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A Bio-feedback Training and Evaluation System for Directional Control of Pinch Force

机译:捏力方向控制的生物反馈训练与评估系统

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Hand function recovery is an urgent demand in stroke patients. Pinch with the thumb and index finger is a fundamental form for object manipulation and thus plays a key role in dexterous hand function. To improve the post-stroke hand function, particularly the pinch force control, with low-cost, easy-to-use and customer-friendly training devices would be a desirable direction for hand rehabilitation. This study aimed to develop a novel bio-feedback system integrating both training and evaluation of the directional control of pinch forces. The system included both hardware and software. The effects of the bio-feedback system were examined through an experiment. Twenty-six healthy subjects participated in the experiment. Each subject performed low-level precision pinch with their thumb and index finger for two training sessions and three evaluation sessions. Two visual conditions (with vs. without visual feedbacks) and the two digits (thumb vs. index finger) were considered. Detrended fluctuation analysis (DFA), standard deviation (SD) and the shear to normal force ratio rsn were employed to evaluate the directional control of pinch force. Results validate the effectiveness of the bio-feedback system, which may provide a novel solution for rehabilitation of hand function.
机译:恢复功能是中风患者的迫切需求。用拇指和食指捏是物体操作的基本形式,因此在灵巧的手功能中起关键作用。为了改善中风后手的功能,特别是捏力控制,以及低成本,易于使用和用户友好的训练装置,将是手康复的理想方向。这项研究旨在开发一种新颖的生物反馈系统,该系统集训练和评估挤压力的方向控制于一体。该系统包括硬件和软件。通过实验检查了生物反馈系统的效果。 26名健康受试者参加了该实验。每个受试者用拇指和食指进行两次低级别的精确捏合,以进行两次培训和三次评估。考虑了两个视觉条件(有无视觉反馈)和两个数字(拇指与食指)。去趋势波动分析(DFA),标准偏差(SD)和剪力与法向力之比r sn 被用来评估挤压力的方向控制。结果验证了生物反馈系统的有效性,该系统可为手功能的康复提供一种新颖的解决方案。

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