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首页> 外文期刊>BioMed research international >Biomechanical Analysis of Force Distribution in Human Finger Extensor Mechanisms
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Biomechanical Analysis of Force Distribution in Human Finger Extensor Mechanisms

机译:人体手指伸肌机制力分布的生物力学分析

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摘要

The complexities of the function and structure of human fingers have long been recognised. The in vivo forces in the human finger tendon network during different activities are critical information for clinical diagnosis, surgical treatment, prosthetic finger design, and biomimetic hand development. In this study, we propose a novel method for in vivo force estimation for the finger tendon network by combining a three-dimensional motion analysis technique and a novel biomechanical tendon network model. The extensor mechanism of a human index finger is represented by an interconnected tendinous network moving around the phalanx's dorsum. A novel analytical approach based on the "Principle of Minimum Total Potential Energy" is used to calculate the forces and deformations throughout the tendon network of the extensor mechanism when subjected to an external load and with the finger posture defined by measurement data. The predicted deformations and forces in the tendon network are in broad agreement with the results obtained by previous experimental in vitro studies. The proposed methodology provides a promising tool for investigating the biomechanical function of complex interconnected tendon networks in vivo.
机译:长期以来,人手指的功能和结构的复杂性得到了认可。在不同活动期间人类指腱网络中的体内力是临床诊断,手术治疗,假手指设计和仿生发育的关键信息。在这项研究中,通过组合三维运动分析技术和新的生物力学腱网络模型,提出了一种用于手指肌腱网络的体内力估计的新方法。人类食指的延伸机构由围绕鸬鹚的背部移动的互连的腹股带表示。一种基于“最小总势能的原理”的新的分析方法用于计算当经受外部负载和由测量数据定义的手指姿势时伸肌机构的肌腱网络的整个肌腱网络中的力和变形。肌腱网络中的预测变形和力与先前实验体外研究获得的结果相吻合。该方法提供了一种有助于研究体内复杂互连的肌腱网络的生物力学功能的有希望的工具。

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