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Does a coupling capacitor enhance the charge balance during neural stimulation? An empirical study

机译:耦合电容器会增强神经刺激过程中的电荷平衡吗?实证研究

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摘要

Due to their DC-blocking characteristic, coupling capacitors are widely used to prevent potentially harmful charge buildup at the electrode–tissue interface. Although the capacitors can be an effective safety measure, it often seems overlooked that coupling capacitors actually introduce an offset voltage over the electrode–tissue interface as well. This work investigates this offset voltage both analytically and experimentally. The calculations as well as the experiments using bipolar-driven platinum electrodes in a saline solution confirm that coupling capacitors introduce an offset, while they barely contribute to the passive charge balancing. In particular cases, this offset is shown to reach potentially dangerous voltage levels that could induce irreversible electrochemical reactions. This work therefore suggests that when the use of coupling capacitors is required, the offset voltage should be analyzed for all operating conditions to ensure it remains within safe boundaries.
机译:由于其直流隔断特性,耦合电容器被广泛用于防止在电极-组织界面处潜在的有害电荷积聚。尽管电容器可以是一种有效的安全措施,但似乎经常被忽略,耦合电容器实际上也在电极-组织界面上引入了偏移电压。这项工作在分析和实验上都研究了这种失调电压。计算和在盐溶液中使用双极驱动铂电极的实验证实,耦合电容器会引入失调,而它们对无源电荷平衡几乎没有贡献。在特定情况下,此偏移量已显示达到可能引起不可逆的电化学反应的潜在危险电压水平。因此,这项工作表明,当需要使用耦合电容器时,应在所有工作条件下分析失调电压,以确保其保持在安全范围内。

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