Fabrication of 60 channel microelectrode arrays for future use with cultured neuronal networks

V. Gomes, A. D. Barros, J. B. D. Filho, S. Martinoia, A. Pasquarelli, J. Swart
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引用次数: 1

Abstract

Stimulation and recording of nerve cells is a procedure used for several applications, such as clinical therapies, study of basic neuroscience, and neural prostheses. Microtechnology and advances in material science have allowed to produce more sophisticated devices and with more functions. This paper focuses on the fabrication of planar 60-channel MEAs. The electrical characterization of the noise level from the TiN electrodes showed good sensitivity to noise, compatible with commercial systems. These electrodes received an artificial electrocardiogram signal (ECG) from a function generator and registered the same input signal but with lower amplitude. Finally, both cyclic voltammetry curves of the produced MEA and the commercial MEA exhibited similar shape, but the amplitude of the first one was significantly higher than in MCS-MEA, with an order difference of magnitude.
未来用于培养神经网络的60通道微电极阵列的制备
刺激和记录神经细胞是一种应用广泛的程序,如临床治疗、基础神经科学研究和神经假体。微技术和材料科学的进步使得生产更复杂的设备和更多功能成为可能。本文主要研究了平面60通道mea的制作。TiN电极噪声水平的电学特性显示出对噪声的良好敏感性,与商用系统兼容。这些电极接收到来自函数发生器的人工心电图信号,并记录了相同的输入信号,但振幅较低。最后,生产的MEA和商用MEA的循环伏安曲线形状相似,但前者的幅值显著高于MCS-MEA,且存在数量级差异。
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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