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上肢假肢的触觉反馈的感觉替代

Sensory Substitution for Tactile Feedback in Upper Limb Prostheses.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:7519-7525. doi: 10.1109/EMBC46164.2021.9629539.

Abstract

Present commercially available prosthetic devices fall short when it comes to providing users with accurate and non-invasive tactile feedback from their artificial limb, leading to more difficult control and leaving many at a heightened risk of device rejection. Current methods of simulating hand sensation in patients affected by upper limb loss are either invasive and expensive, or otherwise sub-optimal in their feedback mechanism. Here we propose, build, and implement a novel device for tactile feedback in upper limb prostheses. The device consists of an adaptable tactile sensing glove that can be applied to existing artificial limbs and an audio feedback system that leverages the plasticity of the brain to communicate touch to the user through sensory substitution. This device aims to take advantage of the existing pathways between auditory and tactile sensory regions in the brain by mapping force magnitude and location from the integrated force sensors on the gloves to specific volume and frequency, respectively. The device was successfully manufactured for proof of concept, and further testing with prosthetic users will aim to assess the efficacy of the device and identify potential modifications for use in research and commercialization.

摘要

目前市面上的假肢在为使用者提供人工肢体的准确、非侵入性触觉反馈方面存在不足,导致控制更加困难,并使许多人面临更高的设备排斥风险。目前,模拟上肢缺失患者手部感觉的方法要么具有侵入性和昂贵,要么在反馈机制方面存在不足。在这里,我们提出、构建和实现了一种用于上肢假肢触觉反馈的新型设备。该设备由一个适应性强的触觉传感手套组成,可以应用于现有的假肢,以及一个音频反馈系统,利用大脑的可塑性,通过感觉替代向用户传达触觉。该设备旨在利用大脑中听觉和触觉感觉区域之间现有的通路,通过将手套上集成的力传感器的力大小和位置映射到特定的音量和频率,分别实现触觉反馈。该设备已成功制造用于概念验证,进一步与假肢使用者的测试旨在评估该设备的功效,并确定潜在的修改,以用于研究和商业化。

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