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一种用于硬膜外脊髓刺激实验研究的具有无线供电和数据传输功能的完全植入式刺激器。

A Fully Implantable Stimulator With Wireless Power and Data Transmission for Experimental Investigation of Epidural Spinal Cord Stimulation.

作者信息

Xu Qi, Hu Dingyin, Duan Bingyu, He Jiping

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2015 Jul;23(4):683-92. doi: 10.1109/TNSRE.2015.2396574. Epub 2015 Feb 10.

Abstract

Epidural spinal cord stimulation (ESCS) combined with partial weight-bearing therapy (PWBT) has been shown to facilitate recovery of functional walking for individuals after spinal cord injury (SCI). The investigation of neural mechanisms of recovery from SCI under this treatment has been conducted broadly in rodent models, yet a suitable ESCS system is still unavailable. This paper describes a practical, programmable, and fully implantable stimulator for laboratory research on rats to explore fundamental neurophysiological principles for functional recovery after SCI. The ESCS system is composed of a personal digital assistant (PDA), an external controller, an implantable pulse generator (IPG), lead extension, and stimulating electrodes. The stimulation parameters can be programmed and adjusted through a graphical user interface on the PDA. The external controller is placed on the rat back and communicates with the PDA via radio-frequency (RF) telemetry. An RF carrier from the class-E power amplifier in the external controller provides both data and power for the IPG through an inductive link. The IPG is built around a microcontroller unit to generate voltage-regulated pulses delivered to the bipolar electrode for ESCS in rats. The encapsulated IPG measures 22 mm × 23 mm × 7 mm with a mass of  ∼  3.78 g. This fully implantable batteryless stimulator provided a simplified and efficient method to carry out chronic experiments in untethered animals for medical electro-neurological research.

摘要

硬膜外脊髓刺激(ESCS)联合部分负重疗法(PWBT)已被证明有助于脊髓损伤(SCI)个体恢复功能性行走。在啮齿动物模型中已广泛开展了关于这种治疗方式下SCI恢复神经机制的研究,但仍缺乏合适的ESCS系统。本文描述了一种实用、可编程且完全可植入的刺激器,用于大鼠的实验室研究,以探索SCI后功能恢复的基本神经生理学原理。该ESCS系统由个人数字助理(PDA)、外部控制器、植入式脉冲发生器(IPG)、延长导线和刺激电极组成。刺激参数可通过PDA上的图形用户界面进行编程和调整。外部控制器放置在大鼠背部,并通过射频(RF)遥测与PDA通信。外部控制器中E类功率放大器发出的RF载波通过感应链路为IPG提供数据和电力。IPG围绕微控制器单元构建,用于生成经电压调节的脉冲,输送至双极电极以对大鼠进行ESCS。封装后的IPG尺寸为22 mm×23 mm×7 mm,质量约为3.78 g。这种完全可植入的无电池刺激器为在不受束缚的动物身上进行慢性实验以开展医学神经电生理研究提供了一种简化且高效的方法。

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