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一种用于脊髓损伤大鼠的完全可植入且可编程的硬膜外脊髓刺激系统。

A Fully Implantable and Programmable Epidural Spinal Cord Stimulation System for Rats With Spinal Cord Injury.

作者信息

Mao Guangwei, Zhou Zhijun, Su Hao, Chen Yaozhong, Zhang Jianjun, Zhang Chiyuan, Wang Zhigong, Lu Xiaoying

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2023;31:818-828. doi: 10.1109/TNSRE.2023.3234580. Epub 2023 Feb 2.

Abstract

Epidural spinal cord stimulation (ESCS) is a potential treatment for the recovery of the motor function in spinal cord injury (SCI) patients. Since the mechanism of ESCS remains unclear, it is necessary to study the neurophysiological principles in animal experiments and standardize the clinical treatment. In this paper, an ESCS system is proposed for animal experimental study. The proposed system provides a fully implantable and programmable stimulating system for complete SCI rat model, along with a wireless charging power solution. The system is composed of an implantable pulse generator (IPG), a stimulating electrode, an external charging module and an Android application (APP) via a smartphone. The IPG has an area of ${25} \times {25}$ mm2 and can output 8 channels of stimulating currents. Stimulating parameters, including amplitude, frequency, pulse width and sequence, can be programmed through the APP. The IPG was encapsulated with a zirconia ceramic shell and two-month implantable experiments were carried out in 5 rats with SCI. The main focus of the animal experiment was to show that the ESCS system could work stably in SCI rats. The IPG implanted in vivo can be charged through the external charging module in vitro without anesthetizing the rats. The stimulating electrode was implanted according to the distribution of ESCS motor function regions of rats and fixed on the vertebrae. The lower limb muscles of SCI rats can be activated effectively. The two-month SCI rats needed greater stimulating current intensity than the one-month SCI rats The results indicated that the stimulating system provides an effective and simplified tool for studying the ESCS application in motor function recovery for untethered animals.

摘要

硬膜外脊髓刺激(ESCS)是脊髓损伤(SCI)患者运动功能恢复的一种潜在治疗方法。由于ESCS的机制尚不清楚,有必要在动物实验中研究神经生理学原理并规范临床治疗。本文提出了一种用于动物实验研究的ESCS系统。该系统为完全性SCI大鼠模型提供了一种完全可植入且可编程的刺激系统,以及一种无线充电电源解决方案。该系统由一个植入式脉冲发生器(IPG)、一个刺激电极、一个外部充电模块和一个通过智能手机的安卓应用程序(APP)组成。IPG的面积为25×25平方毫米,可输出8通道刺激电流。刺激参数,包括幅度、频率、脉宽和序列,可通过APP进行编程。IPG用氧化锆陶瓷外壳封装,并在5只SCI大鼠中进行了为期两个月的植入实验。动物实验的主要重点是证明ESCS系统能够在SCI大鼠中稳定工作。植入体内的IPG可通过体外的外部充电模块进行充电,而无需对大鼠进行麻醉。刺激电极根据大鼠ESCS运动功能区的分布进行植入,并固定在椎骨上。SCI大鼠的下肢肌肉可被有效激活。两个月大 的SCI大鼠比一个月大的SCI大鼠需要更大的刺激电流强度。结果表明,该刺激系统为研究ESCS在无束缚动物运动功能恢复中的应用提供了一种有效且简化的工具。

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