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A Time-Domain Analog Spatial Compressed Sensing Encoder for Multi-Channel Neural Recording

机译:用于多通道神经记录的时域模拟空间压缩传感编码器

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摘要

A time-domain analog spatial compressed sensing encoder for neural recording applications is proposed. Owing to the advantage of MEMS technologies, the number of channels on a silicon neural probe array has doubled in 7.4 years, and therefore, a greater number of recording channels and higher density of front-end circuitry is required. Since neural signals such as action potential (AP) have wider signal bandwidth than that of an image sensor, a data compression technique is essentially required for arrayed neural recording systems. In this paper, compressed sensing (CS) is employed for data reduction, and a novel time-domain analog CS encoder is proposed. A simpler and lower power circuit than conventional analog or digital CS encoders can be realized by using the proposed CS encoder. A prototype of the proposed encoder was fabricated in a 180 nm 1P6M CMOS process, and it achieved an active area of 0.0342 mm2 /ch. and an energy efficiency of 25.0 pJ/ch.  ·  conv.
机译:提出了一种用于神经记录应用的时域模拟空间压缩传感编码器。由于MEMS技术的优势,硅神经探针阵列上的通道数量在7.4年内翻了一番,因此,需要更多的记录通道和更高的前端电路密度。由于诸如动作电位(AP)之类的神经信号具有比图像传感器更宽的信号带宽,因此阵列神经记录系统实质上需要数据压缩技术。本文采用压缩感知(CS)进行数据约简,提出了一种新型的时域模拟CS编码器。通过使用建议的CS编码器,可以实现比传统的模拟或数字CS编码器更简单,功耗更低的电路。该编码器的原型是在180 nm 1P6M CMOS工艺中制造的,其有效面积为0.0342 mm 2 / ch。能量效率为25.0 pJ / ch。 ·转换

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