髁突
医学
固定(群体遗传学)
口腔正畸科
有限元法
流离失所(心理学)
变形(气象学)
内固定
拉力螺钉
压力(语言学)
牙科
髓内棒
下颌骨(节肢动物口器)
颞下颌关节
生物力学
作者
Ricardo Augusto Conci,R. Zanin,Fernando de Oliveira Andriola,Guilherme Genehr Fritscher,Cláiton Heitz
标识
DOI:10.1097/scs.0000000000012002
摘要
Mandibular fractures account for 42% of maxillofacial injuries, with condylar fractures representing 25%-35% of these cases. Despite the prevalence, the optimal method for treating condylar fractures remains debated, though internal rigid fixation is commonly used for stability. Recent focus has shifted to evaluating specific fixation methods for condylar fractures, including single miniplates, double miniplates, lag screws, and 3D plates, aiming to determine if a single miniplate can be as effective as or better than more complex systems. This study employs finite element analysis (FEA) to evaluate a novel fixation device for condylar fractures, which involves an intramedullary neck screw fixed with additional screws. Using 3D models of the mandible, miniplates, and screws, simulations were performed to assess stress distribution and displacement under varying loads. The analysis revealed that the fixation system provided stable results with minimal deformation and stress concentration in critical areas. The device demonstrated adequate stability, with no mechanical failures observed. The study concludes that the new fixation technique offers a viable alternative for treating mandibular condylar fractures, potentially simplifying the procedure and reducing costs compared with more complex fixation methods.
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