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人体颞下颌关节软骨结构的三维有限元分析

Three-dimensional finite element analysis of the cartilaginous structures in the human temporomandibular joint.

作者信息

Beek M, Koolstra J H, van Ruijven L J, van Eijden T M

机构信息

Department of Functional Anatomy, Academic Center for Dentistry Amsterdam (ACTA), The Netherlands.

出版信息

J Dent Res. 2001 Oct;80(10):1913-8. doi: 10.1177/00220345010800101001.

Abstract

While the movability of the human temporomandibular joint is great, the strains and stresses in the cartilaginous structures might largely depend on the position of the mandible with respect to the skull. This hypothesis was investigated by means of static three-dimensional finite element simulations involving different habitual condylar positions. Furthermore, the influence of several model parameters was examined by sensitivity analyses. The results indicated that the disc moved together with the condyle in the anterior direction without the presence of ligaments and the lateral pterygoid muscle. By adapting its shape to the changing geometry of the articular surfaces, the disc prevented small contact areas and thus local peak loading. In a jaw-closed configuration, the influence of 30 degrees variations of the loading direction was negligible. The load distribution capability of the disc appeared to be proportional to its elasticity and was enhanced by the fibrocartilage layers on the articular surfaces.

摘要

虽然人类颞下颌关节的活动度很大,但软骨结构中的应变和应力可能在很大程度上取决于下颌骨相对于颅骨的位置。通过涉及不同习惯性髁突位置的静态三维有限元模拟对这一假设进行了研究。此外,通过敏感性分析研究了几个模型参数的影响。结果表明,在没有韧带和翼外肌的情况下,盘状结构与髁突一起向前移动。通过使其形状适应关节面不断变化的几何形状,盘状结构防止了接触面积过小,从而避免了局部峰值负荷。在闭口状态下,加载方向30度变化的影响可以忽略不计。盘状结构的负荷分布能力似乎与其弹性成正比,并且关节面上的纤维软骨层增强了这种能力。

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