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A fluid-immersed multi-body contact finite element formulation for median nerve stress in the carpal tunnel

机译:腕管正中神经应力的液浸式多体接触有限元配方

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摘要

Carpal tunnel syndrome (CTS) is among the most important of the family of musculoskeletal disorders caused by chronic peripheral nerve compression. Despite the large body of research in many disciplinary areas aimed at reducing CTS incidence and/or severity, means for objective characterization of the biomechanical insult directly responsible for the disorder have received little attention. In this research, anatomical image-based human carpal tunnel finite element (FE) models were constructed to enable study of median nerve mechanical insult. The formulation included large-deformation multi-body contact between the nerve, the nine digital flexor tendons, and the carpal tunnel boundary. These contact engagements were addressed simultaneously with nerve and tendon fluid-structural interaction (FSI) with the synovial fluid within the carpal tunnel. The effects of pertinent physical parameters on median nerve stress were explored. The results suggest that median nerve stresses due to direct structural contact are typically far higher than those from fluid pressure.
机译:腕管综合症(CTS)是由慢性周围神经压迫引起的肌肉骨骼疾病家族中最重要的一种。尽管在许多学科领域进行了大量旨在降低CTS发生率和/或严重程度的研究,但是客观表征直接导致疾病的生物力学损伤的手段却很少受到关注。在这项研究中,建立了基于解剖图像的人类腕管有限元(FE)模型,以能够研究正中神经机械损伤。该配方包括神经,九个指屈肌腱和腕管边界之间的大变形多体接触。通过腕管内滑液的神经和肌腱液-结构相互作用(FSI)同时解决了这些接触。探索了相关的物理参数对正中神经应激的影响。结果表明,由于直接结构接触而引起的中位神经压力通常远高于来自流体压力的压力。

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