基于桡、尺关节轴向力分布的人体腕关节有限元模型的建立及桡腕关节接触验证。

IF 1.7 4区 医学 Q4 BIOPHYSICS
Andres Mena, Ronit Wollstein, James Yang
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引用次数: 0

摘要

本研究通过对一位68岁男性(I型腕关节)的CT扫描,建立了人类腕关节的综合有限元模型。该模型通过肌腱驱动模拟和掌骨载荷抓取生物力学来研究腕部轴向载荷的生物力学,从而复杂地捕获骨和软组织几何形状。通过评估桡骨和尺骨轴向载荷分布、桡腕关节接触模式和其他标准有限元指标进行验证。结果显示了载荷的径向传递,与过去十年进行的腕部有限元模型和其他实验研究的结果一致。我们的研究结果证实了该模型在再现已知关键生物力学方面的功效,为未来正在进行的腕部生物力学挑战和病理机制研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Finite Element Model of the Human Wrist Joint With Radial and Ulnar Axial Force Distribution and Radiocarpal Contact Validation.

This study presents a comprehensive finite element (FE) model for the human wrist, constructed from a CT scan of a 68-year-old male (type 1 wrist). This model intricately captures the bone and soft tissue geometries to study the biomechanics of wrist axial loading through tendon-driven simulations and grasping biomechanics using metacarpal loads. Validation is carried out by assessing the radial and ulnar axial loading distribution, radiocarpal articulation contact patterns, and other standard finite element metrics. The results show radial transmission of the load, consistent with results from wrist finite element models conducted in the last decade and other experimental studies. Our results confirm the model's efficacy in reproducing key known biomechanical aspects, laying the groundwork for future investigations into ongoing wrist biomechanics challenges and pathology mechanism studies.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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