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对嵌入双带跑步机并配备两个测力板的运动平台的评估。

Evaluation of motion platform embedded with dual belt treadmill instrumented with two force plates.

作者信息

Sinitski Emily H, Lemaire Edward D, Baddour Natalie

机构信息

The Ottawa Hospital Research Institute Centre for Research and Development, Ottawa, Canada;

出版信息

J Rehabil Res Dev. 2015;52(2):221-34. doi: 10.1682/JRRD.2013.11.0244.

Abstract

Motek Medical's Computer Aided Rehabilitation Environment (CAREN)-Extended system is a virtual environment primarily used in physical rehabilitation and biomechanical research. This virtual environment consists of a 180 degree projection screen used to display a virtual scene, a 12-camera motion capture system, and a six degree of freedom actuated platform equipped with a dual-belt treadmill and two force plates. The goal of this article was to investigate the performance characteristics associated with a "treadmill-motion platform" configuration and how system operation can affect the data collected. Platform static and dynamic characteristics were evaluated by translating or rotating the platform over progressively larger distances and comparing input and measured values. Treadmill belt speed was assessed with and without a person walking on the platform and at different orientations. Force plate measurements were examined when the treadmill was in operation, during ambulation, and over time to observe the baseline drift. Platform acceleration was dependent on the distance travelled and system settings. Treadmill speed variability was greatest at faster speeds. Force plate measurements were affected by platform and treadmill operation, contralateral impact forces during gait, and baseline drift. Knowledge of performance characteristics and their effect on outcome data is crucial for effective design of CAREN research protocols and rehabilitation scenarios.

摘要

莫泰克医疗公司的计算机辅助康复环境(CAREN)扩展系统是一个主要用于物理康复和生物力学研究的虚拟环境。这个虚拟环境由一个用于显示虚拟场景的180度投影屏幕、一个12摄像头运动捕捉系统以及一个配备双带跑步机和两个测力板的六自由度驱动平台组成。本文的目的是研究与“跑步机 - 运动平台”配置相关的性能特征以及系统操作如何影响所收集的数据。通过在逐渐增大的距离上平移或旋转平台并比较输入值和测量值来评估平台的静态和动态特性。在平台上有人行走和无人行走以及不同方向的情况下评估跑步机皮带速度。在跑步机运行期间、步行过程中以及随时间观察测力板测量值以观察基线漂移。平台加速度取决于行进距离和系统设置。跑步机速度变异性在较快速度时最大。测力板测量值受平台和跑步机操作、步态期间的对侧冲击力以及基线漂移的影响。了解性能特征及其对结果数据的影响对于有效设计CAREN研究方案和康复场景至关重要。

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