School of Microelectronics, Shanghai University, Shanghai 200444, China.
Zhangjiang Laboratory, Shanghai 200031, China.
Biosensors (Basel). 2024 Jul 15;14(7):343. doi: 10.3390/bios14070343.
Environmental electromagnetic interference (EMI) has always been a major interference source for multiple-channel neural recording systems, and little theoretical work has been attempted to address it. In this paper, equivalent circuit models are proposed to model both electromagnetic interference sources and neural signals in such systems, and analysis has been performed to generate the design guidelines for neural probes and the subsequent recording circuit towards higher common-mode interference (CMI) rejection performance while maintaining the recorded neural action potential (AP) signal quality. In vivo animal experiments with a configurable 32-channel neural recording system are carried out to validate the proposed models and design guidelines. The results show the power spectral density (PSD) of environmental 50 Hz EMI interference is reduced by three orders from 4.43 × 10 V/Hz to 4.04 × 10 V/Hz without affecting the recorded AP signal quality in an unshielded experiment environment.
环境电磁干扰 (EMI) 一直是多通道神经记录系统的主要干扰源,几乎没有尝试进行理论研究来解决这个问题。本文提出了等效电路模型来模拟这类系统中的电磁干扰源和神经信号,并进行了分析,为神经探针和后续的记录电路设计提供了指导原则,以在保持记录的神经动作电位 (AP) 信号质量的同时,实现更高的共模干扰 (CMI) 抑制性能。利用可配置的 32 通道神经记录系统进行了体内动物实验,验证了所提出的模型和设计准则。结果表明,在未屏蔽的实验环境中,环境 50Hz EMI 干扰的功率谱密度 (PSD) 从 4.43×10 V/Hz 降低到 4.04×10 V/Hz,而不影响记录的 AP 信号质量。