首页> 外文会议>IEEE International Conference on Biomedical Robotics and Biomechatronics >Design and Evaluation of A Vibrotactile Feedback System to Improve Volitional Myoelectric Control for Robotic Transtibial Prostheses: A Preliminary Study
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Design and Evaluation of A Vibrotactile Feedback System to Improve Volitional Myoelectric Control for Robotic Transtibial Prostheses: A Preliminary Study

机译:振动触觉反馈系统的设计与评价,提高机器人宁静探剂的加速肌电控制:初步研究

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In this paper, we propose a vibrotactile stimulation system and explore the potential of combining it with volitional myoelectric control for robotic transtibial prostheses. The proposed system consists of six vibrators, three on the anterior side of the thigh and the other three on the posterior side. Six able-bodied subjects and two transtibial amputee subjects participated in the study, and three experiments were performed. The first two experiments were designed to evaluate subjects' ability to perceive vibrotactile stimulations and make fast response. In the third experiment, we aimed to investigate the necessity of adding vibrotactile feedback to the loop of volitional myoelectric control. Experimental results indicate that subjects are able to discriminate stimulations produced by different vibrators, and detect the change of stimulation positions with small time delay. Furthermore, the addition of vibrotactile feedback improves the performance of controlling a virtual ankle to reach target positions. These preliminary results validate the promise of applying the vibrotactile stimulation system for robotic transtibial prosthesis control.
机译:在本文中,我们提出了一种振动触觉刺激系统,并探讨了将其与机器人打扰假体的激动磁电控制相结合的潜力。所提出的系统由六个振动器组成,三个在大腿前侧,另一个在后侧。六个能够参与该研究的六个能够体育的受试者和两个播种截肢者受试者,并进行三个实验。前两项实验旨在评估受试者感知振动触发刺激并产生快速反应的能力。在第三个实验中,我们旨在探讨将振动反馈添加到加色电气电控制环路的必要性。实验结果表明,受试者能够区分不同振动器产生的刺激,并检测刺激位置的变化较小的时间延迟。此外,添加振动反馈改善了控制虚拟脚踝以达到目标位置的性能。这些初步结果验证了应用振动触发系统进行机器人抗性假体控制的承诺。

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