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Movement characteristics of upper extremity prostheses during basic goal-directed tasks.

机译:在目标导向的基本任务中,上肢假肢的运动特征。

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摘要

BACKGROUND: After an upper limb amputation a prosthesis is often used to restore the functionality. However, the frequency of prostheses use is generally low. Movement kinematics of prostheses use might suggest origins of this low use. The aim of this study was to reveal movement patterns of prostheses during basic goal-directed actions in upper limb prosthetic users and to compare this with existing knowledge of able-bodied performance during these actions. METHODS: Movements from six users of upper extremity prostheses were analyzed, three participants with a hybrid upper arm prosthesis, and three participants with a myoelectric forearm prosthesis. Two grasping tasks and a reciprocal pointing task were investigated during a single lab session. Analyses were carried out on the kinematics of the tasks. FINDINGS: When grasping, movements with both prostheses showed asymmetric velocity profiles of the reach and had a plateau in the aperture profiles. Reach and grasp were decoupled. Kinematics with the prostheses differed in that the use of upper arm prostheses required more time to execute the movements, while the movements were less smooth, more asymmetric, and showed more decoupling between reach and grasp. The pointing task showed for both prostheses less harmonic movements with higher task difficulty. INTERPRETATION: Characterizing prosthetic movement patterns revealed specific features of prosthetic performance. Developments in technology and rehabilitation should focus on these issues to improve prosthetic use, in particular on improving motor characteristics and the control of the elbow, and learning to coordinate the reach and the grasp component in prehension.
机译:背景:上肢截肢后通常使用假体来恢复功能。但是,假肢的使用频率通常较低。假肢运动的运动学可能暗示了这种低使用率的起源。这项研究的目的是揭示上肢假肢使用者在基本目标定向动作期间假肢的运动模式,并将其与这些动作中身体健全表现的现有知识进行比较。方法:分析了六名上肢假肢使用者的运动,三名混合上臂假肢的参与者和三名肌电前臂假肢的参与者。在一次实验中研究了两个抓紧任务和一个相互指向任务。对任务的运动学进行了分析。结果:抓住时,两个假体的运动均显示出伸臂的速度分布不对称,并且孔径分布呈平稳状态。达到和掌握是分离的。假肢的运动学差异在于,上臂假肢的使用需要更多的时间来执行动作,而动作不那么平滑,更不对称,并且在伸直和抓握之间表现出更多的解耦。对于两个假体,指向任务显示出较少的谐波运动,而任务难度更高。解释:表征假肢运动模式揭示了假肢性能的特定特征。技术和康复的发展应集中在这些问题上,以改善假肢的使用,特别是改善运动特性和肘部的控制,并学会协调手感的伸直和抓握部分。

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