Maksiller Üçüncü Molar Cerrahisi: Maksiller Sinüs İlişkisi ve Yönetim Stratejileri

Özet

Referanslar

Abulohom F, Al-Sharani HM, Al-Muaalemi Z, et al. Prevalence and pattern of maxillary wisdom tooth impaction and angulation in relation to the maxillary sinus among Yemeni students. Research, Society and Development. 2022;11(10):e522111030579.

Qi W, Qian J, Hu L, et al. Risk factors of sinus perforation after extraction of upper third molars in proximity with the sinus floor. BMC Oral Health. 2025;25(1):1–9

Tomaszewska A, Sikora M. The incidence and extraction causes of third molars among young adults in Poland. Anthropological Review. 2019;82(3):253–263.

Kasapoğlu MB, Gökçe G, Çebi AT, et al. Removal of a maxillary third molar displaced in the infratemporal fossa using an intraoral approach. Medical Records. 2021;3(3):262–266.

Al-Haj Husain A, Stadlinger B, Winklhofer S, et al. Imaging in third molar surgery: a clinical update. Journal of Clinical Medicine. 2023;12(24):7688.

Yıldırım TT, Oztekin F, Tozum MD. Topographic relationship between maxillary sinus and roots of posterior teeth: a cone beam tomographic analysis. European Oral Research. 2021;55(1):39–44.

Sánchez-Garcés MÁ, Toledano-Serrabona J, Camps-Font O, et al. Diagnosis and indications for the extraction of third molars: the SECIB clinical practice guideline. Medicina Oral, Patología Oral y Cirugía Bucal. 2024;29(4):e545.

Sánchez-Torres A, Paños-Crespo A, Sales-Collado M, et al. Predictors of surgical difficulty in upper third molar removal: a prospective cohort study. Medicina Oral, Patología Oral y Cirugía Bucal. 2023;29(3):e343.

Souza, G. A, Santos, Z. T, Sverzut, et al. Pterygoid process fracture during dental extraction–an unusual complication. Revista Odonto Ciência, 2017;32(3), 160-162.

Delantoni A, Şengün DN, Bayındır A, et al. Risk factors, consequences and treatment alternatives of Schneiderian membrane perforation: case report and review of the literature. ADO Klinik Bilimler Dergisi. 2024;13(1):256–263.

Rodríguez M, Richa R, Valenzuela JJ, et al. Relación entre el seno maxilar y ápices de dientes postero-superiores con tomografía computarizada de haz cónico. International Journal of Morphology. 2023;41(2):618–624.

Mohammed, A, Reem, A, Rawan, A, et al. Assessing The Proximity of the Roots of Maxillary Molars and Premolars to the Maxillary Sinus in UAE Residents. The Open Dentistry Journal, 2022;16(1).

Choi YJ, Kim YH, Han SS, et al. Alveolar bone height according to the anatomical relationship between the maxillary molar and sinus. Journal of Periodontal & Implant Science. 2020;50(1):38–47.

Varghese G. Management of impacted third molars. In: Oral and maxillofacial surgery for the clinician. Springer; 2021. p. 299–328.

Melo MMM, Figueira LCG, Guedes EVB, et al. Elevação da membrana sinusal visando aumento ósseo em altura na região posterior da maxila: técnica da janela lateral. Research, Society and Development. 2022;11(6):e25311628950.

Zaccheo F, Petroni G, Cicconetti A. Radicular aberrations of mandibular third molars: relevance for oral surgery—a comprehensive narrative review. Applied Sciences. 2025;15(23):12756.

Ye ZX, Qian WH, Wu YB, et al. Buccal rotation for wholly impacted maxillary third molar extraction. Head & Face Medicine. 2023;19(1):2.

Juodzbalys G, Daugela P. Mandibular third molar impaction: review of literature and a proposal of a classification. Journal of Oral & Maxillofacial Research. 2013;4(2):e1.

Temur KT. Maksiller sinüs patolojilerinin ve osteomeatal kompleksin radyolojik olarak değerlendirilmesi. Arşiv Kaynak Tarama Dergisi. 2018;27(3):328–345.

Siddiqui HK, Arif A, Ghauri K, et al. Relationship of maxillary third molar root to the maxillary sinus wall: a cone-beam computed tomography (CBCT) based study.

Aracena D, Jarpa C, Soto-Alvarez C, et al. Distancia entre la raíz palatina del primer molar superior permanente y el piso del seno maxilar, obtenida mediante tomografía computarizada cone beam. International Journal of Morphology. 2018;36(4):1394–1397.

Gocmen G, Bayram F, Ates O. The importance of maxillary sinuses in oral and maxillofacial surgical procedures. In: Paranasal Sinuses: Surgical Anatomy and Its Applications. IntechOpen; 2023.

Çolakoğlu G, Dumlu A. Retrospektif konik ışınlı bilgisayarlı tomografi görüntülerinde sagittal yönde farklı maksiller konuma sahip bireylerin maksiller sinüs hacimlerinin morfometrik analizi. European Journal of Research in Dentistry. 2022;6(2):87–94.

Cihan ÖF, Can H, Yalçın ED. Investigation of the relationship of the maxillary sinus floor with maxillary posterior teeth using cone beam CT. Folia Morphologica. 2024;83(4):858–867.

Insua, A, Monje, A, Chan, H. L, et al. Accuracy of Schneiderian membrane thickness: a cone‐beam computed tomography analysis with histological validation. Clinical oral implants research, 2017;28(6), 654-661.

Anter E, Helaly Y, Samir W, et al. Assessment of proximity of maxillary molars roots to the maxillary sinus floor in a sample from the Egyptian population using cone-beam computed tomography (hospital based study). Egyptian Dental Journal, 2019;65(4-October (Oral Medicine, X-Ray, Oral Biology & Oral Pathology)), 3427-3438.

de Lima CO, Devito KL, Vasconcelos LRB, et al. Sinusite odontogênica: uma revisão de literatura. Revista Brasileira de Odontologia. 2017;74(1):40.

Nimbalkar KA, Datana S, Chopra SS, et al. Evaluation of maxillary sinus dimensions and volume in different sagittal and vertical facial types: a CBCT based study. Journal of Contemporary Orthodontics. 2023;7:287–292.

Özer AM, Bulut A. Posterior superior alveoler arter konumunun cinsiyet ile ilişkisi: retrospektif analiz. İstanbul Gelişim Üniversitesi Sağlık Bilimleri Dergisi. 2021;(13):106–120.

Makishi S, Tanaka M, Kobayashi T, et al. Posterior superior alveolar nerves contribute to sensation in the anterior teeth. Annals of Anatomy. 2021;238:151784.

Iwanaga J, Wilson C, Lachkar S, et al. Clinical anatomy of the maxillary sinus: application to sinus floor augmentation. Anatomy & Cell Biology. 2019;52(1):17–24.

Vargas A, Astorga P, Rioseco T. Anatomy applied to block anesthesia for maxillofacial surgery. In: Dental Anatomy. 2018. p. 87–106.

Ghandourah AO, Rashad A, Heiland M, et al. Cone-beam tomographic analysis of canalis sinuosus accessory intraosseous canals in the maxilla. GMS German Medical Science. 2017;15:Doc20.

Ali D. Risk factors of complications subsequent third molar extractions: a prospective cohort study. Brazilian Dental Science. 2021;24(4).

Özemre MÖ, Bektaş J, Yanik H, et al. Enhanced diagnostic pipeline for maxillary sinus–maxillary molars relationships: a novel implementation of Detectron2 with faster R-CNN R50 FPN 3x on CBCT images. BMC Oral Health. 2025;25(1):1473.

Lee J, Park J, Lee S, et al. Automated diagnosis for extraction difficulty of maxillary and mandibular third molars and post-extraction complications using deep learning. Scientific Reports. 2025;15(1):19036.

Lee J, Jin S, Ko Y, et al. Evaluation of anatomical considerations in the posterior maxillae for sinus augmentation. World Journal of Clinical Cases: WJCC, 2014;2(11), 683.

Karande P, Thakuria J, Sinha A, et al. Comparative Assessment of Schneiderian Membrane Thickness in Smokers and Non-smokers Using Cone-Beam Computed Tomography: An Observational Study. Cureus, 2025;17(3).

Atalay B. İleri derecede rezorbe maksillaların zigomatik implantlarla rehabilitasyonu. Journal of Istanbul University Faculty of Dentistry. 2011;44(2):133–140.

Toledano-Serrabona J, Cascos-Romero J, Gay-Escoda C. Accidental dental displacement into the maxillary sinus during extraction maneuvers: a case series. Medicina Oral, Patología Oral y Cirugía Bucal. 2020;26(1):e102.

Coello JR, Torres GR. Third molar iatrogenic displacement to maxillary sinus: clinical case report. Revista ADM. 2018;75(1):39–44.

Kumar A, Srivastava RK, Saxena A, et al. Removal of infected maxillary third molar from the infratemporal fossa by Caldwell-Luc procedure: rare case report with literature review. Journal of Clinical and Diagnostic Research. 2016;10(12):ZD01.

Altunsoy E, Çevik T, Görler O. A wide infected radicular cyst invading maxillary sinus: case report. Cumhuriyet Dental Journal. 2017;20(1):12–17.

Allen DZ, Sethia R, Hamersley E, et al. Presentation of an iatrogenically displaced third molar into the maxillary sinus in a 14-year-old patient successfully removed with an endoscopic approach: a case report and review of the literature. Journal of Surgical Case Reports. 2020;2020(10):rjaa290.

Amin Z, Amran M, Khairudin A. Removal of extensive maxillary dentigerous cyst via a Caldwell-Luc procedure. Archives of Orofacial Sciences. 2008;3(2):48–51.

Guégan B, Casenave T, Lapeyrie P, et al. Management of third molars projected into the temporal fossa and infratemporal fossa: systematic literature review. Journal of Oral Medicine and Oral Surgery. 2023;29(1):11.

Kumar A, Yadav N, Singh S, et al. Minimally invasive (endoscopic-computer assisted) surgery: technique and review. Annals of Maxillofacial Surgery. 2016;6(2):159–164.

Khoury F, Schmidt C, Jackowski J. The influence of suturing and/or gluing of perforated Schneiderian membrane during sinus lift procedure on the outcome: a retrospective study. International Journal of Implant Dentistry. 2024;10(1):48.

Gandhi Y. Endoscopically monitored maxillary sinus augmentation: the chairside approach (rationale and protocol). Journal of Oral Biology and Craniofacial Research. 2020;10(3):247–252.

Quispe-Damián DE, Castro-Ruiz CT, Mendoza-Azpur G. Surgical complications associated to maxillary sinus floor elevation in implantology. Odovtos International Journal of Dental Sciences. 2020;22(1):61–70.

Rothamel D, Wahl G, d’Hoedt B, et al. Incidence and predictive factors for perforation of the maxillary antrum in operations to remove upper wisdom teeth: prospective multicentre study. British Journal of Oral and Maxillofacial Surgery. 2007;45(5):387–391.

de Abreu JM, Cerqueira É, Quitério A, et al. Assessment of complications in third molar surgery performed by resident surgeons: a comprehensive analysis. Surgery in Practice and Science. 2024;18:100256.

Sala YM, Lu H, Chrcanovic BR. Clinical outcomes of maxillary sinus floor perforation by dental implants and sinus membrane perforation during sinus augmentation: a systematic review and meta-analysis. Journal of Clinical Medicine. 2024;13(5):1253.

Kaba YN, Demirbas AE, Topan C, et al. Which method is successful in closure of acute oroantral communication? A retrospective study. Medicina Oral, Patología Oral y Cirugía Bucal. 2023;29(1):e95

Bereczki-Temistocle DL, Gurzu S, Ioan I, et al. Successful closure of an oro-antral communication after three previously failed attempts using Bichat fat pad flap: a case report. World Journal of Plastic Surgery. 2023;12(1):90.

Parvini P, Obreja K, Begic A, et al. Decision-making in closure of oroantral communication and fistula. International Journal of Implant Dentistry. 2019;5(1):13.

Salas E, Ladino LG. Surgical approach to management of oroantral communications: case report. Journal of Surgical Case Reports. 2024;2024(11):rjae700.

Fatani B, Fatani A, Alomar A. Oro-antral communication and fistula: a review of the literature. Saudi Journal of Oral and Dental Research. 2020;5(12):575–581.

Sabatino L, Lopez MA, Di Giovanni S, et al. Odontogenic sinusitis with oroantral communication and fistula management: role of regenerative surgery. Medicina. 2023;59(5):937.

Ramadan N. The use of buccal pad of fat versus leukocyte-platelet rich fibrin for closure of oroantral communication. Egyptian Dental Journal. 2020;66(2):893–903.

Khandelwal P, Hajira N. Management of oro-antral communication and fistula: various surgical options. World Journal of Plastic Surgery. 2017;6(1):3.

Ibrahim MT, Gharieb EA, Sheta MS. A pedicled buccal periosteal flap for the closure of oro-antral fistula. BMC Oral Health. 2024;24(1):440.

Turcica AO. Gazi Üniversitesi Diş Hekimliği Fakültesi 1. Genç Akademisyenler Kongresi, 20–21 Şubat 2020, Ankara; bildiriler. Acta Odontologica Turcica. 2020;37(Suppl 1):1–134.

de Figueiredo Filho AO, Aguiar PL, de Macedo Santana B, et al. Opções cirúrgicas no tratamento de fístula/comunicação bucossinusal: série de casos. Research, Society and Development. 2020;9(10):e6139109039.

Barbu HM, Iancu SA, Jarjour Mirea I, et al. Management of Schneiderian membrane perforations during sinus augmentation procedures: a preliminary comparison of two different approaches. Journal of Clinical Medicine. 2019;8(9):1491.

ElShourbagy M, Hussein M, Khedr M, et al. Oroantral communication repair using bone substitute and platelet-rich fibrin. Tanta Dental Journal. 2015;12(2):65–70.

Nolan PJ, Freeman K, Kraut RA. Correlation between Schneiderian membrane perforation and sinus lift graft outcome: a retrospective evaluation of 359 augmented sinuses. Journal of Oral and Maxillofacial Surgery. 2014;72(1):47–52.

Saglanmak A, Cinar C, Gultekin A, et al. Platelet-rich fibrin (PRF) application in oral surgery. Platelets. 2020;1:1–14.

Almutiri MK, Almutairi NA, Almutairy AS, et al. Platelet-rich fibrin as a therapeutic modality for oroantral communication closure: a systematic review and meta-analysis. Frontiers in Oral Health. 2026;7:1759248.

ElAbbasy S. Clinical and radiographic evaluation of buccal pad of fat versus sandwiched Bio-Oss® bone graft in closure of oroantral communication. Egyptian Journal of Oral and Maxillofacial Surgery. 2019;10(1):34–39.

Bansal S, Managutti A, Babhulkar A, et al. Artificial intelligence in oral and maxillofacial surgery: a road ahead. Journal of Oral Medicine, Oral Surgery, Oral Pathology and Oral Radiology. 2024;10:254–260.

Sunar A, Taş Ç, Sır E, et al. Diş hekimliğinde yapay zeka uygulamaları. Journal of Kocaeli Health and Technology University. 2024;2(3):41–57.

Chuang S-K, Perrott DH, Susarla SM, et al. Risk factors for inflammatory complications following third molar surgery in adults. Journal of Oral and Maxillofacial Surgery. 2008;66(11):2213–2218.

Van der Cruyssen F, Verhelst P-J, Jacobs R. The use of artificial intelligence in third molar surgery risk assessment. Dental Update. 2024;51(1):28–33.

Referanslar

Abulohom F, Al-Sharani HM, Al-Muaalemi Z, et al. Prevalence and pattern of maxillary wisdom tooth impaction and angulation in relation to the maxillary sinus among Yemeni students. Research, Society and Development. 2022;11(10):e522111030579.

Qi W, Qian J, Hu L, et al. Risk factors of sinus perforation after extraction of upper third molars in proximity with the sinus floor. BMC Oral Health. 2025;25(1):1–9

Tomaszewska A, Sikora M. The incidence and extraction causes of third molars among young adults in Poland. Anthropological Review. 2019;82(3):253–263.

Kasapoğlu MB, Gökçe G, Çebi AT, et al. Removal of a maxillary third molar displaced in the infratemporal fossa using an intraoral approach. Medical Records. 2021;3(3):262–266.

Al-Haj Husain A, Stadlinger B, Winklhofer S, et al. Imaging in third molar surgery: a clinical update. Journal of Clinical Medicine. 2023;12(24):7688.

Yıldırım TT, Oztekin F, Tozum MD. Topographic relationship between maxillary sinus and roots of posterior teeth: a cone beam tomographic analysis. European Oral Research. 2021;55(1):39–44.

Sánchez-Garcés MÁ, Toledano-Serrabona J, Camps-Font O, et al. Diagnosis and indications for the extraction of third molars: the SECIB clinical practice guideline. Medicina Oral, Patología Oral y Cirugía Bucal. 2024;29(4):e545.

Sánchez-Torres A, Paños-Crespo A, Sales-Collado M, et al. Predictors of surgical difficulty in upper third molar removal: a prospective cohort study. Medicina Oral, Patología Oral y Cirugía Bucal. 2023;29(3):e343.

Souza, G. A, Santos, Z. T, Sverzut, et al. Pterygoid process fracture during dental extraction–an unusual complication. Revista Odonto Ciência, 2017;32(3), 160-162.

Delantoni A, Şengün DN, Bayındır A, et al. Risk factors, consequences and treatment alternatives of Schneiderian membrane perforation: case report and review of the literature. ADO Klinik Bilimler Dergisi. 2024;13(1):256–263.

Rodríguez M, Richa R, Valenzuela JJ, et al. Relación entre el seno maxilar y ápices de dientes postero-superiores con tomografía computarizada de haz cónico. International Journal of Morphology. 2023;41(2):618–624.

Mohammed, A, Reem, A, Rawan, A, et al. Assessing The Proximity of the Roots of Maxillary Molars and Premolars to the Maxillary Sinus in UAE Residents. The Open Dentistry Journal, 2022;16(1).

Choi YJ, Kim YH, Han SS, et al. Alveolar bone height according to the anatomical relationship between the maxillary molar and sinus. Journal of Periodontal & Implant Science. 2020;50(1):38–47.

Varghese G. Management of impacted third molars. In: Oral and maxillofacial surgery for the clinician. Springer; 2021. p. 299–328.

Melo MMM, Figueira LCG, Guedes EVB, et al. Elevação da membrana sinusal visando aumento ósseo em altura na região posterior da maxila: técnica da janela lateral. Research, Society and Development. 2022;11(6):e25311628950.

Zaccheo F, Petroni G, Cicconetti A. Radicular aberrations of mandibular third molars: relevance for oral surgery—a comprehensive narrative review. Applied Sciences. 2025;15(23):12756.

Ye ZX, Qian WH, Wu YB, et al. Buccal rotation for wholly impacted maxillary third molar extraction. Head & Face Medicine. 2023;19(1):2.

Juodzbalys G, Daugela P. Mandibular third molar impaction: review of literature and a proposal of a classification. Journal of Oral & Maxillofacial Research. 2013;4(2):e1.

Temur KT. Maksiller sinüs patolojilerinin ve osteomeatal kompleksin radyolojik olarak değerlendirilmesi. Arşiv Kaynak Tarama Dergisi. 2018;27(3):328–345.

Siddiqui HK, Arif A, Ghauri K, et al. Relationship of maxillary third molar root to the maxillary sinus wall: a cone-beam computed tomography (CBCT) based study.

Aracena D, Jarpa C, Soto-Alvarez C, et al. Distancia entre la raíz palatina del primer molar superior permanente y el piso del seno maxilar, obtenida mediante tomografía computarizada cone beam. International Journal of Morphology. 2018;36(4):1394–1397.

Gocmen G, Bayram F, Ates O. The importance of maxillary sinuses in oral and maxillofacial surgical procedures. In: Paranasal Sinuses: Surgical Anatomy and Its Applications. IntechOpen; 2023.

Çolakoğlu G, Dumlu A. Retrospektif konik ışınlı bilgisayarlı tomografi görüntülerinde sagittal yönde farklı maksiller konuma sahip bireylerin maksiller sinüs hacimlerinin morfometrik analizi. European Journal of Research in Dentistry. 2022;6(2):87–94.

Cihan ÖF, Can H, Yalçın ED. Investigation of the relationship of the maxillary sinus floor with maxillary posterior teeth using cone beam CT. Folia Morphologica. 2024;83(4):858–867.

Insua, A, Monje, A, Chan, H. L, et al. Accuracy of Schneiderian membrane thickness: a cone‐beam computed tomography analysis with histological validation. Clinical oral implants research, 2017;28(6), 654-661.

Anter E, Helaly Y, Samir W, et al. Assessment of proximity of maxillary molars roots to the maxillary sinus floor in a sample from the Egyptian population using cone-beam computed tomography (hospital based study). Egyptian Dental Journal, 2019;65(4-October (Oral Medicine, X-Ray, Oral Biology & Oral Pathology)), 3427-3438.

de Lima CO, Devito KL, Vasconcelos LRB, et al. Sinusite odontogênica: uma revisão de literatura. Revista Brasileira de Odontologia. 2017;74(1):40.

Nimbalkar KA, Datana S, Chopra SS, et al. Evaluation of maxillary sinus dimensions and volume in different sagittal and vertical facial types: a CBCT based study. Journal of Contemporary Orthodontics. 2023;7:287–292.

Özer AM, Bulut A. Posterior superior alveoler arter konumunun cinsiyet ile ilişkisi: retrospektif analiz. İstanbul Gelişim Üniversitesi Sağlık Bilimleri Dergisi. 2021;(13):106–120.

Makishi S, Tanaka M, Kobayashi T, et al. Posterior superior alveolar nerves contribute to sensation in the anterior teeth. Annals of Anatomy. 2021;238:151784.

Iwanaga J, Wilson C, Lachkar S, et al. Clinical anatomy of the maxillary sinus: application to sinus floor augmentation. Anatomy & Cell Biology. 2019;52(1):17–24.

Vargas A, Astorga P, Rioseco T. Anatomy applied to block anesthesia for maxillofacial surgery. In: Dental Anatomy. 2018. p. 87–106.

Ghandourah AO, Rashad A, Heiland M, et al. Cone-beam tomographic analysis of canalis sinuosus accessory intraosseous canals in the maxilla. GMS German Medical Science. 2017;15:Doc20.

Ali D. Risk factors of complications subsequent third molar extractions: a prospective cohort study. Brazilian Dental Science. 2021;24(4).

Özemre MÖ, Bektaş J, Yanik H, et al. Enhanced diagnostic pipeline for maxillary sinus–maxillary molars relationships: a novel implementation of Detectron2 with faster R-CNN R50 FPN 3x on CBCT images. BMC Oral Health. 2025;25(1):1473.

Lee J, Park J, Lee S, et al. Automated diagnosis for extraction difficulty of maxillary and mandibular third molars and post-extraction complications using deep learning. Scientific Reports. 2025;15(1):19036.

Lee J, Jin S, Ko Y, et al. Evaluation of anatomical considerations in the posterior maxillae for sinus augmentation. World Journal of Clinical Cases: WJCC, 2014;2(11), 683.

Karande P, Thakuria J, Sinha A, et al. Comparative Assessment of Schneiderian Membrane Thickness in Smokers and Non-smokers Using Cone-Beam Computed Tomography: An Observational Study. Cureus, 2025;17(3).

Atalay B. İleri derecede rezorbe maksillaların zigomatik implantlarla rehabilitasyonu. Journal of Istanbul University Faculty of Dentistry. 2011;44(2):133–140.

Toledano-Serrabona J, Cascos-Romero J, Gay-Escoda C. Accidental dental displacement into the maxillary sinus during extraction maneuvers: a case series. Medicina Oral, Patología Oral y Cirugía Bucal. 2020;26(1):e102.

Coello JR, Torres GR. Third molar iatrogenic displacement to maxillary sinus: clinical case report. Revista ADM. 2018;75(1):39–44.

Kumar A, Srivastava RK, Saxena A, et al. Removal of infected maxillary third molar from the infratemporal fossa by Caldwell-Luc procedure: rare case report with literature review. Journal of Clinical and Diagnostic Research. 2016;10(12):ZD01.

Altunsoy E, Çevik T, Görler O. A wide infected radicular cyst invading maxillary sinus: case report. Cumhuriyet Dental Journal. 2017;20(1):12–17.

Allen DZ, Sethia R, Hamersley E, et al. Presentation of an iatrogenically displaced third molar into the maxillary sinus in a 14-year-old patient successfully removed with an endoscopic approach: a case report and review of the literature. Journal of Surgical Case Reports. 2020;2020(10):rjaa290.

Amin Z, Amran M, Khairudin A. Removal of extensive maxillary dentigerous cyst via a Caldwell-Luc procedure. Archives of Orofacial Sciences. 2008;3(2):48–51.

Guégan B, Casenave T, Lapeyrie P, et al. Management of third molars projected into the temporal fossa and infratemporal fossa: systematic literature review. Journal of Oral Medicine and Oral Surgery. 2023;29(1):11.

Kumar A, Yadav N, Singh S, et al. Minimally invasive (endoscopic-computer assisted) surgery: technique and review. Annals of Maxillofacial Surgery. 2016;6(2):159–164.

Khoury F, Schmidt C, Jackowski J. The influence of suturing and/or gluing of perforated Schneiderian membrane during sinus lift procedure on the outcome: a retrospective study. International Journal of Implant Dentistry. 2024;10(1):48.

Gandhi Y. Endoscopically monitored maxillary sinus augmentation: the chairside approach (rationale and protocol). Journal of Oral Biology and Craniofacial Research. 2020;10(3):247–252.

Quispe-Damián DE, Castro-Ruiz CT, Mendoza-Azpur G. Surgical complications associated to maxillary sinus floor elevation in implantology. Odovtos International Journal of Dental Sciences. 2020;22(1):61–70.

Rothamel D, Wahl G, d’Hoedt B, et al. Incidence and predictive factors for perforation of the maxillary antrum in operations to remove upper wisdom teeth: prospective multicentre study. British Journal of Oral and Maxillofacial Surgery. 2007;45(5):387–391.

de Abreu JM, Cerqueira É, Quitério A, et al. Assessment of complications in third molar surgery performed by resident surgeons: a comprehensive analysis. Surgery in Practice and Science. 2024;18:100256.

Sala YM, Lu H, Chrcanovic BR. Clinical outcomes of maxillary sinus floor perforation by dental implants and sinus membrane perforation during sinus augmentation: a systematic review and meta-analysis. Journal of Clinical Medicine. 2024;13(5):1253.

Kaba YN, Demirbas AE, Topan C, et al. Which method is successful in closure of acute oroantral communication? A retrospective study. Medicina Oral, Patología Oral y Cirugía Bucal. 2023;29(1):e95

Bereczki-Temistocle DL, Gurzu S, Ioan I, et al. Successful closure of an oro-antral communication after three previously failed attempts using Bichat fat pad flap: a case report. World Journal of Plastic Surgery. 2023;12(1):90.

Parvini P, Obreja K, Begic A, et al. Decision-making in closure of oroantral communication and fistula. International Journal of Implant Dentistry. 2019;5(1):13.

Salas E, Ladino LG. Surgical approach to management of oroantral communications: case report. Journal of Surgical Case Reports. 2024;2024(11):rjae700.

Fatani B, Fatani A, Alomar A. Oro-antral communication and fistula: a review of the literature. Saudi Journal of Oral and Dental Research. 2020;5(12):575–581.

Sabatino L, Lopez MA, Di Giovanni S, et al. Odontogenic sinusitis with oroantral communication and fistula management: role of regenerative surgery. Medicina. 2023;59(5):937.

Ramadan N. The use of buccal pad of fat versus leukocyte-platelet rich fibrin for closure of oroantral communication. Egyptian Dental Journal. 2020;66(2):893–903.

Khandelwal P, Hajira N. Management of oro-antral communication and fistula: various surgical options. World Journal of Plastic Surgery. 2017;6(1):3.

Ibrahim MT, Gharieb EA, Sheta MS. A pedicled buccal periosteal flap for the closure of oro-antral fistula. BMC Oral Health. 2024;24(1):440.

Turcica AO. Gazi Üniversitesi Diş Hekimliği Fakültesi 1. Genç Akademisyenler Kongresi, 20–21 Şubat 2020, Ankara; bildiriler. Acta Odontologica Turcica. 2020;37(Suppl 1):1–134.

de Figueiredo Filho AO, Aguiar PL, de Macedo Santana B, et al. Opções cirúrgicas no tratamento de fístula/comunicação bucossinusal: série de casos. Research, Society and Development. 2020;9(10):e6139109039.

Barbu HM, Iancu SA, Jarjour Mirea I, et al. Management of Schneiderian membrane perforations during sinus augmentation procedures: a preliminary comparison of two different approaches. Journal of Clinical Medicine. 2019;8(9):1491.

ElShourbagy M, Hussein M, Khedr M, et al. Oroantral communication repair using bone substitute and platelet-rich fibrin. Tanta Dental Journal. 2015;12(2):65–70.

Nolan PJ, Freeman K, Kraut RA. Correlation between Schneiderian membrane perforation and sinus lift graft outcome: a retrospective evaluation of 359 augmented sinuses. Journal of Oral and Maxillofacial Surgery. 2014;72(1):47–52.

Saglanmak A, Cinar C, Gultekin A, et al. Platelet-rich fibrin (PRF) application in oral surgery. Platelets. 2020;1:1–14.

Almutiri MK, Almutairi NA, Almutairy AS, et al. Platelet-rich fibrin as a therapeutic modality for oroantral communication closure: a systematic review and meta-analysis. Frontiers in Oral Health. 2026;7:1759248.

ElAbbasy S. Clinical and radiographic evaluation of buccal pad of fat versus sandwiched Bio-Oss® bone graft in closure of oroantral communication. Egyptian Journal of Oral and Maxillofacial Surgery. 2019;10(1):34–39.

Bansal S, Managutti A, Babhulkar A, et al. Artificial intelligence in oral and maxillofacial surgery: a road ahead. Journal of Oral Medicine, Oral Surgery, Oral Pathology and Oral Radiology. 2024;10:254–260.

Sunar A, Taş Ç, Sır E, et al. Diş hekimliğinde yapay zeka uygulamaları. Journal of Kocaeli Health and Technology University. 2024;2(3):41–57.

Chuang S-K, Perrott DH, Susarla SM, et al. Risk factors for inflammatory complications following third molar surgery in adults. Journal of Oral and Maxillofacial Surgery. 2008;66(11):2213–2218.

Van der Cruyssen F, Verhelst P-J, Jacobs R. The use of artificial intelligence in third molar surgery risk assessment. Dental Update. 2024;51(1):28–33.

Yayınlanan

20 Mayıs 2026

Lisans

Lisans