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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Bidirectional Neural Interface Circuit With Active Stimulation Artifact Cancellation and Cross-Channel Common-Mode Noise Suppression
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A Bidirectional Neural Interface Circuit With Active Stimulation Artifact Cancellation and Cross-Channel Common-Mode Noise Suppression

机译:具有主动刺激伪影消除和跨通道共模噪声抑制的双向神经接口电路

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摘要

This work presents a bidirectional neural interface circuit that enables simultaneous recording and stimulation with a stimulation artifact cancellation circuit. The system employs a common average referencing (CAR) front-end circuit to suppress cross-channel environmental noise to further facilitate use in clinical environment. This paper also introduces a new range-adapting (RA) SAR ADC to lower the system power consumption. A prototype is fabricated in CMOS and characterized and tested in an epileptic rat model. The prototype attenuates stimulation artifacts by up to 42 dB and suppresses cross-channel noise by up to 39.8 dB. The measured power consumption per channel is 330 nW, while the area per channel is 0.17 mm.
机译:这项工作提出了一种双向神经接口电路,该电路可以通过刺激伪影消除电路同时进行记录和刺激。该系统采用公共平均参考(CAR)前端电路来抑制跨通道环境噪声,从而进一步促进在临床环境中的使用。本文还介绍了一种新型的范围自适应(RA)SAR ADC,以降低系统功耗。用CMOS制造原型,并在癫痫大鼠模型中对其特性进行测试。该原型最多可将刺激伪影衰减42 dB,并将跨通道噪声抑制最高39.8 dB。测得的每通道功耗为330 nW,而每通道面积为0.17 mm。

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