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COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı

Yıl 2024, Cilt: 26 Sayı: 2, 161 - 168, 20.08.2024
https://doi.org/10.24938/kutfd.1417105

Öz

Objective: To estimate if a correlation exists between edentulousness type and changes in the articular eminence inclination (AEI) and to compare these data with the trabecular structure of the mandibular condyle using fractal analysis.
Material and Methods: A total of 88 panoramic radiographs and 176 temporomandibular joints (TMJ) of four groups (n=22), which were divided according to dental status, were evaluated according to the AEI and fractal dimensions (FD) of the temporomandibular joints by one radiologist using the ImageJ (National Institutes of Health. MD, USA) program, retrospectively. The conformity of the values with normal distribution was evaluated using the Shapiro-Wilk test. A one- way ANOVA model was used while comparing the edentation status and relationships between FDs, and AEI measurements were assessed using Pearson’s correlation analysis. The level of statistical significance was taken as p<0.05. The SPSS (ver. 23) statistics package was used for calculations.
Results: No correlation was detected between AEI, FD, and edentate status. However, a negative relation between AEI and FD in unilateral edentate groups on the opposite sides was estimated.
Conclusion: The excess chewing force in the dentate side and the increase in AEI due to the movement area of the condyle narrows increased the amount of resorption in the TMJ.

Kaynakça

  • Laskin DM, Greene CS, Hylander WL. Temporomandibular disorders: An evidence-based approach to diagnosis and treatment. Chicago, Quintessence, 2006.
  • Bermejo-Fenoll A, Puchades-Orts A, Sanchez del Campo F, Panchon-Ruiz A, Herrera-Lara M. Morphology of the meniscotemporal part of the temporomandibular joint and its biomechanical implications. Acta Anat (Basel).1987;129(3);129:220-226.
  • Hatcher DC, Faulkner MG, Hay A. Development of mechanical and mathematic models to study temporomandibular joint loading. J Prosthet Dent. 1986;55(3):377-384.
  • Pandis N, Karpac J, Trevino R, Williams B. A radiographic study of condyle position at various depths of cut in dry skulls with axially corrected lateral tomograms. Am J Orthod Dentofacial Orthop. 1991;100(2):116-122.
  • O'Ryan F, Epker BN. Temporomandibular joint function and morphology: Observations on the spectra of normalcy. Oral Surg Oral Med Oral Pathol. 1984;58(3):272-279.
  • Katsavrias EG. Changes in articular eminence inclination during the craniofacial growth period. Angle Orthod. 2002;72(3):258-264.
  • Jasinevicius TR, Pyle MA, Lalumandier JA, et al. Asymmetry of the articular eminence in dentate and partially edentulous populations. Cranio. 2006;24(2):85- 94.
  • Costa EDD, Peyneau PD, Roque-Torres GD, et al. The relationship of articular eminence and mandibular fossa morphology to facial profile and gender determined by cone beam computed tomography. Oral Surg Oral Med Oral Pathol Oral Radiol. 2019;128(6):660-666.
  • Kranjčić J, Šlaus M, Vodanović M, Peršić S, Vojvodić D. Articular eminence inclination in medieval and contemporary croatian population. Acta Clin Croat. 2016;55(4):529-534.
  • Hinton RJ. Changes in articular eminence morphology with dental function. Am J Phys Anthropol. 1981;54(4):439-455.
  • Pirttiniemi P, Kantomaa T, Tuominen M, Salo L. Articular disc and eminence modeling after experimental relocation of the glenoid fossa in growing rabbits. J Dent Res. 1994;73(3):536-543.
  • Raustia AM, Pirttiniemi P, Salonen MA, Pyhtinen J. Effect of edentulousness on mandibular size and condyle-fossa position. J Oral Rehabil. 1998;25(3):174-179.
  • Sa SC, Melo SL, Melo DP, Freitas DQ, Campos PS. Relationship between articular eminence inclination and alterations of the mandibular condyle: A CBCT study. Braz Oral Res. 2017;31:e25.
  • Schuster AJ, Pastorino DA, Marcello-Machado RM, Faot F. Influence of age and time since edentulism on masticatory function and quality of life in implant-retained mandibular overdenture wearers: 1-year results from a paired clinical study. Int J Oral Maxillofac Implants 2019;34(6):1466-1474.
  • Granados JI. The influence of the loss of teeth and attrition on the articular eminence. J Prosthet Dent. 1979;42(1):78- 85.
  • Tallents RH, Macher DJ, Kyrkanides S, Katzberg RW, Moss ME. Prevalence of missing posterior teeth and intraarticular temporomandibular disorders. J Prosthet Dent. 2002;87(1):45-50.
  • Unal Erzurumlu Z, Celenk P. A radiological evaluation of the effects of edentulousness on the temporomandibular joint. J Oral Rehabil. 2020;47(3):319-324.
  • Fang TH, Chiang MT, Hsieh MC, Kung LY, Chiu KC. Effects of unilateral posterior missing-teeth on the temporomandibular joint and the alignment of cervical atlas. PLoS One. 2020;15(12):e0242717.
  • Csadó K, Márton K, Kivovics P. Anatomical changes in the structure of the temporomandibular joint caused by complete edentulousness. Gerodontol. 2012;29(2):111- 116.
  • Oruba Z, Malisz P, Sendek J, et al. Flattening of the articular eminence is associated with the loss of occlusal support: Radiological study. Aust Dent J. 2020;65(1):53- 57.
  • Geraets WG. Comparison of two methods for measuring orientation. Bone. 1998;23(4):383-388.
  • Yi WJ, Heo MS, Lee SS, et al. Direct measurement of trabecular bone anisotropy using directional fractal dimension and principal axes of inertia. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2007;104(1):110- 116.
  • Arsan B, Köse TE, Çene E, Özcan İ. Assessment of the trabecular structure of mandibular condyles in patients with temporomandibular disorders using fractal analysis. Oral Surg Oral Med Oral Pathol Oral Radiol. 2017;123(3):382-391.
  • Demiralp K, Kurşun-Çakmak E, Bayrak S, et al. Trabecular structure designation using fractal analysis technique on panoramic radiographs of patients with bisphosphonate intake: A preliminary study. Oral Radiol. 2019;35(1):23-28.
  • Sümbüllü MA, Cağlayan F, Akgül HM, Yilmaz AB. Radiological examination of the articular eminence morphology using cone beam CT. Dentomaxillofac Radiol. 2012;41(3):234-240.
  • White SC, Rudolph DJ. Alterations of the trabecular pattern of the jaws in patients with osteoporosis. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1999;88(5):628-635.
  • Chiang MT, Li TI, Yeh HW, et al. Evaluation of missing- tooth effect on articular eminence inclination of temporomandibular joint. J Dental Sci. 2015;10(4):383- 387.
  • Fazzalari NL, Parkinson IH. Fractal properties of subchondral cancellous bone in severe osteoarthritis of the hip. J Bone Miner Res. 1997;12(4):632-640.
  • Dougherty G, Henebry GM. Fractal signature and lacunarity in the measurement of the texture of trabecular bone in clinical CT images. Med Eng Phys. 2001;23(6):369-380.
  • Majumdar S, Lin J, Link T, et al. Fractal analysis of radiographs: Assessment of trabecular bone structure and prediction of elastic modulus and strength. Med Phys. 1999;26(7):1330-1340.
  • Lee KI, Choi SC, Park TW, You DS. Fractal dimension calculated from two types of region of interest. Dentomaxillofac Radiol. 1999;28(5):284-289.
  • Jolley L, Majumdar S, Kapila S. Technical factors in fractal analysis of periapical radiographs. Dentomaxillofac Radiol. 2006;35(6):393-397.
  • Zabarović D, Jerolimov V, Carek V, et al. The effect of tooth loss on the TM-joint articular eminence inclination. Coll Antropol. 2000;24 Suppl 1:37-42.
  • Zheng H, Shi L, Lu H, et al. Influence of edentulism on the structure and function of temporomandibular joint. Heliyon. 2023;9(10):e20307.

Farklı Dişsizlik Türlerindeki Mandibuler Kondil Fraktal Boyutları ve Artiküler Eminens Eğimlerinin Karşılaştırmalı Değerlendirilmesi

Yıl 2024, Cilt: 26 Sayı: 2, 161 - 168, 20.08.2024
https://doi.org/10.24938/kutfd.1417105

Öz

Amaç: Dişsizlik türü ile artiküler eminens eğim (AEE) farkları arasında bir korelasyon olup olmadığının tespiti ve bu verilerin fraktal analiz ile saptanan mandibuler kondilin trabeküler yapısı ile karşılaştırılmasıdır.
Gereç ve Yöntemler: Dişsel durumlarına göre sınıflandırılan 4 gruba (n=22) ait toplamda 88 adet panoramik radyograftaki 176 adet temporamandibular eklem (TME), AEE ve fraktal boyut (FB) açısından Image J (National Institutes of Health. MD, USA) programı kullanarak bir radyoloji uzmanı tarafından değerlendirildi. Değerlerin normal dağılıma uygunluğu Shapiro- Wilk testi kullanılarak değerlendirildi. Dişsizlik durumu ve FB/AEE ilişkisi karşılaştırılırken tek yönlü ANOVA modeli ve Pearson korelasyon analizi kullanıldı. İstatistiksel anlamlılık düzeyi p<0.05 olarak alındı. Hesaplamalarda SPSS (ver. 23) istatistik paketi kullanıldı.
Bulgular: AEE, FB ve dişsizlik durumu arasında korelasyon saptanmadı. Ancak tek taraflı dişsiz grupların karşı tarafında AEE ile FB arasında negatif bir ilişki olduğu saptandı.
Sonuç: Dişli taraftaki çiğneme kuvvetinin fazla olması ve kondilin hareket alanının daralmasına bağlı AEE artışı TME'deki rezorpsiyon miktarını artırmıştır.

Kaynakça

  • Laskin DM, Greene CS, Hylander WL. Temporomandibular disorders: An evidence-based approach to diagnosis and treatment. Chicago, Quintessence, 2006.
  • Bermejo-Fenoll A, Puchades-Orts A, Sanchez del Campo F, Panchon-Ruiz A, Herrera-Lara M. Morphology of the meniscotemporal part of the temporomandibular joint and its biomechanical implications. Acta Anat (Basel).1987;129(3);129:220-226.
  • Hatcher DC, Faulkner MG, Hay A. Development of mechanical and mathematic models to study temporomandibular joint loading. J Prosthet Dent. 1986;55(3):377-384.
  • Pandis N, Karpac J, Trevino R, Williams B. A radiographic study of condyle position at various depths of cut in dry skulls with axially corrected lateral tomograms. Am J Orthod Dentofacial Orthop. 1991;100(2):116-122.
  • O'Ryan F, Epker BN. Temporomandibular joint function and morphology: Observations on the spectra of normalcy. Oral Surg Oral Med Oral Pathol. 1984;58(3):272-279.
  • Katsavrias EG. Changes in articular eminence inclination during the craniofacial growth period. Angle Orthod. 2002;72(3):258-264.
  • Jasinevicius TR, Pyle MA, Lalumandier JA, et al. Asymmetry of the articular eminence in dentate and partially edentulous populations. Cranio. 2006;24(2):85- 94.
  • Costa EDD, Peyneau PD, Roque-Torres GD, et al. The relationship of articular eminence and mandibular fossa morphology to facial profile and gender determined by cone beam computed tomography. Oral Surg Oral Med Oral Pathol Oral Radiol. 2019;128(6):660-666.
  • Kranjčić J, Šlaus M, Vodanović M, Peršić S, Vojvodić D. Articular eminence inclination in medieval and contemporary croatian population. Acta Clin Croat. 2016;55(4):529-534.
  • Hinton RJ. Changes in articular eminence morphology with dental function. Am J Phys Anthropol. 1981;54(4):439-455.
  • Pirttiniemi P, Kantomaa T, Tuominen M, Salo L. Articular disc and eminence modeling after experimental relocation of the glenoid fossa in growing rabbits. J Dent Res. 1994;73(3):536-543.
  • Raustia AM, Pirttiniemi P, Salonen MA, Pyhtinen J. Effect of edentulousness on mandibular size and condyle-fossa position. J Oral Rehabil. 1998;25(3):174-179.
  • Sa SC, Melo SL, Melo DP, Freitas DQ, Campos PS. Relationship between articular eminence inclination and alterations of the mandibular condyle: A CBCT study. Braz Oral Res. 2017;31:e25.
  • Schuster AJ, Pastorino DA, Marcello-Machado RM, Faot F. Influence of age and time since edentulism on masticatory function and quality of life in implant-retained mandibular overdenture wearers: 1-year results from a paired clinical study. Int J Oral Maxillofac Implants 2019;34(6):1466-1474.
  • Granados JI. The influence of the loss of teeth and attrition on the articular eminence. J Prosthet Dent. 1979;42(1):78- 85.
  • Tallents RH, Macher DJ, Kyrkanides S, Katzberg RW, Moss ME. Prevalence of missing posterior teeth and intraarticular temporomandibular disorders. J Prosthet Dent. 2002;87(1):45-50.
  • Unal Erzurumlu Z, Celenk P. A radiological evaluation of the effects of edentulousness on the temporomandibular joint. J Oral Rehabil. 2020;47(3):319-324.
  • Fang TH, Chiang MT, Hsieh MC, Kung LY, Chiu KC. Effects of unilateral posterior missing-teeth on the temporomandibular joint and the alignment of cervical atlas. PLoS One. 2020;15(12):e0242717.
  • Csadó K, Márton K, Kivovics P. Anatomical changes in the structure of the temporomandibular joint caused by complete edentulousness. Gerodontol. 2012;29(2):111- 116.
  • Oruba Z, Malisz P, Sendek J, et al. Flattening of the articular eminence is associated with the loss of occlusal support: Radiological study. Aust Dent J. 2020;65(1):53- 57.
  • Geraets WG. Comparison of two methods for measuring orientation. Bone. 1998;23(4):383-388.
  • Yi WJ, Heo MS, Lee SS, et al. Direct measurement of trabecular bone anisotropy using directional fractal dimension and principal axes of inertia. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2007;104(1):110- 116.
  • Arsan B, Köse TE, Çene E, Özcan İ. Assessment of the trabecular structure of mandibular condyles in patients with temporomandibular disorders using fractal analysis. Oral Surg Oral Med Oral Pathol Oral Radiol. 2017;123(3):382-391.
  • Demiralp K, Kurşun-Çakmak E, Bayrak S, et al. Trabecular structure designation using fractal analysis technique on panoramic radiographs of patients with bisphosphonate intake: A preliminary study. Oral Radiol. 2019;35(1):23-28.
  • Sümbüllü MA, Cağlayan F, Akgül HM, Yilmaz AB. Radiological examination of the articular eminence morphology using cone beam CT. Dentomaxillofac Radiol. 2012;41(3):234-240.
  • White SC, Rudolph DJ. Alterations of the trabecular pattern of the jaws in patients with osteoporosis. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1999;88(5):628-635.
  • Chiang MT, Li TI, Yeh HW, et al. Evaluation of missing- tooth effect on articular eminence inclination of temporomandibular joint. J Dental Sci. 2015;10(4):383- 387.
  • Fazzalari NL, Parkinson IH. Fractal properties of subchondral cancellous bone in severe osteoarthritis of the hip. J Bone Miner Res. 1997;12(4):632-640.
  • Dougherty G, Henebry GM. Fractal signature and lacunarity in the measurement of the texture of trabecular bone in clinical CT images. Med Eng Phys. 2001;23(6):369-380.
  • Majumdar S, Lin J, Link T, et al. Fractal analysis of radiographs: Assessment of trabecular bone structure and prediction of elastic modulus and strength. Med Phys. 1999;26(7):1330-1340.
  • Lee KI, Choi SC, Park TW, You DS. Fractal dimension calculated from two types of region of interest. Dentomaxillofac Radiol. 1999;28(5):284-289.
  • Jolley L, Majumdar S, Kapila S. Technical factors in fractal analysis of periapical radiographs. Dentomaxillofac Radiol. 2006;35(6):393-397.
  • Zabarović D, Jerolimov V, Carek V, et al. The effect of tooth loss on the TM-joint articular eminence inclination. Coll Antropol. 2000;24 Suppl 1:37-42.
  • Zheng H, Shi L, Lu H, et al. Influence of edentulism on the structure and function of temporomandibular joint. Heliyon. 2023;9(10):e20307.
Toplam 34 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Sağlık Kurumları Yönetimi
Bölüm Özgün Araştırma
Yazarlar

Mehmet Fatih Şentürk 0000-0002-1239-441X

Emine Sebnem Kursun Çakmak 0000-0002-7113-5450

Seval Bayrak 0000-0003-0819-4578

Beste İnceoğlu 0009-0006-0615-1709

Handan Ankaralı 0000-0002-3613-0523

Yayımlanma Tarihi 20 Ağustos 2024
Gönderilme Tarihi 9 Ocak 2024
Kabul Tarihi 13 Mayıs 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 26 Sayı: 2

Kaynak Göster

APA Şentürk, M. F., Kursun Çakmak, E. S., Bayrak, S., İnceoğlu, B., vd. (2024). COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı. Kırıkkale Üniversitesi Tıp Fakültesi Dergisi, 26(2), 161-168. https://doi.org/10.24938/kutfd.1417105
AMA Şentürk MF, Kursun Çakmak ES, Bayrak S, İnceoğlu B, Ankaralı H. COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı. Kırıkkale Üni Tıp Derg. Ağustos 2024;26(2):161-168. doi:10.24938/kutfd.1417105
Chicago Şentürk, Mehmet Fatih, Emine Sebnem Kursun Çakmak, Seval Bayrak, Beste İnceoğlu, ve Handan Ankaralı. “COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı”. Kırıkkale Üniversitesi Tıp Fakültesi Dergisi 26, sy. 2 (Ağustos 2024): 161-68. https://doi.org/10.24938/kutfd.1417105.
EndNote Şentürk MF, Kursun Çakmak ES, Bayrak S, İnceoğlu B, Ankaralı H (01 Ağustos 2024) COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı. Kırıkkale Üniversitesi Tıp Fakültesi Dergisi 26 2 161–168.
IEEE M. F. Şentürk, E. S. Kursun Çakmak, S. Bayrak, B. İnceoğlu, ve H. Ankaralı, “COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı”, Kırıkkale Üni Tıp Derg, c. 26, sy. 2, ss. 161–168, 2024, doi: 10.24938/kutfd.1417105.
ISNAD Şentürk, Mehmet Fatih vd. “COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı”. Kırıkkale Üniversitesi Tıp Fakültesi Dergisi 26/2 (Ağustos 2024), 161-168. https://doi.org/10.24938/kutfd.1417105.
JAMA Şentürk MF, Kursun Çakmak ES, Bayrak S, İnceoğlu B, Ankaralı H. COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı. Kırıkkale Üni Tıp Derg. 2024;26:161–168.
MLA Şentürk, Mehmet Fatih vd. “COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı”. Kırıkkale Üniversitesi Tıp Fakültesi Dergisi, c. 26, sy. 2, 2024, ss. 161-8, doi:10.24938/kutfd.1417105.
Vancouver Şentürk MF, Kursun Çakmak ES, Bayrak S, İnceoğlu B, Ankaralı H. COMPARATIVE EVALUATION OF ARTICULAR EMINENCE INCLINATION AND MANDIBULAR CONDYLE FRACTAL DIMENSIONS OF DIFFERENT TYPES OF EDENTULISMFarklı. Kırıkkale Üni Tıp Derg. 2024;26(2):161-8.

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