基于脑芯片接口的高分辨率双向通信

M. Maschietto, M. Mahmud, G. Stefano, S. Vassanelli
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引用次数: 13

摘要

现有的脑机接口技术允许从一个或几个单个神经元进行高精度记录,或者在网络中使用稀疏采样进行低空间分辨率记录。通过我们的方法,通过将容量耦合记录和刺激位点安排在具有1000个元件的大型2D多晶体管阵列(MTA)中,以高分辨率(10μm间距及以下)集成到平面芯片上,实现了与大脑的有效同时双向通信。本研究的目的是评估简单一代硅微器件记录大鼠脑神经元信号的可靠性。使用该芯片同时记录来自活体大鼠体感觉皮层(S1)的信号,并将其与玻璃微移液管的标准体内记录进行比较。我们发现这两种类型的信号是相同的,这表明可以同时记录来自不同部位的信号,并在体内对大脑皮层进行实时电成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A High Resolution Bi-Directional Communication through a Brain-Chip Interface
Existing brain-machine interfacing techniques allow either high precision recordings from one or a few single neurons, or low spatial resolution recordings with a sparse sampling within the networks. Through our app-roach an efficient simultaneous bidirectional communication to the brain is realized using capacitively coupled recording and stimulation sites arranged in a large 2D multi-transistor array (MTA) with 1000 elements, integrated to a planar chip at high resolution (10μm pitch and below). The aim of the present work is to evaluate the reliability of a simple-generation silicon micro-device in recording neuronal signals from rat brain. Simultaneous recording of signals using this chip from the somatosensory cortex (S1) of living rat, are compared to standard in vivo recordings with a glass micropipette. We show that the two types of signals are identical, indicating the possibility to record signals at the same time from different sites and to perform a real-time electrical imaging of the brain cortex in vivo.
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