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首页> 外文期刊>IEEE transactions on rehabilitation engineering >A functional task analysis and motion simulation for the development of a powered upper-limb orthosis
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A functional task analysis and motion simulation for the development of a powered upper-limb orthosis

机译:用于开发上肢矫形器的功能任务分析和运动仿真

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Describes research work directed towards the development and application of a design methodology to determine the optimal configuration of a powered upper-limb orthosis. The design objective was to minimize the orthosis complexity, defined as the number of degrees of freedom, while maintaining the ability to perform specific tasks. This objective was achieved in three stages. First, potential users of a powered orthosis were interviewed to determine their priority tasks. Secondly, the natural arm motions of able-bodied individuals performing the priority tasks were profiled using a video tracking system. Finally, a kinematic simulation algorithm was developed and employed in order to evaluate whether a proposed orthosis configuration could perform the priority tasks. The research results indicate that task functionality is overly compromised for orthosis configurations with less than five degrees of freedom, plus prehension. Acceptable task performance, based on the specific priority tasks considered, was achieved in the simulations of two different orthosis configurations with five degrees of freedom. In the first design option, elevation (rotation about a horizontal axis through the shoulder) and radial/ulnar deviation are fixed, while in the second option wrist flexion and radial/ulnar deviation are fixed. A prototype orthosis is currently being developed using the first design option.
机译:描述针对设计方法的开发和应用来确定动力上肢矫正器的最佳配置的研究工作。设计目标是最大程度地减少矫形器的复杂度(定义为自由度的数量),同时保持执行特定任务的能力。该目标分三个阶段实现。首先,对动力矫形器的潜在用户进行了采访,以确定他们的优先任务。其次,使用视频跟踪系统分析了执行优先任务的身体强健的人的自然手臂动作。最后,开发并采用了运动学仿真算法,以评估建议的矫形器配置是否可以执行优先任务。研究结果表明,对于少于5个自由度加矫正力的矫形器配置,任务功能被过度损害。基于所考虑的特定优先级任务,可以通过模拟两个具有五个自由度的矫形器配置来实现可接受的任务性能。在第一种设计方案中,固定高度(绕通过肩膀的水平轴旋转)和径向/尺骨偏差,而在第二种选择中,腕部屈曲和径向/尺骨偏差是固定的。目前正在使用第一种设计方案开发矫形器原型。

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