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一种用于多通道前庭假体的互补金属氧化物半导体神经接口。

A CMOS Neural Interface for a Multichannel Vestibular Prosthesis.

作者信息

Hageman Kristin N, Kalayjian Zaven K, Tejada Francisco, Chiang Bryce, Rahman Mehdi A, Fridman Gene Y, Dai Chenkai, Pouliquen Philippe O, Georgiou Julio, Della Santina Charles C, Andreou Andreas G

出版信息

IEEE Trans Biomed Circuits Syst. 2016 Apr;10(2):269-79. doi: 10.1109/TBCAS.2015.2409797. Epub 2015 May 11.

Abstract

We present a high-voltage CMOS neural-interface chip for a multichannel vestibular prosthesis (MVP) that measures head motion and modulates vestibular nerve activity to restore vision- and posture-stabilizing reflexes. This application specific integrated circuit neural interface (ASIC-NI) chip was designed to work with a commercially available microcontroller, which controls the ASIC-NI via a fast parallel interface to deliver biphasic stimulation pulses with 9-bit programmable current amplitude via 16 stimulation channels. The chip was fabricated in the ONSemi C5 0.5 micron, high-voltage CMOS process and can accommodate compliance voltages up to 12 V, stimulating vestibular nerve branches using biphasic current pulses up to 1.45±0.06 mA with durations as short as 10 μs/phase. The ASIC-NI includes a dedicated digital-to-analog converter for each channel, enabling it to perform complex multipolar stimulation. The ASIC-NI replaces discrete components that cover nearly half of the 2nd generation MVP (MVP2) printed circuit board, reducing the MVP system size by 48% and power consumption by 17%. Physiological tests of the ASIC-based MVP system (MVP2A) in a rhesus monkey produced reflexive eye movement responses to prosthetic stimulation similar to those observed when using the MVP2. Sinusoidal modulation of stimulus pulse rate from 68-130 pulses per second at frequencies from 0.1 to 5 Hz elicited appropriately-directed slow phase eye velocities ranging in amplitude from 1.9-16.7 °/s for the MVP2 and 2.0-14.2 °/s for the MVP2A. The eye velocities evoked by MVP2 and MVP2A showed no significant difference ( t-test, p=0.34), suggesting that the MVP2A achieves performance at least as good as the larger MVP2.

摘要

我们展示了一种用于多通道前庭假体(MVP)的高压CMOS神经接口芯片,该芯片可测量头部运动并调节前庭神经活动,以恢复视觉和姿势稳定反射。这种专用集成电路神经接口(ASIC-NI)芯片设计为与市售微控制器配合使用,该微控制器通过快速并行接口控制ASIC-NI,以通过16个刺激通道提供具有9位可编程电流幅度的双相刺激脉冲。该芯片采用安森美半导体C5 0.5微米高压CMOS工艺制造,可承受高达12 V的合规电压,使用持续时间短至10μs/相的双相电流脉冲刺激前庭神经分支。ASIC-NI为每个通道包括一个专用数模转换器,使其能够执行复杂的多极刺激。ASIC-NI取代了覆盖第二代MVP(MVP2)印刷电路板近一半的分立元件,将MVP系统尺寸减小了48%,功耗降低了17%。基于ASIC的MVP系统(MVP2A)在恒河猴身上的生理测试产生了对假体刺激的反射性眼球运动反应,类似于使用MVP2时观察到的反应。在0.1至5 Hz的频率下,刺激脉冲率从每秒68 - 130个脉冲的正弦调制引发了MVP2的幅度范围为1.9 - 16.7°/s、MVP2A的幅度范围为2.0 - 14.2°/s的适当方向的慢相眼球速度。MVP2和MVP2A诱发的眼球速度没有显著差异(t检验,p = 0.34),表明MVP2A至少达到了与更大的MVP2一样好的性能。

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本文引用的文献

1
A vestibular prosthesis with highly-isolated parallel multichannel stimulation.一种具有高度隔离并行多通道刺激功能的前庭假体。
IEEE Trans Biomed Circuits Syst. 2015 Feb;9(1):124-37. doi: 10.1109/TBCAS.2014.2323310. Epub 2014 Jul 25.
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Bilateral Vestibular Deficiency: Quality of Life and Economic Implications.双侧前庭功能缺失:生活质量与经济影响
JAMA Otolaryngol Head Neck Surg. 2014 Jun;140(6):527-34. doi: 10.1001/jamaoto.2014.490.
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Safe direct current stimulation to expand capabilities of neural prostheses.安全的直流电刺激以扩展神经假体的功能。
IEEE Trans Neural Syst Rehabil Eng. 2013 Mar;21(2):319-28. doi: 10.1109/TNSRE.2013.2245423.

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