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下颌髁突骨折三种内固定方式的有限元分析

Finite element analysis of three patterns of internal fixation of fractures of the mandibular condyle.

作者信息

Aquilina Peter, Chamoli Uphar, Parr William C H, Clausen Philip D, Wroe Stephen

机构信息

Department of Oral & Maxillofacial Surgery, Westmead Hospital, Sydney, Australia.

出版信息

Br J Oral Maxillofac Surg. 2013 Jun;51(4):326-31. doi: 10.1016/j.bjoms.2012.08.007. Epub 2012 Sep 11.

Abstract

The most stable pattern of internal fixation for fractures of the mandibular condyle is a matter for ongoing discussion. In this study we investigated the stability of three commonly used patterns of plate fixation, and constructed finite element models of a simulated mandibular condylar fracture. The completed models were heterogeneous in the distribution of bony material properties, contained about 1.2 million elements, and incorporated simulated jaw-adducting musculature. Models were run assuming linear elasticity and isotropic material properties for bone. This model was considerably larger and more complex than previous finite element models that have been used to analyse the biomechanical behaviour of differing plating techniques. The use of two parallel 2.0 titanium miniplates gave a more stable configuration with lower mean element stresses and displacements over the use of a single miniplate. In addition, a parallel orientation of two miniplates resulted in lower stresses and displacements than did the use of two miniplates in an offset pattern. The use of two parallel titanium plates resulted in a superior biomechanical result as defined by mean element stresses and relative movement between the fractured fragments in these finite element models.

摘要

下颌髁突骨折最稳定的内固定方式一直是个有待持续探讨的问题。在本研究中,我们调查了三种常用钢板固定方式的稳定性,并构建了模拟下颌髁突骨折的有限元模型。完成的模型在骨质材料属性分布上具有异质性,包含约120万个单元,并纳入了模拟的颌内收肌肉组织。模型运行时假设骨具有线弹性和各向同性材料属性。该模型比以往用于分析不同接骨板技术生物力学行为的有限元模型要大得多且复杂得多。与使用单个微型钢板相比,使用两个平行的2.0钛微型钢板能提供更稳定的结构,平均单元应力和位移更低。此外,与采用错位模式使用两个微型钢板相比,两个微型钢板平行排列时应力和位移更低。在这些有限元模型中,按照平均单元应力和骨折碎片之间的相对移动来定义,使用两个平行钛板产生了更优的生物力学结果。

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