电极
电阻抗
生物医学工程
材料科学
接口(物质)
脑-机接口
闭塞
介电谱
医学
外科
电化学
脑电图
电气工程
化学
复合材料
工程类
毛细管数
物理化学
精神科
毛细管作用
作者
Nicholas L. Opie,Gil S. Rind,Sam E. John,Stephen M. Ronayne,David B. Grayden,Anthony N. Burkitt,Clive N. May,Terence J. O’Brien,Thomas J. Oxley
标识
DOI:10.1109/embc.2016.7591716
摘要
Development of a neural interface that can be implanted without risky, open brain surgery will increase the safety and viability of chronic neural recording arrays. We have developed a minimally invasive surgical procedure and an endovascular electrode-array that can be delivered to overlie the cortex through blood vessels. Here, we describe feasibility of the endovascular interface through electrode viability, recording potential and safety. Electrochemical impedance spectroscopy demonstrated that electrode impedance was stable over 91 days and low frequency phase could be used to infer electrode incorporation into the vessel wall. Baseline neural recording were used to identify the maximum bandwidth of the neural interface, which remained stable around 193 Hz for six months. Cross-sectional areas of the implanted vessels were non-destructively measured using the Australian Synchrotron. There was no case of occlusion observed in any of the implanted animals. This work demonstrates the feasibility of an endovascular neural interface to safely and efficaciously record neural information over a chronic time course.
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