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纳入手部抓握神经假体的自然感觉反馈的功能评估

Functional evaluation of natural sensory feedback incorporated in a hand grasp neuroprosthesis.

作者信息

Inmann Andreas, Haugland Morten

机构信息

Center for Sensory-Motor Interaction, Aalborg University, Denmark.

出版信息

Med Eng Phys. 2004 Jul;26(6):439-47. doi: 10.1016/j.medengphy.2004.03.002.

Abstract

We investigated whether automatic control of a hand grasp neuroprosthesis by means of signals from natural sensors in the skin of the index finger can mimic the natural control of grasp force in an important task of daily living, namely eating. We designed a simulated eating task with the same ratio of rest and activity as was found on average in a video analysis of three meals consumed in a social environment. An instrumented fork measured grasp force as well as the force in the long axis and perpendicular to the long axis at the tip of the fork. The simulated eating task was performed by a tetraplegic volunteer using a hand grasp neuroprosthesis both with and without use of feedback from the natural sensors. Further, 10 able-bodied volunteers performed the task with the same (lateral) grasp as the tetraplegic volunteer to obtain measures for improving the control strategy of the hand grasp neuroprosthesis. We have shown that a hand grasp neuroprosthesis incorporating natural sensory feedback can to some extent mimic the natural application of grasp force on a fork during simulated eating. The mean grasp force during active phases was higher than the mean grasp force during inactive phases. The mean grasp force applied during a simulated eating task was reduced by using the system with sensory feedback compared to using the system without sensory feedback.

摘要

我们研究了借助来自食指皮肤上自然传感器的信号对手部抓握神经假体进行自动控制,是否能够在一项日常生活的重要任务(即进食)中模拟抓握力的自然控制。我们设计了一个模拟进食任务,其休息与活动的比例与在社交环境中对三餐进行视频分析时平均发现的比例相同。一个装有仪器的餐叉可测量抓握力以及餐叉尖端沿长轴方向和垂直于长轴方向的力。一位四肢瘫痪的志愿者使用手部抓握神经假体执行模拟进食任务,分别在使用和不使用来自自然传感器的反馈的情况下进行。此外,10名身体健全的志愿者以与四肢瘫痪志愿者相同的(横向)抓握方式执行该任务,以获取用于改进手部抓握神经假体控制策略的测量数据。我们已经表明,结合自然感官反馈的手部抓握神经假体在一定程度上可以模拟在模拟进食过程中在餐叉上自然施加抓握力的情况。活动阶段的平均抓握力高于非活动阶段的平均抓握力。与不使用感官反馈的系统相比,使用带有感官反馈的系统时,在模拟进食任务中施加的平均抓握力有所降低。

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