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用于提供姿势扰动的三自由度可移动平台的开发。

Development of a three-degrees-of-freedom moveable platform for providing postural perturbations.

作者信息

Chen C- L, Lee J-Y, Horng R-F, Lou S-Z, Su F-C

机构信息

Institute of Biomedical Engineering, National Cheng Kung University, 1 University Road, Tainan, 701, Taiwan, Republic of China.

出版信息

Proc Inst Mech Eng H. 2009 Jan;223(1):87-97. doi: 10.1243/09544119JEIM482.

Abstract

The purpose of this study was to design and develop a three-degrees-of-freedom moveable platform to provide postural perturbations for balance assessment and training. The platform consists of three motion mechanisms, which can provide forward-backward translation, upward-downward tilt, and clockwise-counterclockwise rotation. This platform can move in any of its degrees of freedom separately or simultaneously. The precision and accuracy of the platform movement were examined by calculating the standard deviations in repeated trials and comparing the real amplitude and velocity of the movement with the preset values. All the standard deviations in repeated trials were small in that the variation coefficients were less than 2 per cent, except that in the highest-velocity test, and all the mean differences were less than 1 mm for translational and 1 degree for tilt or rotational perturbations. The results demonstrated that the platform is a reliable and valid instrument for providing postural perturbations. The preliminary investigation of the kinematic postural responses to translational and tilt perturbation showed that this platform is a useful apparatus for balance research. Potential applications of this platform include investigation of the postural responses to yaw rotation or any combination of its degrees of freedom and studying the effects of perturbation-based balance-training programmes provided by this platform.

摘要

本研究的目的是设计并开发一个三自由度可移动平台,用于提供姿势扰动以进行平衡评估和训练。该平台由三个运动机构组成,可提供前后平移、上下倾斜以及顺时针-逆时针旋转。该平台能够在其任何一个自由度上单独或同时移动。通过计算重复试验中的标准差,并将运动的实际幅度和速度与预设值进行比较,对平台运动的精度和准确性进行了检验。除了最高速度测试外,重复试验中的所有标准差都很小,变异系数均小于2%,平移的所有平均差异均小于1毫米,倾斜或旋转扰动的平均差异均小于1度。结果表明,该平台是一种可靠且有效的提供姿势扰动的仪器。对平移和倾斜扰动的运动学姿势反应的初步研究表明,该平台是平衡研究的有用设备。该平台的潜在应用包括研究对偏航旋转或其任何自由度组合的姿势反应,以及研究该平台提供的基于扰动的平衡训练计划的效果。

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