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Quantitative investigation of ligament strains during physical tests for sacroiliac joint pain using finite element analysis

机译:physical关节疼痛物理测试中韧带应变的有限元分析

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摘要

It may be assumed that the stability is affected when some ligaments are injured or loosened, and this joint instability causes sacroiliac joint pain. Several physical examinations have been used to diagnose sacroiliac pain and to isolate the source of the pain. However, more quantitative and objective information may be necessary to identify unstable or injured ligaments during these tests due to the lack of understanding of the quantitative relationship between the physical tests and the biomechanical parameters that may be related to pains in the sacroiliac joint and the surrounding ligaments. In this study, a three-dimensional finite element model of the sacroiliac joint was developed and the biomechanical conditions for six typical physical tests such as the compression test, distraction test, sacral apex pressure test, thigh thrust test, Patrick's test, and Gaenslen's test were modelled. The sacroiliac joint contact pressure and ligament strain were investigated for each test. The values of contact pressure and the combination of most highly strained ligaments differed markedly among the tests. Therefore, these findings in combination with the physical tests would be helpful to identify the pain source and to understand the pain mechanism. Moreover, the technology provided in this study might be a useful tool to evaluate the physical tests, to improve the present test protocols, or to develop a new physical test protocol.
机译:可以假设当一些韧带受伤或松动时,稳定性会受到影响,并且这种关节不稳定会导致sa关节疼痛。几种身体检查已被用来诊断sa关节疼痛并找出疼痛的根源。但是,由于缺乏对可能与sa关节和周围疼痛相关的物理测试与生物力学参数之间的定量关系的了解,可能需要更多的定量和客观信息来识别不稳定或受伤的韧带。韧带。在这项研究中,建立了sa关节的三维有限元模型,并针对六个典型的物理测试(例如压缩测试,牵引测试,尖压力测试,大腿推力测试,帕特里克测试和Gaenslen测试)的生物力学条件被建模。对于每个测试,研究sa关节的接触压力和韧带应变。试验之间的接触压力值和最高度拉紧的韧带组合明显不同。因此,这些发现与物理测试相结合将有助于识别疼痛源并了解疼痛机理。此外,这项研究中提供的技术可能是评估物理测试,改进当前测试协议或开发新的物理测试协议的有用工具。

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