Biomechanical behavior of the temporomandibular joint disc.

Eiji Tanaka, Theo van Eijden
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引用次数: 175

Abstract

The temporomandibular joint (TMJ) disc consists mainly of collagen fibers and proteoglycans constrained in the interstices of the collagen fiber mesh. This construction results in a viscoelastic response of the disc to loading and enables the disc to play an important role as a stress absorber during function. The viscoelastic properties depend on the direction (tension, compression, and shear) and the type of the applied loading (static and dynamic). The compressive elastic modulus of the disc is smaller than its tensile one because the elasticity of the disc is more dependent on the collagen fibers than on the proteoglycans. When dynamic loading occurs, the disc is likely to behave less stiffly than under static loading because of the difference of fluid flow through and out of the disc during loading. In addition, the mechanical properties change as a result of various intrinsic and extrinsic factors in life such as aging, trauma, and pathology. Information about the viscoelastic behavior of the disc is required for its function to be understood and, for instance, for a suitable TMJ replacement device to be constructed. In this review, the biomechanical behavior of the disc in response to different loading conditions is discussed.

颞下颌关节盘的生物力学行为。
颞下颌关节(TMJ)椎间盘主要由胶原纤维和蛋白聚糖组成,这些蛋白聚糖被限制在胶原纤维网的间隙中。这种结构导致阀瓣对载荷的粘弹性响应,并使阀瓣在功能过程中发挥重要的应力吸收作用。粘弹性特性取决于方向(拉伸、压缩和剪切)和施加载荷的类型(静态和动态)。椎间盘的压缩弹性模量小于其拉伸弹性模量,因为椎间盘的弹性更多地依赖于胶原纤维而不是蛋白聚糖。当发生动态加载时,由于加载期间流过和流出阀瓣的流体量不同,阀瓣的刚度可能低于静态加载。此外,由于生活中各种内在和外在因素,如衰老、创伤和病理,机械性能也会发生变化。为了了解椎间盘的功能,例如,为了构建合适的TMJ替代装置,需要有关椎间盘粘弹性行为的信息。在这篇综述中,我们讨论了椎间盘在不同载荷条件下的生物力学行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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