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首页> 外文期刊>Journal of Biomechanics >Finite element analysis of the temporomandibular joint during lateral excursions of the mandible.
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Finite element analysis of the temporomandibular joint during lateral excursions of the mandible.

机译:下颌骨侧向偏移时颞下颌关节的有限元分析。

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One of the most significant characteristics of the temporomandibular joint (TMJ) is that it is in fact composed of two joints. Several finite element simulations of the TMJ have been developed but none of them analysed the different responses of its two sides during nonsymmetrical movement. In this paper, a lateral excursion of the mandible was introduced and the biomechanical behaviour of both sides was studied. A three-dimensional finite element model of the joint comprising the bone components, both articular discs, and the temporomandibular ligaments was used. A fibre-reinforced porohyperelastic model was introduced to simulate the behaviour of the articular discs, taking into account the orientation of the fibres in each zone of these cartilage components. The mandible movement during its lateral excursion was introduced as the loading condition in the analysis. As a consequence of the movement asymmetry, the discs were subjected to different load distributions. It was observed that the maximal shear stresses were located in the lateral zone of both discs and that the lateral attachment of the ipsilateral condyle-disc complex suffered a large distortion, due to the compression of this disc against the inferior surface of the temporal bone. These results may be related with possible consequences of a common disorder called bruxism. Although it would be necessary to perform an exhaustive analysis of this disorder, including the contact forces between the teeth during grinding, it could be suggested that a continuous lateral movement of the jaw may lead to perforations of both discs in their lateral part and may damage the lateral attachments of the disc to the condyle.
机译:颞下颌关节(TMJ)的最重要特征之一是它实际上由两个关节组成。已经开发了几种TMJ的有限元模拟,但是没有一个能够分析非对称运动期间其两侧的不同响应。本文介绍了下颌骨的横向偏移,并研究了两侧的生物力学行为。使用了三维有限元模型的关节,包括骨骼成分,两个关节间盘和颞下颌韧带。考虑到这些软骨成分每个区域中纤维的方向,引入了纤维增强的多孔超弹性模型来模拟关节盘的行为。分析中引入下颌骨在横向偏移过程中的运动作为加载条件。由于运动不对称,圆盘承受了不同的载荷分布。观察到最大剪切应力位于两个椎间盘的外侧区域中,并且由于该椎间盘抵靠颞骨下表面的压缩,同侧con-椎间盘复合体的侧向附着受到很大的变形。这些结果可能与称为磨牙症的常见疾病的可能后果有关。尽管有必要对这种紊乱进行详尽的分析,包括在磨削过程中牙齿之间的接触力,但建议颌的连续横向运动可能会导致两个椎间盘的侧面穿孔,并可能损坏椎间盘与the的侧向连接。

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