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使用功能性髋关节中心和平均螺旋状膝关节轴的步态数据的重复性。

Repeatability of gait data using a functional hip joint centre and a mean helical knee axis.

作者信息

Besier Thor F, Sturnieks Daina L, Alderson Jacque A, Lloyd David G

机构信息

School of Human Movement and Exercise Science, University of Western Australia, 35 Stirling Highway, Crawley, WA 6907, Australia.

出版信息

J Biomech. 2003 Aug;36(8):1159-68. doi: 10.1016/s0021-9290(03)00087-3.

Abstract

Repeatability of traditional kinematic and kinetic models is affected by the ability to accurately locate anatomical landmarks (ALs) to define joint centres and anatomical coordinate systems. Numerical methods that define joint centres and axes of rotation independent of ALs may also improve the repeatability of kinematic and kinetic data. The purpose of this paper was to compare the repeatability of gait data obtained from two models, one based on ALs (AL model), and the other incorporating a functional method to define hip joint centres and a mean helical axis to define knee joint flexion/extension axes (FUN model). A foot calibration rig was also developed to define the foot segment independent of ALs. The FUN model produced slightly more repeatable hip and knee joint kinematic and kinetic data than the AL model, with the advantage of not having to accurately locate ALs. Repeatability of the models was similar comparing within-tester sessions to between-tester sessions. The FUN model may also produce more repeatable data than the AL model in subject populations where location of ALs is difficult. The foot calibration rig employed in both the AL and FUN model provided an easy alternative to define the foot segment and obtain repeatable data, without accurately locating ALs on the foot.

摘要

传统运动学和动力学模型的可重复性受准确确定解剖标志点(ALs)以定义关节中心和解剖坐标系能力的影响。独立于解剖标志点定义关节中心和旋转轴的数值方法也可能提高运动学和动力学数据的可重复性。本文的目的是比较从两种模型获得的步态数据的可重复性,一种基于解剖标志点(AL模型),另一种采用功能方法定义髋关节中心并采用平均螺旋轴定义膝关节屈伸轴(FUN模型)。还开发了一种足部校准装置,以独立于解剖标志点定义足部节段。与AL模型相比,FUN模型产生的髋关节和膝关节运动学和动力学数据的可重复性略高,其优点是无需准确确定解剖标志点。模型的可重复性在测试者内会话与测试者间会话的比较中相似。在难以确定解剖标志点位置的受试者群体中,FUN模型可能也会比AL模型产生更具可重复性的数据。AL模型和FUN模型中使用的足部校准装置提供了一种简单的替代方法,无需在足部准确确定解剖标志点即可定义足部节段并获得可重复的数据。

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