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经皮神经电刺激实现躯体感觉诱发触觉,改善假肢感觉运动性能。

Somatotopically Evoked Tactile Sensation via Transcutaneous Electrical Nerve Stimulation Improves Prosthetic Sensorimotor Performance.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:2815-2825. doi: 10.1109/TNSRE.2024.3435570. Epub 2024 Aug 8.

Abstract

Sensory feedback provides critical interactive information for the effective use of hand prostheses. Non-invasive neural interfaces allow convenient access to the sensory system, but they communicate a limited amount of sensory information. This study examined a novel approach that leverages a direct and natural sensory afferent pathway, and enables an evoked tactile sensation (ETS) of multiple digits in the projected finger map (PFM) of participants with forearm amputation non-invasively. A bidirectional prosthetic interface was constructed by integrating the non-invasive ETS-based feedback system into a commercial prosthetic hand. The pressure information of five fingers was encoded linearly by the pulse width modulation range of the buzz sensation. We showed that simultaneous perception of multiple digits allowed participants with forearm amputation to identify object length and compliance by using information about contact patterns and force intensity. The ETS enhanced the grasp-and-transport performance of participants with and without prior experience of prosthetic use. The functional test of transport-and-identification further revealed improved execution in classifying object size and compliance using ETS-based feedback. Results demonstrated that the ETS is capable of communicating somatotopically compatible information to participants efficiently, and improves sensory discrimination and closed-loop prosthetic control. This non-invasive sensory interface may establish a viable way to restore sensory ability for prosthetic users who experience the phenomenon of PFM.

摘要

感觉反馈为手部假肢的有效使用提供了关键的交互信息。非侵入性神经接口允许方便地访问感觉系统,但它们只能传达有限数量的感觉信息。本研究探讨了一种新方法,该方法利用直接和自然的感觉传入途径,使前臂截肢者能够在投射指图谱(PFM)中无创地产生多个手指的诱发触觉感觉(ETS)。通过将基于非侵入性 ETS 的反馈系统集成到商业假肢手中,构建了一个双向假肢接口。通过脉冲宽度调制范围的调制,五个手指的压力信息被线性编码为嗡嗡声感觉。我们表明,通过使用有关接触模式和力强度的信息,同时感知多个手指可以使前臂截肢者识别物体的长度和顺应性。ETS 增强了有和没有假肢使用经验的参与者的抓握和运输性能。运输和识别的功能测试进一步表明,使用 ETS 反馈可以提高对物体大小和顺应性进行分类的执行能力。结果表明,ETS 能够有效地向参与者传达具有身体图式兼容性的信息,并提高感觉辨别能力和闭环假肢控制能力。这种非侵入性感觉接口可能为经历 PFM 现象的假肢使用者恢复感觉能力建立一种可行的方法。

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