Effect of Various Degrees of Anterior Disc Displacement on the Biomechanical Response of the Masticatory System.

IF 1.7 4区 医学 Q4 BIOPHYSICS
Haidong Teng, Tinghui Sun, Jingheng Shu, Bingmei Shao, Zhan Liu
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引用次数: 0

Abstract

Anterior disc displacement (ADD) is one of the most prevalent temporomandibular disorders (TMD). It was widely recognized that occlusal factors could affect temporomandibular joint (TMJ). However, the impacts of ADD on the biomechanical environment of TMJ and occlusion are still unclear. This study aimed to describe the effects of ADD on the masticatory system, including TMJ and occlusion. The finite element model (FEM) was constructed based on the medical images of a healthy adult male. The complete skull, masticatory muscles, TMJs, and related ligaments were included. Three FEMs with different degrees of ADD were constructed with disc-condyle angles of 10 deg, 20 deg, and 30 deg. The muscle forces corresponding to intercuspal clenching (ICC) were applied as the loading condition. Four models were conducted: normal, mild, moderate, and severe ADD. It was found that the overall stress distribution was relatively consistent across the four models. The contact stress on the TMJ and occlusion in severe ADD was visibly different from the other three models. In addition, the contact stress on the condyle gradually increased with the increasing occlusal strength. Abnormally high-stress concentration began to appear on the condyle at 30% muscle strength. Moderate ADD was more of a transitional stage. Compared to mild and moderate ADD, severe ADD had visibly effects on the stress response of the TMJ and the entire mandible (including occlusion), such as abnormally high stresses of the condyle, stress concentration on the second molar, and prone to disc extrusion and anterior slippage during high-strength occlusion.

不同程度前盘移位对咀嚼系统生物力学反应的影响。
前盘移位(ADD)是最常见的颞下颌疾病(TMD)之一。咬合因素对颞下颌关节(TMJ)的影响已被广泛认识。然而,ADD对颞下颌关节生物力学环境和咬合的影响尚不清楚。本研究旨在描述ADD对包括TMJ和咬合在内的咀嚼系统的影响。以健康成年男性的医学图像为基础,建立了有限元模型。包括完整的颅骨、咀嚼肌、颞下颌关节和相关韧带。采用10°、20°和30°的椎间盘-髁角构建了3个不同ADD度的fem。以牙间咬合所对应的肌力作为加载条件。对正常、轻度、中度和重度ADD进行了四种模型的研究,发现四种模型的整体应激分布相对一致。重度ADD的颞下颌关节接触应力和咬合与其他三种模型有明显差异。此外,随着咬合强度的增加,髁突上的接触应力逐渐增大。当肌力达到30%时,髁突开始出现异常的高应力集中。中度ADD更多的是过渡阶段。与轻度和中度ADD相比,重度ADD对TMJ和整个下颌骨(包括咬合)的应力反应有明显影响,如髁突应力异常高,第二磨牙应力集中,高强度咬合时容易出现椎间盘突出和前牙滑移。
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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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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