Publication: Effects of condylar neck inclination and counterclockwise rotation on the stress distribution of the temporomandibular joint
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Alizada S.
Diker N.
DOLANMAZ D.
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Abstract
Three different kinds of condylar inclination were manually modelled anteriorly inclined condylar neck, vertical condylar neck, and posteriorly inclined condylar neck. Three different maxillary impactions were simulated to evaluate the effect of counterclockwise rotation. The von Misses stresses of the disc, compressive stresses of the glenoid fossa, and compressive stresses of the condyle were the highest in the models with posteriorly inclined neck and lowest in the models with vertical condylar neck design. Stresses of the temporomandibular joint increase with the counterclockwise rotation of the maxilla-mandibular complex. The posteriorly inclined neck should be considered a risk factor for condylar resorption with increased counterclockwise rotation.
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Bilgisayar Bilimleri, Bilgisayar Grafiği, Biyomedikal Mühendisliği, Mühendislik ve Teknoloji, Computer Sciences, Computer Graphics, Biomedical Engineering, Engineering and Technology, Bilgisayar Bilimi İnterdisipliner Uygulamalar, Bilgisayar Bilimi, Mühendislik Bilişim Ve Teknoloji (Eng), Mühendislik Biyomedikal, Mühendislik, Computer Science Interdisciplinary Applications, Computer Science, Engineering Computing & Technology (Eng), Engineering Biomedical, Engineering, Genel Mühendislik, Biyomedikal mühendisliği, Mühendislik (çeşitli), Yer Bilimlerinde Bilgisayarlar, Bilgisayar Bilimi Uygulamaları, Bilgisayar Grafikleri ve Bilgisayar Destekli Tasarım, Bilgisayar Bilimi (çeşitli), Genel Bilgisayar Bilimi, Biyomühendislik, Fizik Bilimleri, General Engineering, Engineering (miscellaneous), Computers in Earth Sciences, Computer Science Applications, Computer Graphics and Computer-Aided Design, Computer Science (miscellaneous), General Computer Science, Bioengineering, Physical Sciences
Citation
Alizada S., Diker N., DOLANMAZ D., "Effects of condylar neck inclination and counterclockwise rotation on the stress distribution of the temporomandibular joint", COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2024