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Integrated 16-channel neural recording and stimulation circuit

机译:集成的16通道神经记录和刺激电路

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摘要

Here we present a low-power 16 channel neural signal measurement and stimulation system. The gain and high-pass corner frequency are programmable from 100 to 5000 and from 0.5 to 900 Hz, respectively. All channels can also be configured as outputs to electrically stimulate neurons by bipolar current pulses. The amplifying stage consists of 16 pre-amplifiers, a multiplexer and two broadband post-amplifiers. The measured signal is digitized with a 10-bit SAR A/D converter. The circuit contains a control logic for buffering the measured results and sending them into an SPI bus that is used to stream the data to a PC at 3.5 Mbps. The logic can also control the circuit's bias currents, high-pass corner frequency, post-amplifier gains and stimulation current strengths. The mixed-signal circuit is manufactured with a low-cost 0.35 mu m 4M2P IC process. The circuit consumes 1.29-1.59 mW power, depending on the amplifying gain.
机译:在这里,我们介绍了一种低功率16通道神经信号测量和刺激系统。增益和高通转折频率分别可在100至5000和0.5至900 Hz范围内进行编程。所有通道也可以配置为输出,以通过双极电流脉冲电刺激神经元。放大级包括16个前置放大器,一个多路复用器和两个宽带后置放大器。用10位SAR A / D转换器将测量的信号数字化。该电路包含一个控制逻辑,用于缓冲测量结果并将其发送到SPI总线,该SPI总线用于以3.5 Mbps的速度将数据传输到PC。该逻辑还可以控制电路的偏置电流,高通转折频率,后置放大器增益和激励电流强度。混合信号电路采用低成本的0.35微米4M2P IC工艺制造。该电路功耗为1.29-1.59 mW,具体取决于放大增益。

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