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一种低功耗可编程神经尖峰检测通道,具有嵌入式校准和数据压缩功能。

A low-power programmable neural spike detection channel with embedded calibration and data compression.

机构信息

Institute of Microelectronics of Seville, 41092 Sevilla, Spain.

出版信息

IEEE Trans Biomed Circuits Syst. 2012 Apr;6(2):87-100. doi: 10.1109/TBCAS.2012.2187352.

DOI:10.1109/TBCAS.2012.2187352
PMID:23852974
Abstract

This paper reports a programmable 400 μm pitch neural spike recording channel, fabricated in a 130 nm standard CMOS technology, which implements amplification, filtering, digitization, analog spike detection plus feature extraction, and self-calibration functionalities. It can operate in two different output modes: 1) signal tracking, in which the neural signal is sampled and transmitted as raw data; and 2) feature extraction, in which the spikes of the neural signal are detected and encoded by piece-wise linear curves. Additionally, the channel offers a foreground calibration procedure in which the amplification gain and the passband of the embedded filter can be self-adjusted. The amplification stage obtains a noise efficiency factor of 2.16 and an input referred noise of 2.84 μVrms over a nominal bandwidth of 167 Hz-6.9 kHz. The channel includes a reconfigurable 8-bit analog-to-digital converter combined with a 3-bit controlled programmable gain amplifier for adjusting the input signal to the full scale range of the converter. This combined block achieves an overall energy consumption per conversion of 102 fJ at 90 kS/s. The energy consumed by the circuit elements which are strictly related to the digitization process is 14.12 fJ at the same conversion rate. The complete channel consumes 2.8 μW at 1.2 V voltage supply when operated in the signal tracking mode, and 3.1 μW when the feature extraction mode is enabled.

摘要

本文报道了一种可编程的 400μm 间距神经尖峰记录通道,采用 130nm 标准 CMOS 工艺制造,实现了放大、滤波、数字化、模拟尖峰检测加特征提取以及自校准功能。它可以在两种不同的输出模式下工作:1)信号跟踪,其中神经信号被采样并作为原始数据传输;2)特征提取,其中神经信号的尖峰被检测并通过分段线性曲线进行编码。此外,该通道提供了前背景校准程序,可对嵌入式滤波器的放大增益和通带进行自调整。放大级在 167Hz-6.9kHz 的标称带宽内获得 2.16 的噪声效率因数和 2.84μVrms 的输入参考噪声。该通道包括一个可重构的 8 位模数转换器,与一个 3 位可控可编程增益放大器相结合,用于将输入信号调整到转换器的满量程范围。这个组合模块在 90kS/s 的转换率下,每个转换的能量消耗为 102fJ。在相同的转换率下,与数字化过程严格相关的电路元件的能量消耗为 14.12fJ。当通道在信号跟踪模式下工作时,整个通道在 1.2V 电源电压下消耗 2.8μW,当启用特征提取模式时,消耗 3.1μW。

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