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一种可植入的无线触觉传感系统。

An implantable wireless tactile sensing system.

作者信息

Du Lin, Hao Han, Ding Yixiao, Gabros Andrew, Mier Thomas C E, Van der Spiegel Jan, Lucas Timothy H, Aflatouni Firooz, Richardson Andrew G, Allen Mark G

机构信息

Department of Electrical and Systems Engineering, School of Engineering and Applied Science, University of Pennsylvania, Philadelphia, PA 19104, USA.

Department of Neurosurgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Res Sq. 2023 Feb 3:rs.3.rs-2515082. doi: 10.21203/rs.3.rs-2515082/v1.

Abstract

The sense of touch is critical to dexterous use of the hands and thus an essential component to efforts to restore hand function after amputation or paralysis. Prosthetic systems have focused on wearable tactile sensors. But wearable sensors are suboptimal for neuroprosthetic systems designed to reanimate a patient's own paralyzed hand. Here, we developed an implantable tactile sensing system intended for subdermal placement. The system is composed of a microfabricated capacitive force sensor, a custom integrated circuit supporting wireless powering and data transmission, and a laser-fused hermetic silica package. The miniature device was validated through simulations, benchtop testing, and ex vivo testing in a primate hand. The sensor implanted in the fingertip accurately measured skin forces with a resolution of 4.3 mN. The output from this novel sensor could be encoded in the brain with microstimulation to provide tactile feedback. More broadly, the materials, system design, and fabrication approach establish new foundational capabilities for various applications of implantable sensing systems.

摘要

触觉对于手部的灵活运用至关重要,因此是截肢或瘫痪后恢复手部功能努力的重要组成部分。假肢系统一直专注于可穿戴触觉传感器。但对于旨在使患者自身瘫痪手部恢复活动能力的神经假肢系统而言,可穿戴传感器并非最佳选择。在此,我们开发了一种用于皮下植入的可植入触觉传感系统。该系统由一个微加工电容式力传感器、一个支持无线供电和数据传输的定制集成电路以及一个激光熔接密封二氧化硅封装组成。这个微型设备通过模拟、台式测试以及在灵长类动物手部的离体测试得到了验证。植入指尖的传感器以4.3毫牛的分辨率精确测量皮肤力。这种新型传感器的输出可以通过微刺激在大脑中进行编码,以提供触觉反馈。更广泛地说,这些材料、系统设计和制造方法为可植入传感系统的各种应用建立了新的基础能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8079/9915765/bbebd88265e4/nihpp-rs2515082v1-f0001.jpg

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