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A Fully Fail-Safe Capacitive-Based Charge Metering Method for Active Charge Balancing in Deep Brain Stimulation

机译:一种完全基于故障保护电容的电荷计量方法,用于深部脑刺激中的主动电荷平衡

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Related to safety issues, charge balancing is a major concern in neural and functional electrical stimulation. This paper presents a capacitive-based charge metering method as a low-power and precise charge balancing method used in Deep Brain Stimulation (DBS). In contrast to the previously presented capacitive-based charge metering methods, the proposed method does not need any precise and high-speed comparator for net-zero charge detection. It is proven that this method is insensitive to the delay and the offset of its components. Consequently, using ultra-low power components in the charge balancer is feasible. Furthermore, the proposed method properly supports any stimulation mode and waveform. The proposed approach along with voltage and current mode pulse generators was validated in a 0.9% saline solution by using a DBS lead.
机译:与安全问题相关,电荷平衡是神经和功能性电刺激中的主要问题。本文提出了一种基于电容的电荷计量方法,该方法是一种用于脑深部刺激(DBS)的低功耗且精确的电荷平衡方法。与先前介绍的基于电容的电荷计量方法相比,该方法不需要任何精确且高速的比较器即可进行净零电荷检测。事实证明,该方法对其组件的延迟和偏移不敏感。因此,在电荷平衡器中使用超低功率组件是可行的。此外,所提出的方法适当地支持任何刺激模式和波形。通过使用DBS引线在0.9%的盐溶液中验证了所提出的方法以及电压和电流模式脉冲发生器。

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