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A Single-Chip Bidirectional Neural Interface With High-Voltage Stimulation and Adaptive Artifact Cancellation in Standard CMOS

机译:单芯片双向神经界面,具有标准CMOS的高压刺激和自适应伪影取消

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摘要

A single-chip, bidirectional brain-computer interface (BBCI) enables neuromodulation through simultaneous neural recording and stimulation. This article presents a prototype BBCI application-specified integrated circuit (ASIC) consisting of a 64-channel time-multiplexed recording frontend, an area-optimized four-channel high-voltage compliant stimulator, and electronics to support the concurrent multichannel stimulus artifact cancellation. Stimulator power generation is integrated on a chip, providing +/- 11-V compliance from low-voltage supplies with a resonant charge pump. Highfrequency (similar to 3 GHz) self-resonant clocking is used to reduce the pumping capacitor area while suppressing the associated switching losses. A 32-tap least mean square (LMS)-based digital adaptive filter achieves 60-dB artifact suppression, enabling simultaneous neural stimulation and recording. The entire chip occupies 4 mm(2) in a 65-nm low power (LP) process and is powered by 2.5-/1.2-V supplies, dissipating 205 mu W in recording and 142 mu W in the stimulation and cancellation back-ends. The stimulation output drivers achieve 31% dc-dc efficiency at a maximum output power of 24 mW.
机译:单芯片,双向脑电脑界面(BBCI)通过同时神经记录和刺激来实现神经调节。本文介绍了由64通道时间复用记录前端组成的原型BBCI应用程序指定的集成电路(ASIC),该区域优化的四通道高压柔顺刺激器和电子设备,以支持并发多通道刺激伪像取消。刺激器发电集成在芯片上,提供从带有谐振电荷泵的低压电源的+/- 11-V符合性。高频(类似于3 GHz)自谐振时钟用于减少泵送电容器区域,同时抑制相关的切换损耗。基于32分挖的数字自适应滤波器实现了60dB的数字自适应滤波器,使得能够同时进行神经刺激和记录。整个芯片在65纳米低功率(LP)工艺中占用4毫米(2),并由2.5- / 1.2-V供应供电,在刺激和取消后端的刺激和142μW时散发205μmW。 。刺激输出驱动器以24 MW的最大输出功率实现31%的DC-DC效率。

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