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An integrated interface for peripheral neural system recording and stimulation: system design, electrical tests and in-vivo results

机译:用于外围神经系统记录和刺激的集成界面:系统设计,电气测试和体内结果

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摘要

The prototype of an electronic bi-directional interface between the Peripheral Nervous System (PNS) and a neuro-controlled hand prosthesis is presented. The system is composed of 2 integrated circuits: a standard CMOS device for neural recording and a HVCMOS device for neural stimulation. The integrated circuits have been realized in 2 different 0.35 mu m CMOS processes available from ams. The complete system incorporates 8 channels each including the analog front-end, the A/D conversion, based on a sigma delta architecture and a programmable stimulation module implemented as a 5-bit current DAC; two voltage boosters supply the output stimulation stage with a programmable voltage scalable up to 17V. Successful in-vivo experiments with rats having a TIME electrode implanted in the sciatic nerve were carried out, showing the capability of recording neural signals in the tens of microvolts, with a global noise of 7 mu V-rms, and to selectively elicit the tibial and plantar muscles using different active sites of the electrode.
机译:提出了周围神经系统(PNS)和神经控制的手部假体之间的电子双向接口的原型。该系统由2个集成电路组成:用于神经记录的标准CMOS器件和用于神经刺激的HVCMOS器件。集成电路已通过ams提供的2种不同的0.35μmCMOS工艺实现。完整的系统包含8个通道,每个通道均基于sigma delta架构,包括模拟前端,A / D转换和实现为5位电流DAC的可编程激励模块。两个升压器为输出刺激级提供可编程的电压,可扩展至17V。对在大鼠坐骨神经中植入TIME电极的大鼠进行了成功的体内实验,显示了以数十微伏的电压记录神经信号的能力,总噪声为7μV-rms,并选择性地诱发了胫骨和plant肌使用电极的不同活性部位。

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