微电极
电生理学
协议(科学)
神经科学
计算机科学
医学
化学
心理学
病理
电极
物理化学
替代医学
作者
Leila Rezayat,Mohammad Hossein Ghajar,Alireza Naji,Jalaledin Noroozi,Mohammad‐Reza A. Dehaqani,Ehsan Rezayat
标识
DOI:10.1088/2057-1976/ad63ad
摘要
Abstract To date, a myriad of neural microelectrodes has been meticulously developed, but the focus of existing literature predominantly revolves around fabrication methodologies rather than delving into the reconditioning processes or strategies for salvaging electrodes exhibiting diminished performance due to material failure. This study aims to elucidate the underlying factors contributing to the degradation in performance of neural microelectrodes. Additionally, it introduces a comprehensive, cost-effective protocol for the reconditioning and repurposing of electrodes afflicted by material failure, tailored for a broad spectrum of electrode types. The efficacy of the proposed reconditioning protocol is substantiated through experimental validation on single-site tungsten microelectrodes. The results of neural signal recording unequivocally demonstrate the successful restoration of a substantial number of electrodes, underscoring the protocol’s effectiveness.
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