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一款 430MHz 无线供电的植入式脉冲发生器,具有强度/速率控制功能和低于 1μA 的静态电流消耗。

A 430-MHz Wirelessly Powered Implantable Pulse Generator With Intensity/Rate Control and Sub-1 μA Quiescent Current Consumption.

出版信息

IEEE Trans Biomed Circuits Syst. 2019 Feb;13(1):180-190. doi: 10.1109/TBCAS.2018.2879357. Epub 2018 Nov 9.

Abstract

This work presents a miniaturized μW-level implantable pulse generator (IPG) inductively powered at 430 MHz. Notches are intentionally applied to the incident power, which are replicated to precisely control the timing of the output pulses. Fabricated in a 180-nm CMOS process, the concise circuitry occupies a pad-included footprint of 850 μm × 450 μm and achieves a quiescent current consumption of 950 nA. To reduce the form factor, 401-457 MHz MedRadio-band is utilized to realize the induction link. The finalized assembly achieves one of the smallest dimensions (4.6 mm × 7.0 mm) for near-field IPGs with the Rx coil size of 4.5 mm × 3.6 mm. Codesign of the rectifier and Rx coil accommodates the possible resonant frequency drifts in biological tissues. In the benchtop measurement, a 430-MHz Tx coil is demonstrated to operate the IPG at 4.5 and 4 cm proximities in the air and through water, respectively. An in vivo experiment has been performed, in which the IPG was implanted on the hindlimb muscle belly of an anesthetized rat with the connective tissue and skin sutured. The electrical stimuli induced the isolated ankle flexion at specific strengths and rates, and the experiment complies with the specific absorption rate regulations. This work shows the potential for applications requiring stringent form factors and high sensitivities.

摘要

本工作提出了一种工作在 430MHz 的微型 μW 级植入式脉冲发生器 (IPG) ,通过在入射功率上有意应用切口,来精确控制输出脉冲的定时。该 IPG 采用 180nmCMOS 工艺制造,简洁的电路占用了包含焊盘在内的 850μm×450μm 的面积,静态电流消耗为 950nA。为了减小尺寸,利用 401-457MHz 的 MedRadio 频段实现感应链路。最终的组件实现了近场 IPG 中尺寸最小的之一(4.6mm×7.0mm),接收线圈尺寸为 4.5mm×3.6mm。整流器和接收线圈的协同设计可以适应生物组织中可能的谐振频率漂移。在台式测量中,展示了一个 430MHz 的 Tx 线圈,可以在空气中和水中分别在 4.5cm 和 4cm 的近距离操作 IPG。已经进行了体内实验,将 IPG 植入麻醉大鼠的后肢肌肉腹部,用结缔组织和皮肤缝合。电刺激以特定的强度和速率引起了孤立的踝关节弯曲,实验符合特定吸收率的规定。这项工作展示了对需要严格尺寸和高灵敏度的应用的潜力。

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