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A Multichannel Integrated Circuit for Electrical Recording of Neural Activity, With Independent Channel Programmability

机译:具有独立通道可编程性的用于神经活动电记录的多通道集成电路

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摘要

Since a few decades, micro-fabricated neural probes are being used, together with microelectronic interfaces, to get more insight in the activity of neuronal networks. The need for higher temporal and spatial recording resolutions imposes new challenges on the design of integrated neural interfaces with respect to power consumption, data handling and versatility. In this paper, we present an integrated acquisition system for in vitro and in vivo recording of neural activity. The ASIC consists of 16 low-noise, fully-differential input channels with independent programmability of its amplification (from 100 to 6000 V/V) and filtering (1-6000 Hz range) capabilities. Each channel is AC-coupled and implements a fourth-order band-pass filter in order to steeply attenuate out-of-band noise and DC input offsets. The system achieves an input-referred noise density of 37 nV/√Hz, a NEF of 5.1, a CMRR >; 60 dB, a THD <; 1% and a sampling rate of 30 kS/s per channel, while consuming a maximum of 70 μA per channel from a single 3.3 V. The ASIC was implemented in a 0.35 μm CMOS technology and has a total area of 5.6 × 4.5 mm2. The recording system was successfully validated in in vitro and in vivo experiments, achieving simultaneous multichannel recordings of cell activity with satisfactory signal-to-noise ratios.
机译:几十年来,人们一直在使用微细加工的神经探针以及微电子接口来深入了解神经元网络的活动。对于更高的时间和空间记录分辨率的需求,在功耗,数据处理和多功能性方面对集成神经接口的设计提出了新的挑战。在本文中,我们提出了一种用于体外和体内神经活动记录的集成采集系统。 ASIC由16个低噪声,全差分输入通道组成,具有独立的可编程可编程的放大(从100到6000 V / V)和滤波(1-6000 Hz范围)功能。每个通道都是交流耦合的,并实现了一个四阶带通滤波器,以陡峭地衰减带外噪声和直流输入失调。该系统的输入参考噪声密度为37 nV /√Hz,NEF为5.1,CMRR>; 60 dB,THD <; 1%的采样率和每通道30 kS / s的采样率,同时从3.3 V的单通道最大消耗70 A的电流。ASIC采用0.35μmCMOS技术实现,总面积为5.6×4.5 mm < sup> 2 。该记录系统已在体外和体内实验中成功验证,以令人满意的信噪比实现了细胞活性的同时多通道记录。

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