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Charge Balance Circuit for Constant Current Neural Stimulation with Less than 8 nC Residual Charge

机译:电荷平衡电路,用于残余电流小于8 nC的恒流神经刺激

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Charge balancing is a major concern in functional electrical stimulation. Any excess charge accumulation over time leads to electrolysis with the electrode dissolution and tissue destruction. Therefore, charge balance circuits are used for mitigating the effects of charge accumulation in tissues. This work introduces an active synchronous charge balance circuit for constant current neural stimulators that operates without requiring negative supply for remaining charge detection. The charge balance circuit detects the residual charge by monitoring the electrode voltages just before the stimulation. If the voltage difference between the electrodes is above a certain threshold, a balance current is generated to achieve net zero charge at the electrode. Balancing current and the main stimulation current are injected simultaneously, preventing any interference in other electrodes. The charge balance circuit is dynamically disabled to reduce the system power when the charge detection is not active. The circuit can operate for the stimulation currents up to 1.4 mA and hold the electrode charge under 8 nC/phase while consuming only 6.36 μW power.
机译:电荷平衡是功能性电刺激中的主要问题。随着时间的推移,任何多余的电荷积累都会导致电解,并导致电极溶解和组织破坏。因此,电荷平衡电路用于减轻组织中电荷积累的影响。这项工作引入了一种用于恒流神经刺激器的有源同步电荷平衡电路,该电路可以在不需要负电源的情况下进行剩余电荷检测。电荷平衡电路通过监视刺激之前的电极电压来检测残留电荷。如果电极之间的电压差高于某个阈值,则会生成平衡电流以在电极上实现净零电荷。同时注入平衡电流和主激励电流,以防止对其他电极的干扰。当电荷检测未激活时,电荷平衡电路会动态禁用,以降低系统功耗。该电路可在高达1.4 mA的激励电流下工作,并将电极电荷保持在8 nC /相以下,而仅消耗6.36μW的功率。

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