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首页> 外文期刊>Artificial Organs >Electrochemical and Electrophysiological Performance of Platinum Electrodes Within the Ninety-Nine-Electrode Stimulating Nerve Cuff
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Electrochemical and Electrophysiological Performance of Platinum Electrodes Within the Ninety-Nine-Electrode Stimulating Nerve Cuff

机译:九十九电极刺激神经套内铂电极的电化学和电生理性能。

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The trend in neural prostheses using selective nerve stimulation for electrical stimulation therapies is headed toward single-part systems having a large number of working electrodes (WEs), each of which selectively stimulate neural tissue or record neural response (NR). The present article reviews the electrochemical and electrophysiological performance of platinum WE within a ninety-nine-electrode spiral cuff for selective nerve stimulation and recording of peripheral nerves, with a focus on the vagus nerve (VN). The electrochemical properties of the WE were studied in vitro using the electrochemical impedance spectroscopy (EIS) technique. The equivalent circuit model (ECM) of the interface between the WE and neural tissue was extracted from the EIS data and simulated in the time domain using a preset current stimulus. Electrophysiological performance of in-space and fiber-type highly selective vagus nerve stimulation (VNS) was tested using an isolated segment of a porcine VN and carotid artery as a reference. A quasitrapezoidal current-controlled pulse (stimulus) was applied to the VN or arterial segment using an appointed group of three electrodes (triplet). The triplet and stimulus were configured to predominantly stimulate B-fibers and minimize the stimulation of A-fibers. The EIS results revealed capacitive charge transfer predominance, which is a highly desirable property. Electrophysiological performance testing indicated the potential existence of certain parameters and waveforms of the stimulus for which the contribution of the A-fibers to the NR decreased slightly and that of the B-fibers increased slightly. Findings show that the design of the stimulating electrodes, based on the EIS and ECM results, could act as a useful tool for nerve cuff development.
机译:使用选择性神经刺激进行电刺激疗法的神经假体的趋势正朝着具有大量工作电极(WE)的单部分系统发展,每个工作电极选择性地刺激神经组织或记录神经反应(NR)。本文回顾了在九十九电极螺旋袖带中的铂WE的电化学和电生理性能,用于选择性刺激神经和记录周围神经,重点是迷走神经(VN)。使用电化学阻抗谱(EIS)技术在体外研究了WE的电化学性质。从EIS数据中提取WE和神经组织之间接口的等效电路模型(ECM),并使用预设电流激励在时域中进行仿真。使用猪VN和颈动脉的孤立部分作为参考,测试了空间和纤维型高选择性迷走神经刺激(VNS)的电生理性能。使用指定的三个电极组(三重态)将准梯形电流控制脉冲(刺激)施加到VN或动脉段。三元组和刺激被配置为主要刺激B纤维和最小化对A纤维的刺激。 EIS结果显示出电容性电荷转移占主导地位,这是非常理想的特性。电生理性能测试表明,刺激可能存在某些参数和波形,其中A纤维对NR的贡献略有下降,B纤维对NR的贡献略有增加。研究结果表明,基于EIS和ECM结果的刺激电极设计可作为神经袖套发展的有用工具。

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