doi":1685},"10.1093\u002Fejo\u002Fcji004",{"id":18,"text":1687,"url":18,"identifiers":1688},"Benson PE, Shah AA, Millett DT, Dyer F, Parkin N, Vine RS: Fluorides, orthodontics and demineralization: a systematic review. J Orthod. 2005, 32: 102-114. 10.1179\u002F146531205225021033.",{"doi":1689},"10.1179\u002F146531205225021033",{"id":18,"text":1691,"url":18,"identifiers":1692},"Greenhalgh T: How to read a paper. The medline database. BMJ. 1997, 315: 180-183.",{"doi":1693},"10.1136\u002Fbmj.315.7101.180",{"id":18,"text":1695,"url":18,"identifiers":1696},"Greenhalgh T: How to read a paper. Papers that summerize other papers [systemtic reviews and meta-analyses]. BMJ. 1997, 315: 672-675.",{"doi":1697},"10.1136\u002Fbmj.315.7109.672",{"id":18,"text":1699,"url":18,"identifiers":1700},"Stamm T, Hohoff A: Nonlinear behavior of search strategies for identifying relevant orthodontic articles. Angle Orthod. 2004, 74: 316-318.",{},{"id":18,"text":1702,"url":18,"identifiers":1703},"Ashley-Montagu MF: The form and dimension of the palate in the newborn. Int J Orthod Dent Child. 1934, 20: 694-827. 10.1016\u002FS0097-0522(34)90177-5.",{"doi":1704},"10.1016\u002FS0097-0522(34)90177-5",{"id":18,"text":1706,"url":18,"identifiers":1707},"Hall J, Froster-Iskenius U, Allanson J: Handbook of normal physical measurements. 1989, Oxford, New York, Toronto: Oxford University Press",{},{"id":18,"text":1709,"url":18,"identifiers":1710},"Miethke R: Zur intrauterinen Entwicklung der Kiefer und Lippen bei menschlichen Feten von der 17. bis zur 42. Woche. Habilitationsschriften der Zahn- Mund and Kieferheilkunde. 1979, Berlin: Quintessenz Verlags-GmbH",{},{"id":18,"text":1712,"url":18,"identifiers":1713},"Clinch L: Variations in the mutual relationships of the maxillary and mandibular gum pads in the newborn child. Int J Orthod. 1934, 20: 359-374.",{},{"id":18,"text":1715,"url":18,"identifiers":1716},"Sillman JH: Relationship of maxillary and mandibular gum pads in the newborn infant. Am J Orthodont Oral Surg. 1938, 24: 409-424. 10.1016\u002FS0096-6347(38)90295-9.",{"doi":1717},"10.1016\u002FS0096-6347(38)90295-9",{"id":18,"text":1719,"url":18,"identifiers":1720},"Hanson JW, Smith DW, Cohen MMJ: Prominent lateral palatine ridges: developmental and clinical relevance. J Pediatr. 1976, 89: 54-58.",{"doi":1721},"10.1016\u002FS0022-3476(76)80926-2",{"id":18,"text":1723,"url":18,"identifiers":1724},"Behrstock B, Ramos A, Kaufman N: Does prolonged oral intubation contribute to medical hypertrophy of the lateral palatine ridges and possibly to iatrogenic cleft palate?. J Pediatr. 1977, 91: 171-",{"doi":1725},"10.1016\u002FS0022-3476(77)80492-7",{"id":18,"text":1727,"url":18,"identifiers":1728},"Klemke B: Über Kieferform und Bisslage beim Neugeborenen. Med Diss Bonn. 1939",{},{"id":18,"text":1730,"url":18,"identifiers":1731},"Neumann M: Kieferbezügliche Untersuchungen und Messungen an Neugeborenen. Med Diss Kiel. 1953",{},{"id":18,"text":1733,"url":18,"identifiers":1734},"Ott H: Beitrag zur normalen Entwicklung des Milchgebisses von der Geburt bis zu ca. drei Jahren (anhand von ca. 463 Untersuchungsfällen). Med Diss Leipzig. 1961",{},{"id":18,"text":1736,"url":18,"identifiers":1737},"Erenberg A, Nowak AJ: Appliance for stabilizing orogastric and orotracheal tubes in infants. Crit Care Med. 1984, 12: 669-671.",{"doi":1738},"10.1097\u002F00003246-198408000-00014",{"id":18,"text":1740,"url":18,"identifiers":1741},"Bakwin H, Bakwin R: Form and dimension of the palate during the first year of life. Int J Orthod. 1936, 22: 1018-1024.",{"doi":1742},"10.1016\u002FS1072-3498(36)80050-8",{"id":18,"text":1744,"url":18,"identifiers":1745},"Donley CL, Nelson LP: Comparison of palatal and alveolar cysts of the newborn in premature and full-term infants. Pediatr Dent. 2000, 22: 321-324.",{},{"id":18,"text":1747,"url":18,"identifiers":1748},"Cataldo E, Berkman MD: Cysts of the oral mucosa in newborns. Am J Dis Child. 1968, 116: 44-48.",{},{"id":18,"text":1750,"url":18,"identifiers":1751},"Jorgenson RJ, Shapiro SD, Salinas CF, Levin LS: Intraoral findings and anomalies in neonates. Pediatrics. 1982, 69: 577-582.",{"doi":1752},"10.1542\u002Fpeds.69.5.577",{"id":18,"text":1754,"url":18,"identifiers":1755},"Dittrich I: Untersuchungen über Form and Gröβe des Neugeborenen – Oberkiefers anhand von 1000 eigens gewonnenen Modellen. Med Diss Leipzig. 1959",{},{"id":18,"text":1757,"url":18,"identifiers":1758},"Oelschlägl S: Gestaltuntersuchungen an Oberkiefermodellen von 1000 Neugeborenen unter Berücksichtigung des Geschlechtsunterschiedes und der Beziehung zum Kopfindex. Med Diss Leipzig. 1954",{},{"id":18,"text":1760,"url":18,"identifiers":1761},"Leighton B, Seshadri B: A comparison of the gum pads of Afro-Caribbean and Caucasian British subjects at birth. Br J Orthod. 1990, 17: 215-221.",{"doi":1762},"10.1179\u002Fbjo.17.3.215",{"id":18,"text":1764,"url":18,"identifiers":1765},"Huddart A, Graf B: The maxillary arch dimensions of English, Swiss and Italian normal children at birth and 4 months. Are there national differences?. What is cleft lip and palate? A multidisciplinary update; proceedings of an advanced workshop. Edited by: Kriens O. 1987, Stuttgart: Thieme",{},{"id":18,"text":1767,"url":18,"identifiers":1768},"Friend GW, Harris EF, Mincer HH, Fong TL, Carruth KR: Oral anomalies in the neonate, by race and gender, in an urban setting. Pediatr Dent. 1990, 12: 157-161.",{},{"id":18,"text":1770,"url":18,"identifiers":1771},"Leighton BC: Morphologische Variationen der Alveolarbögen beim Neugeborenen. Fortschr Kieferorthop. 1976, 37: 8-14. 10.1007\u002FBF02169375.",{"doi":1772},"10.1007\u002FBF02169375",{"id":18,"text":1774,"url":18,"identifiers":1775},"Monteleone L, Mclellan MS: Epstein's pearls (Bohn's nodules) of the palate. J Oral Surg Anesth Hosp Dent Serv. 1964, 22: 301-304.",{},{"id":18,"text":1777,"url":18,"identifiers":1778},"Fromm A: Epstein's pearls, Bohn's nodules and inclusion-cysts of the oral cavity. J Dent Child. 1967, 34: 275-287.",{},{"id":18,"text":1780,"url":18,"identifiers":1781},"Nowak AJ, Casamassimo PS: Oral opening and other selected facial dimensions of children 6 weeks to 36 months of age. J Oral Maxillofac Surg. 1994, 52: 845-847.",{"doi":1782},"10.1016\u002F0278-2391(94)90234-8",{"id":18,"text":1784,"url":18,"identifiers":1785},"Kent SE, Rock WP, Nahl SS, Brain DJ: The relationship of nasal septal deformity and palatal symmetry in neonates. J Laryngol Otol. 1991, 105: 424-427.",{"doi":1786},"10.1017\u002FS0022215100116202",{"id":18,"text":1788,"url":18,"identifiers":1789},"Deffez JP, Plante P: The maxilla of infants. Rev Stomatol Chir Maxillofac. 1976, 77: 403-408.",{},{"id":18,"text":1791,"url":18,"identifiers":1792},"Cohen JT: Growth and development of the dental arches in children. J Am Dent Assoc. 1940, 27: 1250-1260.",{"doi":1793},"10.14219\u002Fjada.archive.1940.0262",{"id":18,"text":1795,"url":18,"identifiers":1796},"Gray LP: Deviated nasal septum. Incidence and etiology. Ann Otol Rhinol Laryngol Suppl. 1978, 87: 3-20.",{"doi":1797},"10.1177\u002F00034894780873S201",{"id":18,"text":1799,"url":18,"identifiers":1800},"Hofbauer K: Haben Geburtslage und Geburtstrauma Einfluss auf die Entstehung von Regelwidrigkeiten des Gebisses, insbesondere der Bisslage?. Dtsch Zahn- Mund- und Kieferheilkunde. 1943, 19: 356-368.",{},{"id":18,"text":1802,"url":18,"identifiers":1803},"Gray LP, Dillon PI, Brogan WF, Henry PJ: The development of septal and dental deformity from birth. Angle Orthod. 1982, 52: 265-278.",{},{"id":18,"text":1805,"url":18,"identifiers":1806},"Gray LP: The development and significance of septal and dental deformity from birth to eight years. Int J Pediatr Otorhinolaryngol. 1983, 6: 265-277.",{"doi":1807},"10.1016\u002FS0165-5876(83)80128-1",{"id":18,"text":1809,"url":18,"identifiers":1810},"Alkan L: Gewisse Formen des harten Gaumens und ihre Entstehung. Arch Laryng Rhin. 1990, 10: 441-463.",{},{"id":18,"text":1812,"url":18,"identifiers":1813},"Brawley RE, Sedwick HJ: Studies concerning the oral cavity and saliva. I. Palate (2). Palatal measurements. Am J Orthod Oral Surg. 1939, 25: 1062-1068. 10.1016\u002FS0096-6347(39)90202-4.",{"doi":1814},"10.1016\u002FS0096-6347(39)90202-4",{"id":18,"text":1816,"url":18,"identifiers":1817},"Channing W, Wissler C: Comparative measurements of the hard palate in normal and feeble minded individuals. A preliminary report. Am J Insan. 1905, 61: 687-697.",{},{"id":18,"text":1819,"url":18,"identifiers":1820},"Delaire J: Considérations sur l'accroissement du pré-maxillaire chez l'homme. Rev Stomatol Chir Maxillofac. 1974, 75: 951-970.",{},{"id":18,"text":1822,"url":18,"identifiers":1823},"Denzer BS: The size of the infantile palate. Am J Dis Child. 1921, 22: 471-476.",{},{"id":18,"text":1825,"url":18,"identifiers":1826},"Denzer BS: The size of the infantile palate. Int J Orthodont Oral Surg Radiography. 1922, 8: 510-515.",{"doi":1827},"10.1016\u002FS0099-6963(22)80089-2",{"id":18,"text":1829,"url":18,"identifiers":1830},"Franke G: Über Wachstum und Verbildungen des Kiefers und der Nasenscheidewand aufgrund vergleichender Kiefermessungen und experimenteller Untersuchungen über Knochenwachstum. Zeitschr f Laryng Rhin Otol. 1922, 10: 187-201.",{},{"id":18,"text":1832,"url":18,"identifiers":1833},"Freiband B: Growth of the palate in the human fetus. J Dent Res. 1937, 16: 103-122.",{"doi":1834},"10.1177\u002F00220345370160020101",{"id":18,"text":1836,"url":18,"identifiers":1837},"Friel S: The development of ideal occlusion of the gum pads and the teeth. Am J Orthodont. 1937, 40: 196-227. 10.1016\u002F0002-9416(54)90145-1.",{"doi":1838},"10.1016\u002F0002-9416(54)90145-1",{"id":18,"text":1840,"url":18,"identifiers":1841},"Heckmann U, Brune K, Grabowsky R: Über das Breitenwachstum der Kiefer. Dtsch Stomat. 1969, 19: 759-766.",{},{"id":18,"text":1843,"url":18,"identifiers":1844},"Hoffer O: Entwicklungsbezügliche Feststellungen am Kauorgan von Föten and Neugeborenen. Fortschritte der Kieferorthopädie. 1956, 17: 166-176. 10.1007\u002FBF02169743.",{"doi":1845},"10.1007\u002FBF02169743",{"id":18,"text":1847,"url":18,"identifiers":1848},"Huddart AG, Clarke J, Thacker T: The application of computers to the study of maxillary arch dimensions. Brit Dent J. 1971, 130: 397-404. 10.1038\u002Fsj.bdj.4802671.",{"doi":1849},"10.1038\u002Fsj.bdj.4802671",{"id":18,"text":1851,"url":18,"identifiers":1852},"Huddart AG, MacCauley FJ, Davis MEH: Maxillary arch dimensions in normal and unilateral cleft palate subjects. Cleft Palate J. 1969, 6: 471-487.",{},{"id":18,"text":1854,"url":18,"identifiers":1855},"Katz J: Über die Gaumenform beim Neugeborenen. Med Diss Frankfurt. 1923",{},{"id":18,"text":1857,"url":18,"identifiers":1858},"Kopra DE, Davis EL: Prevalence of oral defects among neonatally intubated 3- to 5- and 7- to 10-year old children. Pediatr Dent. 1991, 13: 349-355.",{},{"id":18,"text":1860,"url":18,"identifiers":1861},"Lang J, Baumeister R: Postnatale Entwicklung der Gaumenbreite und -höhe und die Foramina palatina. Anat Anz Jena. 1984, 155: 151-167.",{},{"id":18,"text":1863,"url":18,"identifiers":1864},"Lavelle CLB: The shape of the dental arch. Am J Orthod. 1975, 67: 176-184. 10.1016\u002F0002-9416(75)90068-8.",{"doi":1865},"10.1016\u002F0002-9416(75)90068-8",{"id":18,"text":1867,"url":18,"identifiers":1868},"Lebret L: Growth changes of the palate. J Dent Res. 1962, 41: 1391-1404.",{"doi":1869},"10.1177\u002F00220345620410061801",{"id":18,"text":1871,"url":18,"identifiers":1872},"Lebret L: Der menschliche Gaumen: Sein Wachstum, die auf ihn bezogene Wanderung der Seitenzähne, seine Expansion bei Anwendung zweier verschiedener orthodontischer Behandlungsmethoden. Fortschr Kieferorthop. 1966, 27: 121-140. 10.1007\u002FBF02163901.",{"doi":1873},"10.1007\u002FBF02163901",{"id":18,"text":1875,"url":18,"identifiers":1876},"Macey-Dare LV, Moles DR, Evans RD, Nixon F: Long-term effect of neonatal endotracheal intubation on palatal form and symmetry in 8–11-year-old children. Eur J Orthod. 1999, 21: 703-710. 10.1093\u002Fejo\u002F21.6.703.",{"doi":1877},"10.1093\u002Fejo\u002F21.6.703",{"id":18,"text":1879,"url":18,"identifiers":1880},"Melsen B: Palatal growth studies on human autosy material. A histologic microradiographic study. Am J Orthod. 1975, 68: 42-54. 10.1016\u002F0002-9416(75)90158-X.",{"doi":1881},"10.1016\u002F0002-9416(75)90158-X",{"id":18,"text":1883,"url":18,"identifiers":1884},"Melsen B, Melsen F: The postnatal development of the palatomaxillary region studied on human autopsy material. Am J Orthod. 1982, 82: 329-432. 10.1016\u002F0002-9416(82)90467-5.",{"doi":1885},"10.1016\u002F0002-9416(82)90467-5",{"id":18,"text":1887,"url":18,"identifiers":1888},"Mithke RR: Die Oberkieferformen menschlicher Feten vom 5. bis zum 10. Lebensmonat. ZWR. 1979, 88: 948-951.",{},{"id":18,"text":1890,"url":18,"identifiers":1891},"Miotti F, Miotti A, Drusini A: Sagittal dimensions of the anterior cranial base, maxilla and mandibular body in newborn male infants. Eur J Orthod. 1983, 5: 245-248.",{"doi":1892},"10.1093\u002Fejo\u002F5.3.245",{"id":18,"text":1894,"url":18,"identifiers":1895},"Peyton WT: The dimension and growth of the palate in the normal infant and in the infant with gross maldevelopment of the upper lip and palate. Arch Surg. 1931, 22: 704-706.",{"doi":1896},"10.1001\u002Farchsurg.1931.01160050015002",{"id":18,"text":1898,"url":18,"identifiers":1899},"Poswillo D: Observations of fetal posture and causal mechanisms of congenital deformity of palate, mandible and limbs. J Dent Res. 1966, 45: 584-596.",{"doi":1900},"10.1177\u002F00220345660450032301",{"id":18,"text":1902,"url":18,"identifiers":1903},"Redman RS, Shapiro BL, Gorlin RJ: Measurement of normal and reportedly malformed palatal vaults. II. Normal juvenile measurements. J Dent Res. 1966, 45: 266-269.",{"doi":1904},"10.1177\u002F00220345660450020801",{"id":18,"text":1906,"url":18,"identifiers":1907},"Schulze C: Die normale and abnorme Entwicklung des Gebisses. Die Umbauvorgänge im Parodontium and Kiefergelenksbereich. Morpho- bzw. Pathogenese and Ätiologie der Dysgnathien. 1993, No. 3 in Lehrbuch der Kieferorthopädie, Berin, Chicago, London, Sao Paulo, Tokio: Quintessenz Verlags-GmbH, 2",{},{"id":18,"text":1909,"url":18,"identifiers":1910},"Sillman JH: Dimensional changes of the dental arches: Longitudinal study from birth to 25 years. Am J Orthod. 1964, 50: 824-842. 10.1016\u002F0002-9416(64)90040-5.",{"doi":1911},"10.1016\u002F0002-9416(64)90040-5",{"id":18,"text":1913,"url":18,"identifiers":1914},"Angelos GM, Smith DR, Jorgenson R, Sweeney EA: Oral complications associated with neonatal oral tracheal intubation: a critical review. Pediatr Dent. 1989, 11: 133-140.",{},{"id":18,"text":1916,"url":18,"identifiers":1917},"Kahl-Nieke B: Einführung in die Kieferorthopädie. 1995, München: Urban & Schwarzenberg",{},{"id":18,"text":1919,"url":18,"identifiers":1920},"Ginoza G, Cortez S, Modanlou HD: Prevention of palatal groove formation in premature neonates requiring intubation. J Pediatr. 1989, 115: 133-135.",{"doi":1921},"10.1016\u002FS0022-3476(89)80348-8",{"id":18,"text":1923,"url":18,"identifiers":1924},"Howell S: Assessment of palatal height in children. Community Dent Oral Epidemiol. 1981, 9: 44-47.",{"doi":1925},"10.1111\u002Fj.1600-0528.1981.tb01027.x",{"id":18,"text":1927,"url":18,"identifiers":1928},"Robke E: Die Gaumenplatte nach Castillo Morales and ihre Wirkung auf die Gaumenentwicklung von Säuglingen mit Trisomie 21 im Vergleich zu gesunden Säuglingen. Zahnmed Diss Münster. 1998",{}]