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Flexible Charge Balanced Stimulator With 5.6 fC Accuracy for 140 nC Injections

机译:灵活的电荷平衡刺激器,用于140 nC注入的精度为5.6 fC

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摘要

Electrical stimulations of neuronal structures must ensure net injected charges to be zero for biological safety and voltage compliance reasons. We present a novel architecture of general purpose biphasic constant current stimulator that exhibits less than 5.6 fC error while injecting 140 nC charges using 1.4 mA currents. The floating current sources and conveyor switch based system can operate in monopolar or bipolar modes. Anodic-first or cathodic-first pulses with optional inter-phase delays have been demonstrated with zero quiescent current requirements at the analog front-end. The architecture eliminates blocking capacitors, electrode shorting and complex feedbacks. Bench-top and in-vivo measurement results have been presented with emulated electrode impedances (resistor-capacitor network), Ag-AgCl electrodes in saline and in-vivo (acute) peripheral nerve stimulations in anesthetized rats.
机译:出于生物安全和电压顺应性的原因,神经元结构的电刺激必须确保净注入电荷为零。我们提出了一种通用型双相恒流激励器的新颖架构,该架构在使用1.4 mA电流注入140 nC电荷时展现出小于5.6 fC的误差。基于浮动电流源和输送机开关的系统可以单极性或双极性模式运行。在模拟前端,具有零静态电流要求的演示了具有可选的相间延迟的阳极优先或阴极优先脉冲。该架构消除了阻塞电容器,电极短路和复杂的反馈。台式和体内测量结果已通过模拟电极阻抗(电阻器-电容器网络),盐水中的Ag-AgCl电极和麻醉大鼠的体内(急性)周围神经刺激来呈现。

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