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A wireless neuroprosthetic for augmenting perception through modulated electrical stimulation of somatosensory cortex

机译:通过调制肌刺激对躯体感应刺激进行增强感知的无线神经调节

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This paper presents a novel neuroprosthetic system for perception encoding. The system consists of a wireless waterproof bi-directional neural interface and an object tracking image sensor. The neural interface features a fully programmable 8-channel neural stimulator, a compliance voltage and impedance monitoring module, a 16-channel neural recording front-end, and a duplex wireless transceiver. The image sensor features a 180×180 pixel array, with in-pixel comparator for energy efficient color thresholding based object detection tracking. A unique experiment was designed in which rats navigate a water maze using only brain stimulation to inform their location relative to a hidden platform. Custom hardware and software have been developed to support the investigation, with special attention paid to the safety of the animals during the experiment. The proposed chip designs have been fabricated in 180nm CMOS technology. This work demonstrates a novel experimental paradigm, and that the developed wireless neuroprosthetic system can be used to conduct extensive sensory encoding experiments in freely behaving animals.
机译:本文提出了一种用于感知编码的新型神经高原系统。该系统包括无线防水双向神经接口和物体跟踪图像传感器。神经接口具有完全可编程的8通道神经刺激器,合规电压和阻抗监控模块,16通道神经记录前端和双工无线收发器。图像传感器具有180×180像素阵列,具有用于节能颜色阈值的基于对象检测跟踪的像素比较器。设计了独特的实验,其中大鼠仅使用脑刺激导航水迷宫,以通知其位置相对于隐藏的平台。已经开发了定制硬件和软件以支持调查,特别注意在实验期间为动物的安全性支付。所提出的芯片设计已在180nm CMOS技术中制造。这项工作证明了一种新型的实验范式,并且开发的无线神经调节系统可用于在自由行为的动物中进行广泛的感官编码实验。

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