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Mechanical and functional assessment of the wrist affected by rheumatoid arthritis: A finite element analysis

机译:类风湿关节炎的腕部机械和功能评估:有限元分析

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摘要

Understanding the pathomechanics involved in rheumatoid arthritis (RA) of the wrist provides valuable information, which will invariably allow various therapeutic possibilities to be explored. The computational modelling of this disease permits the appropriate simulation to be conducted seamlessly. A study that underpins the fundamental concept that produces the biomechanical changes in a rheumatoid wrist was thus conducted through the use of finite element method. The RA model was constructed from computed tomography datasets, taking into account three major characteristics: synovial proliferation, cartilage destruction and ligamentous laxity. As control, a healthy wrist joint model was developed in parallel and compared. Cartilage was modelled based on the shape of the articulation while the ligaments were modelled with linear spring elements. A load-controlled analysis was performed simulating physiological hand grip loading conditions. The results demonstrated that the diseased model produced abnormal wrist extension and stress distribution as compared to the healthy wrist model. Due to the weakening of the ligaments, destruction of the cartilage and lower bone density, the altered biomechanical stresses were particularly evident at the radioscaphoid and capitolunate articulations which correlate to clinical findings. These results demonstrate the robust finding of the developed RA wrist model, which accurately predicted the pathological process.
机译:了解手腕类风湿性关节炎(RA)的病理机制可提供有价值的信息,这将始终允许探索各种治疗方法。这种疾病的计算模型可以无缝地进行适当的模拟。因此,通过使用有限元方法进行了一项研究,该研究为类风湿腕部产生生物力学变化的基本概念奠定了基础。 RA模型是根据计算机断层扫描数据集构建的,同时考虑了三个主要特征:滑膜增生,软骨破坏和韧带松弛。作为对照,并行开发并比较了健康的腕关节模型。软骨是根据关节的形状建模的,而韧带是使用线性弹簧元件建模的。进行了负载控制的分析,以模拟生理上的手握负载情况。结果表明,与健康的腕部模型相比,患病模型产生了异常的腕部伸展和应力分布。由于韧带的减弱,软骨的破坏和较低的骨密度,改变的生物力学应力在放射性舟骨和capitolunate关节处尤为明显,这与临床表现有关。这些结果证明了已开发的RA手腕模型的强大发现,该模型可准确预测病理过程。

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