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A charge-redistribution based controller for keeping charge balance in neural stimulation

机译:基于电荷分配的控制器,用于在神经刺激中保持电荷平衡

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In this article, we present a circuit solution for sensing and controlling functional electrical stimulation (FES) currents. The objective is to keep both charge balance and residual electrode voltage under a safe limit throughout stimulation. In the proposed circuit, the stimulation current is set through an ultra-low-power charge-redistribution digital-to-analog converter (CR-DAC). Each stimulation pulse is copied by high-ratio current mirror into switched capacitors which integrate the residual direct current (DC) resulting from FES imbalances. As residual electrode voltage may buildup even for perfectly balanced current pulses, alternated cathodic-first and anodic-first stimulation is adopted to complement the charge-balancing mechanism. Simulation results suggest that the circuit is able to keep both residual charge and electrode voltage under safe limits, smaller than 0.05% and 64 mV respectively.
机译:在本文中,我们提出了一种用于感应和控制功能性电刺激(FES)电流的电路解决方案。目的是在整个刺激过程中将电荷平衡和残余电极电压都保持在安全限度内。在提出的电路中,通过超低功耗电荷分配数模转换器(CR-DAC)设置激励电流。每个刺激脉冲都由高比率电流镜复制到开关电容器中,该电容器对由FES不平衡导致的残留直流(DC)进行积分。由于即使对于完美平衡的电流脉冲也可能会残留电极电压,因此采用交替的阴极优先和阳极优先刺激来补充电荷平衡机制。仿真结果表明,该电路能够将残余电荷和电极电压保持在安全限度内,分别小于0.05%和64 mV。

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