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24.2 A power-efficient switched-capacitor stimulating system for electrical/optical deep-brain stimulation

机译:24.2用于电/光深脑刺激的高能效开关电容器刺激系统

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Deep-brain stimulation (DBS) has been proven as an effective therapy to alleviate Parkinson's disease, tremor, and dystonia. Towards a less invasive head-mounted DBS, we utilize an inductive transcutaneous link to provide sufficient power without size, lifetime, and discomfort of chest-mounted battery-powered traditional DBS. The next step is to adopt aggressive power-management schemes to further improve the DBS efficiency. Current-controlled stimulation (CCS) enables precise charge control and safe operation, but it has low power efficiency due to the dropout voltage across current sources [1,2]. Switched-capacitor stimulation (SCS), proposed in [3], takes advantage of both high efficiency and safety using capacitor banks to transfer charge to the tissue, but it requires an efficient on-chip capacitor charging system, directly from the inductive link. We present an integrated wireless SCS system-on-a-chip with inductive capacitor charging and charge-based stimulation capabilities, which can improve both stimulator (before electrodes) and stimulus (after electrodes) efficiencies in DBS.
机译:深脑刺激(DBS)已被证明是缓解帕金森氏病,震颤和肌张力障碍的有效疗法。对于侵入性较小的头戴式DBS,我们利用感应式经皮链接提供足够的功率,而尺寸,使用寿命和胸部安装式电池供电的传统DBS的不适感均得到缓解。下一步是采用积极的电源管理方案,以进一步提高DBS效率。电流控制的刺激(CCS)可以实现精确的充电控制和安全的操作,但是由于电流源两端的电压差[1,2],其电源效率低。文献[3]中提出的开关电容器刺激(SCS)利用电容器组将电荷转移到组织中,同时兼顾了高效率和安全性,但它需要直接从感应链路获得高效的片上电容器充电系统。我们提出了一种集成的无线SCS片上系统,具有感应电容器充电和基于电荷的刺激功能,可以提高DBS中的刺激器(电极前)和刺激物(电极后)效率。

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