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Three Dimensional Finite Element Analysis on the Morphological Change of The Transverse Carpal Ligament

机译:腕横韧带形态变化的三维有限元分析

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Carpal tunnel syndrome (CTS) has been defined as an entrapment neuropathy of the median nerve. The high social and economic costs of carpal tunnel syndrome lead to a surge in the studies on it in these years. Although studies provide evidence that lengthening the transverse carpal ligament could be a possible alternative treatment for carpal tunnel syndrome, little is known about the effects of the mechanical properties of TCL on its morphological changes under mechanical loads. Based on CT scan images, a three-dimensional finite element model of the carpal tunnel modeled as a tunnel structure was constructed for the first time. The effects of different elastic modulus (100-500MPa) and Poisson's ratio (0.3-0.49) of the transverse carpal ligament on its morphological changes were analyzed using the present finite element model. As the elastic modulus increased, the arch height of the transverse carpal ligament decreased greatly. And the TCL arch height decreased much slower as the Poisson' ratio increased from 0.30-0.40 than it did as the Poisson's ration increased from 0.4-0.49.
机译:腕管综合征(CTS)被定义为中位神经的血肿性神经病变。腕管综合征的高社会和经济成本导致这些年来研究它的研究。虽然研究提供了延长横向腕韧带的证据,但是对于腕管综合征可能是一种可能的替代治疗方法,对于TCL机械性能的影响几乎是知之甚少,对机械负荷下的其形态变化。基于CT扫描图像,首次构建了作为隧道结构建模的腕管的三维有限元模型。使用本发明的有限元模型分析了不同弹性模量(100-500MPA)和泊松比(0.3-0.49)对其形态变化的影响。随着弹性模量的增加,横向腕韧带的拱形高度大大降低。随着泊松比0.40从0.4-0.49增加,TCL弓形高度从0.30-0.40增加到0.30.40,TCL拱高减少了较慢。

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