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A Method for Compression of Intra-Cortically-Recorded Neural Signals Dedicated to Implantable Brain–Machine Interfaces

机译:压缩专用于植入式脑机接口的脑内记录神经信号的一种方法

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This paper proposes an efficient data compression technique dedicated to implantable intra-cortical neural recording devices. The proposed technique benefits from processing neural signals in the Discrete Haar Wavelet Transform space, a new spike extraction approach, and a novel data framing scheme to telemeter the recorded neural information to the outside world. Based on the proposed technique, a 64-channel neural signal processor was designed and prototyped as a part of a wireless implantable extra-cellular neural recording microsystem. Designed in a 0.13-m standard CMOS process, the 64-channel neural signal processor reported in this paper occupies mm of silicon area, and consumes 94.18 W when operating under a 1.2-V supply voltage at a master clock frequency of 1.28 MHz.
机译:本文提出了一种有效的数据压缩技术,专用于植入式皮层内神经记录设备。所提出的技术得益于处理离散Haar小波变换空间中的神经信号,一种新的峰值提取方法以及一种将记录的神经信息遥测到外界的新颖数据成帧方案。基于所提出的技术,设计了64通道神经信号处理器并将其原型化为无线可植入细胞外神经记录微系统的一部分。本文报道的64通道神经信号处理器采用0.13 m标准CMOS工艺进行设计,占用硅片的面积为mm,在主时钟频率为1.28 MHz的1.2V电源电压下工作时,功耗为94.18W。

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