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基于计算得出的等长约束和基于规则的运动的腕骨力学统一模型——稳定中柱理论。

Unifying model of carpal mechanics based on computationally derived isometric constraints and rules-based motion - the stable central column theory.

作者信息

Sandow M J, Fisher T J, Howard C Q, Papas S

机构信息

1Department of Orthopaedics and Trauma, University of Adelaide, Adelaide, Australia.

出版信息

J Hand Surg Eur Vol. 2014 May;39(4):353-63. doi: 10.1177/1753193413505407. Epub 2013 Sep 26.

Abstract

This study was part of a larger project to develop a (kinetic) theory of carpal motion based on computationally derived isometric constraints. Three-dimensional models were created from computed tomography scans of the wrists of ten normal subjects and carpal spatial relationships at physiological motion extremes were assessed. Specific points on the surface of the various carpal bones and the radius that remained isometric through range of movement were identified. Analysis of the isometric constraints and intercarpal motion suggests that the carpus functions as a stable central column (lunate-capitate-hamate-trapezoid-trapezium) with a supporting lateral column (scaphoid), which behaves as a 'two gear four bar linkage'. The triquetrum functions as an ulnar translation restraint, as well as controlling lunate flexion. The 'trapezoid'-shaped trapezoid places the trapezium anterior to the transverse plane of the radius and ulna, and thus rotates the principal axis of the central column to correspond to that used in the 'dart thrower's motion'. This study presents a forward kinematic analysis of the carpus that provides the basis for the development of a unifying kinetic theory of wrist motion based on isometric constraints and rules-based motion.

摘要

本研究是一个更大项目的一部分,该项目旨在基于计算得出的等距约束条件,建立一个腕关节运动的(动力学)理论。通过对十名正常受试者手腕的计算机断层扫描创建三维模型,并评估生理运动极限状态下腕骨的空间关系。确定了在整个运动范围内保持等距的各腕骨和桡骨表面上的特定点。对等距约束和腕骨间运动的分析表明,腕骨作为一个稳定的中央柱(月骨-头状骨-钩骨-梯形骨-大多角骨)发挥作用,并有一个支撑性的外侧柱(舟骨),其表现为一个“双齿轮四杆联动装置”。三角骨起到尺侧平移约束的作用,同时控制月骨的屈曲。“梯形”形状的梯形骨将大多角骨置于桡骨和尺骨横平面的前方,从而使中央柱的主轴旋转,以对应于“掷镖者动作”中使用的主轴。本研究提出了腕骨的正向运动学分析,为基于等距约束和基于规则的运动建立统一的腕关节运动动力学理论提供了基础。

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