Long-term monitoring of electrochemical parameters from stimulated neural tissues

F. Mounaim, G. Lesbros, M. Sawan
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引用次数: 3

Abstract

The electrode-tissues interface (ETI) is one of the key issues for the safety, reliability and efficiency of implantable devices such as stimulators and sensors. The aim of this paper is to report an implantable telemetry device, based on a full custom integrated circuit (IC) to monitor the ETI. The proposed system performs various types of measurements, such as impedance spectroscopy, cyclic voltammetry, and galvanostatic double pulse method. Hence, the evolution of various electrochemical parameters of the ETI such as complex impedance, faradic resistance, double layer capacity, rheobase current, and chronaxy time, could be monitored long time after implantation. The full custom IC has been designed and fabricated with the CMOS 0.18 mum technology. The circuit occupies a silicon area of 2 mm2, and consumes less than 3 mW. Characterisation and in-vitro experimental results validate the full functionalities of the implantable monitoring system including the custom IC.
长期监测受刺激神经组织的电化学参数
电极-组织界面(ETI)是影响刺激器和传感器等植入式设备安全性、可靠性和效率的关键问题之一。本文的目的是报道一种植入式遥测装置,基于一个完整的定制集成电路(IC)来监测ETI。所提出的系统执行各种类型的测量,如阻抗谱,循环伏安法和恒流双脉冲法。因此,可以在植入后很长一段时间内监测ETI的复杂阻抗、faradic电阻、双层容量、流变电流、时序时间等各种电化学参数的演变。完整的定制IC已设计和制造CMOS 0.18 mum技术。该电路占用的硅面积为2 mm2,功耗小于3 mW。表征和体外实验结果验证了包括定制IC在内的可植入监测系统的全部功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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