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基于颞下颌关节紊乱病患者的活体计算机断层扫描图像的下颌运动时的应力分析。

Stress analysis during jaw movement based on vivo computed tomography images from patients with temporomandibular disorders.

机构信息

Department of Mechanical Engineering, College of Engineering, National Taiwan University, Taipei 106, Taiwan.

出版信息

Int J Oral Maxillofac Surg. 2013 Mar;42(3):386-92. doi: 10.1016/j.ijom.2012.07.005. Epub 2012 Aug 30.

Abstract

The purpose of this study is to develop three-dimensional (3D) finite element models of temporomandibular joints (TMJs) and to investigate stress distributions. To determine the causes of temporomandibular disorders (TMDs), the magnitude and location of the maximum stresses under physiological loading must be considered. Stress analysis TMD models were reconstructed from computed tomography (CT) data. Several studies have investigated finite element TMJ models, but few have used a bilateral mandible model that includes jaw closing and maximum opening. In this study, the authors defined an asymmetry index for the different stress values on each side joint; this index has not yet been investigated. According to clinical observation, one joint affects the other side joint during mastication. Three symptom-free volunteers and three symptomatic patients were selected as the control group (CG) and TMD group (TG), respectively. For the TG, data analysis indicated that the condyle was asymmetrical during jaw closing, while both the condyle and disc were slightly asymmetrical during jaw opening. The maximum stresses did not significantly differ between the CG and TG for either closing or opening of the jaw. The results of this study have a potential clinical benefit in terms of proving superior biomechanical behaviour.

摘要

本研究旨在建立颞下颌关节(TMJ)的三维(3D)有限元模型,并研究其应力分布。为了确定颞下颌关节紊乱病(TMD)的病因,必须考虑在生理负荷下最大应力的大小和位置。TMD 模型的应力分析是根据计算机断层扫描(CT)数据重建的。已有多项研究探讨了有限元 TMJ 模型,但很少有研究使用包括闭口和最大开口的双侧下颌骨模型。在本研究中,作者定义了每个关节侧不同应力值的不对称指数;这个指数尚未被研究过。根据临床观察,在咀嚼过程中,一个关节会影响另一侧关节。三名无症状志愿者和三名 TMD 患者分别作为对照组(CG)和 TMD 组(TG)。对于 TG,数据分析表明,在闭口时髁突是不对称的,而在开口时髁突和盘均有轻微的不对称。在闭口或开口时,CG 和 TG 之间的最大应力没有显著差异。本研究的结果在证明优越的生物力学行为方面具有潜在的临床意义。

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