Biomechanical evaluation of various internal fixation patterns for unilateral mandibular condylar base fractures: A three-dimensional finite element analysis
Author:
Publisher
Elsevier BV
Subject
Mechanics of Materials,Biomedical Engineering,Biomaterials
Reference40 articles.
1. Comparative evaluation of clinical outcomes using Delta plates and conventional miniplates for internal fixation of mandibular condylar fractures in adults;Ahuja;J. Oral Maxillofac. Surg.,2018
2. Does the surgical approach for treating mandibular condylar fractures affect the rate of seventh cranial nerve injuries? A systematic review and meta-analysis based on a new classification for surgical approaches;Al-Moraissi;J. Cranio-Maxillo-Fac. Surg.,2018
3. Three-dimensional titanium miniplates for fixation of subcondylar mandibular fractures: comparison of five designs using patient-specific finite element analysis;Albogha;J. Cranio-Maxillo-Fac. Surg.,2018
4. Evaluation of facial nerve following open reduction and internal fixation of subcondylar fracture through retromandibular transparotid approach;Bhutia;Br. J. Oral Maxillofac. Surg.,2014
5. European Maxillofacial Trauma (EURMAT) project: a multicentre and prospective study;Boffano;J. Cranio-Maxillo-Fac. Surg.,2015
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1. Biomechanical evaluation of various rigid internal fixation modalities for condylar-base-associated multiple mandibular fractures: A finite element analysis;Medical & Biological Engineering & Computing;2024-05-03
2. Stress distribution for mandibular extra-alveolar anchorage at different angles and force magnitudes: a finite element study;Computer Methods in Biomechanics and Biomedical Engineering;2023-08-30
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