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Design and Simulation of a Multi-channel Neural Recording Microsystem with Inductive Power Telemetry Link

机译:具有感应功率遥测链路的多通道神经记录微系统的设计与仿真

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Neural micro-probing not only allows us to access the brain signals, it is also one of the key tools to achieve a better understanding of the fundamental mechanisms of the brain and nervous system. This knowledge is extremely essential to implement complex neural prosthetics. Considering the importance of the size, power consumption, and accuracy, in this Paper, a compact, low-power eight-channel implantable neural recording microsystem is presented. To this end, Time Division Multiplexing (TDM) method is used for multiplexing 8 input channels. Thus, only one Analog to Digital Converter (ADC) block is used, resulting in a small circuit size and low power consumption. Also, a new structure of Amplitude-Shift Keying (ASK) modulation technique with simple configuration and low power consumption is proposed and applied. This system is designed in TSMC 0.18 μm CMOS technology with 1.8 V power supply and simulated with HSPICE. The total power consumption of the system is measured to 2 mW. Neural signals recorded from auditory cortex of a guinea pig are used as the inputs of the eight channels of the system. Total RMS error between inputs and outputs caused by the system is 2.8%.
机译:神经微探测不仅使我们能够访问大脑信号,它还是使人们更好地了解大脑和神经系统基本机制的关键工具之一。这些知识对于实施复杂的神经修复术至关重要。考虑到尺寸,功耗和精度的重要性,本文提出了一种紧凑的,低功耗的八通道可植入神经记录微系统。为此,使用时分复用(TDM)方法来复用8个输入通道。因此,仅使用一个模数转换器(ADC)模块,从而减小了电路尺寸并降低了功耗。另外,提出并应用了一种结构简单,功耗低的幅移键控调制技术。该系统采用TSMC 0.18μmCMOS技术设计,具有1.8 V电源,并使用HSPICE仿真。系统的总功耗为2 mW。从豚鼠的听觉皮层记录的神经信号用作系统的八个通道的输入。系统引起的输入和输出之间的总RMS误差为2.8%。

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