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手臂外展过程中轴对齐对肩关节运动学分析的影响。

The effect of axis alignment on shoulder joint kinematics analysis during arm abduction.

作者信息

Levasseur Annie, Tétreault Patrice, de Guise Jacques, Nuño Natalia, Hagemeister Nicola

机构信息

Laboratoire de recherche en imagerie et orthopédie, Centre de recherche, Centre hospitalier de l'Université de Montréal (CHUM), Montréal, Canada.

出版信息

Clin Biomech (Bristol). 2007 Aug;22(7):758-66. doi: 10.1016/j.clinbiomech.2007.04.009. Epub 2007 Jun 8.

Abstract

BACKGROUND

A joint coordinate system allows coherence between the performed movement, its mathematical representation and the clinical interpretation of the kinematics of joint motion. In 2005, the International Society of Biomechanics (ISB) defined a joint coordinate system for the shoulder. To improve kinematics interpretation, the ISB suggested aligning the coordinate systems of the humerus and the scapula. Therefore, the aim of this research project was to determine how the alignment of the joint coordinate system axes can influence the interpretation of shoulder joint kinematics. More precisely, we wanted to investigate if mathematical alignment of the reference and moving coordinate system axes could facilitate the kinematic interpretation of a simple abduction movement without introducing additional coupled motion.

METHODS

An experiment was carried out on eight shoulder cadaveric specimens. Elevation of the arm in the scapular plane (abduction) was recorded using an electromagnetic tracking device. Three-dimensional angular displacements of the arm during elevation in the scapular plane were described using the standard ISB joint coordinate system, and using a modified joint coordinate system for which the axes were mathematically aligned.

FINDINGS

The results obtained revealed a difference in the interpretation of the starting angles between the ISB joint coordinate system and the aligned coordinate system. No difference was found in the interpretation of the angular range of motion (P<0.01).

INTERPRETATION

The aligned coordinate system provided a standardized starting angle of elevation that allows an easier clinical interpretation of shoulder kinematics.

摘要

背景

关节坐标系能够使所执行的运动、其数学表示以及关节运动学的临床解释之间保持连贯一致。2005年,国际生物力学学会(ISB)定义了一种肩部关节坐标系。为了改进运动学解释,ISB建议对齐肱骨和肩胛骨的坐标系。因此,本研究项目的目的是确定关节坐标系轴的对齐方式如何影响肩关节运动学的解释。更确切地说,我们想要研究参考坐标系和运动坐标系轴的数学对齐是否能够在不引入额外耦合运动的情况下促进对简单外展运动的运动学解释。

方法

对八个肩部尸体标本进行了一项实验。使用电磁跟踪装置记录肩胛骨平面内手臂的抬高(外展)情况。在肩胛骨平面内抬高过程中,手臂的三维角位移使用标准的ISB关节坐标系以及轴经过数学对齐的改良关节坐标系进行描述。

结果

所获得的结果显示,ISB关节坐标系和对齐坐标系在起始角度的解释上存在差异。在运动角度范围的解释上未发现差异(P<0.01)。

解释

对齐坐标系提供了一个标准化的抬高起始角度,使得对肩部运动学的临床解释更加容易。

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