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A low noise multichannel integrated circuit for recording neuronal signals using microelectrode arrays

机译:用于使用微电极阵列记录神经元信号的低噪声多通道集成电路

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This paper reports on the development of a fully integrated 32-channel integrated circuit (IC) for recording neuronal signals in neurophysiological experiments using microelectrode arrays. The IC consists of 32 channels of low-noise preamplifiers and bandpass filters. and an output analog multiplexer. The continuous-time RC active filters have a typical passband of 20-2000Hz; the low and the high cut-off frequencies can be separately controlled by external reference currents. This chip provides a satisfactory signal-to-noise ratio for neuronal signals with amplitudes greater than 50 muV. For the nominal passband setting, an equivalent input noise of 3 muV rms has been achieved. A single channel occupies 0.35 mm(2) of silicon area and dissipates 1.7 mW of power. The chip was fabricated in a 0.7 mum CMOS process. (C) 2003 Elsevier B.V. All rights reserved. [References: 11]
机译:本文报道了使用微电极阵列在神经生理学实验中记录神经元信号的全集成32通道集成电路(IC)的开发。该IC由32个通道的低噪声前置放大器和带通滤波器组成。和输出模拟多路复用器。连续时间RC有源滤波器的典型通带为20-2000Hz。低和高截止频率可以通过外部参考电流分别控制。该芯片为振幅大于50μV的神经元信号提供了令人满意的信噪比。对于标称通带设置,已经实现了3μVrms的等效输入噪声。单个通道占用0.35 mm(2)的硅面积,耗散1.7 mW的功率。该芯片采用0.7微米CMOS工艺制造。 (C)2003 Elsevier B.V.保留所有权利。 [参考:11]

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