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A Wirelessly Powered Electro-Acupuncture Based on Adaptive Pulsewidth Monophase Stimulation

机译:基于自适应脉宽单相刺激的无线电针灸

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摘要

A wirelessly powered electro-acupuncture (EA) system with adaptive-pulsewidth (APW) monophase stimulation is presented for convenient invasive medicine. The proposed system removes cumbersome wires connected between EA nodes and an EA controller in order to realize both patients' convenience and remedial values simultaneously. An ultra-low-power stimulator integrated circuit (IC) that is integrated on the flexible–printed-circuit board (F-PCB) is attached to the tip of a needle electrode. Combined with a conductive yarn helical antenna wound around the needle electrode, the EA node receives wireless power from the EA controller using 433 MHz with the maximum loss of 6 dB. A zero-$V$th nMOS rectifier harvests a supply voltage of 1.0 V from a ${- }$16-dBm incoming power signal with 32% efficiency. To deal with a body impedance variation (BIV) in the range of 100–200 k$Omega$ , the proposed APW stimulator IC, fabricated in a 0.18-$mu$m 1P6M complementary metal–oxide semiconductor CMOS process and occupying 1.56 mm$^{2}$, enables constant charge injection of 80-nC/stimulation. To ensure the patients' safety, the EA node (a pair of EAs) shares ground and clock wires to operate in alternate monophase (AMP) fashion for neutralizing the injected charge. The proposed wirelessly powered EA node was verified by applying it to a chunk of pork as a body model with the wireless power supplied from an RF signal generator (output power of 10 dBm and located 30 cm away).
机译:提出了一种具有自适应脉宽(APW)单相刺激的无线电针(EA)系统,用于方便的侵入性医学。提出的系统消除了连接在EA节点和EA控制器之间的繁琐电线,以便同时实现患者的便利性和补救价值。集成在柔性印刷电路板(F-PCB)上的超低功耗刺激器集成电路(IC)连接到针状电极的尖端。 EA节点与缠绕在针状电极上的导电纱线螺旋天线结合使用,以433 MHz的频率从EA控制器接收无线功率,最大损耗为6 dB。第零V $ n的nMOS整流器从$ {-} $ 16-dBm的输入功率信号中获取1.0V的电源电压,效率为32%。为了应对100-200 k $ Omega $范围内的人体阻抗变化(BIV),建议的APW刺激器IC采用0.18-μm的1P6M互补金属氧化物半导体CMOS工艺制造,占地1.56 mm $。 ^ {2} $,实现80nC /刺激的恒定电荷注入。为了确保患者的安全,EA节点(一对EA)共享接地线和时钟线,以交替单相(AMP)方式操作,以中和注入的电荷。通过使用RF信号发生器提供的无线功率(输出功率为10 dBm,位于30厘米远),将拟议的无线EA节点应用于人体模型作为猪肉模型进行了验证。

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