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A Wireless Multi-Channel Peripheral Nerve Signal Acquisition System-on-Chip

机译:片上无线多通道外围神经信号采集系统

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摘要

The adoption of chronic implantable peripheral nerve-based prosthetic devices is currently hampered by the lack of a highly integrated neural signal acquisition system-on-chip (SoC). We report a ten-channel peripheral nervous system (PNS) electroneurogram (ENG) signal acquisition SoC within an implantable package. Requiring only four off-chip capacitors, this SoC can be co-encapsulated with flexible nerve electrodes and a resonant coil antenna to form a 3.4 cm(3) and 3.9 g implantable device for chronic ENG acquisition. This SoC is inductively powered and controlled through a resonant coil at 22 MHz and transmits the digitized neural signal through a near-infrared LED (NIR-LED). Fabricated in 0.18-mu m CMOS, each amplifier channel exhibits an input referred noise of 1.9 mu V-rms and a noise efficiency factor (NEF) of 4.0 within the signal bandwidth of 5.5 kHz. Each amplifier channel within the SoC is digitized with 10-bit resolution at 17.5 ksps, and the total power consumption (SoC and NIR-LED) is 4.4 mW when the NIR-LED is driven at 3 Mb/s. An electrode impedance measurement circuit with <10% magnitude and <8 degrees angle error for measuring impedances up to 1 M Omega is also incorporated in this SoC. This wireless, low noise ENG acquisition SoC package has been validated in vivo while implanted on a rodent to acquire ENG from its sciatic nerve.
机译:目前,由于缺乏高度集成的片上神经信号采集系统(SoC),阻碍了慢性植入式基于外围神经的假体设备的采用。我们报告了植入式包装内的十通道外周神经系统(PNS)电子神经图(ENG)信号采集SoC。该SoC仅需四个片外电容器,即可与柔性神经电极和谐振线圈天线共封装在一起,从而形成3.4 cm(3)和3.9 g的可植入设备,用于慢性ENG采集。该SoC通过22 MHz的谐振线圈进行感应供电和控制,并通过近红外LED(NIR-LED)传输数字化的神经信号。在0.18μmCMOS中制造的每个放大器通道在5.5 kHz的信号带宽内均表现出1.9μV-rms的输入参考噪声和4.0的噪声效率系数(NEF)。 SoC中的每个放大器通道都以17.5 ksps的速率以10位分辨率数字化,当以3 Mb / s的速度驱动NIR-LED时,总功耗(SoC和NIR-LED)为4.4 mW。该SoC中还集成了电极阻抗测量电路,该电路具有<10%的幅度和<8度的角度误差,可测量高达1 M Omega的阻抗。这种无线,低噪声的ENG采集SoC封装已在体内进行了验证,同时已植入啮齿动物以从其坐骨神经采集ENG。

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