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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Biomechanical behaviour of temporomandibular joints during opening and closing of the mouth: A 3D finite element analysis
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Biomechanical behaviour of temporomandibular joints during opening and closing of the mouth: A 3D finite element analysis

机译:口腔打开和关闭过程中颞下颌关节的生物力学行为:3D有限元分析

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摘要

Temporomandibular joints (TMJs) constitute a pair of joints that connect the jawbone to the skull. TMJs are bilateral joints which work as one unit in conducting daily functions such as speaking, mastication, and other activities associated with the movement of the jaw. Issues associated with the TMJs may arise due to various factors-one such factor being the internal load on the TMJ. These issues may contribute to temporomandibular disorders (TMD). This study aims to evaluate the mandibular trajectories and the associated stress changes during the process of opening the mouth on the TMJs of an asymptomatic subject. The mouth opening motion was recorded by a motion capturing system using models of the mandible and maxilla constructed based on the computed tomography (CT). Two discs constructed based on magnetic resonance imaging (MRI). Finite element analysis was performed on the relative motion of the mandible to the maxilla and validated. The process modelled by these displacements provided less than 10% error in terms of deformation. The simulation results indicate that the lateral intermediate zone-the head and neck of the mandible-and the articular eminence sustained the most significant stresses during the mouth opening motion. The results also suggested that the stresses increase as the range of opening increases with the greatest von Mises stress, tensile, and compressive stress found at the position of maximal opening.
机译:颞下颌关节(TMJS)构成将颚骨连接到头骨的一对关节。 TMJS是双边关节,作为一个单位进行每日职能,如说话,咀嚼和与下颌运动相关的其他活动。由于各种因素,可能会出现与TMJS相关的问题 - 一种这样的因素是TMJ上的内部负载。这些问题可能有助于颞下颌障碍(TMD)。本研究旨在评估下颌骨轨迹和在嘴巴的无症状受试者的TMJ上的过程中的颌骨轨迹和相关的压力变化。通过使用基于计算机断层扫描(CT)构造的颌骨和颌骨模型的运动捕获系统记录口开口运动。基于磁共振成像(MRI)构造的两个盘。对颌骨下颌骨的相对运动进行有限元分析并验证。这些位移建模的过程在变形方面提供了小于10%的误差。模拟结果表明,横向中间区域 - 下颌骨和关节射出的头部和颈部在口腔开口运动期间持续最大的应力。结果还表明,随着在最大开口位置的最大损伤,拉伸和压缩应力的开口范围增加,应力增加。

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