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Reduction of Edge Effect on Disk Electrodes by Optimized Current Waveform

机译:通过优化电流波形减少磁盘电极的边缘效应

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摘要

Rectangular pulses applied to disk electrodes result in high current density at the edges of the disk, which can lead to electrode corrosion and tissue damage. We explored a method for reducing current density and corrosion, by varying the leading edge of the current pulse. Finite element modeling and mathematical analysis were used to predict an optimal waveform that reduces current density at the edge while also maintaining short pulse duration. An approximation of the optimized waveform was implemented experimentally and applied to platinum disk electrodes. Surface analysis using energy-dispersive spectroscopy (EDS) showed significant reduction of corrosion on the periphery of these electrodes after pulsing, compared to those pulsed with the control rectangular waveform.
机译:施加到圆盘电极的矩形脉冲会在圆盘的边缘导致高电流密度,这会导致电极腐蚀和组织损伤。我们探索了一种通过改变电流脉冲的前沿来降低电流密度和腐蚀的方法。使用有限元建模和数学分析来预测最佳波形,该波形可降低边缘处的电流密度,同时还能保持较短的脉冲持续时间。通过实验实现最佳波形的近似值,并将其应用于铂圆盘电极。使用能量色散光谱法(EDS)进行的表面分析表明,与用控制矩形波脉冲产生的脉冲相比,在脉冲产生后,这些电极的外围腐蚀显着降低。

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