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完全可植入的神经刺激系统,用于长期行为动物研究。

Fully Implantable Neurostimulation System for Long-Term Behavioral Animal Study.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2023;31:3711-3721. doi: 10.1109/TNSRE.2023.3315371. Epub 2023 Sep 22.

DOI:10.1109/TNSRE.2023.3315371
PMID:37708012
Abstract

Spinal cord stimulation (SCS) is an emerging therapeutic option for patients with neuropathic pain due to spinal cord injury (SCI). Numerous studies on pain relief effects with SCS have been conducted and demonstrated promising results while the mechanisms of analgesic effect during SCS remain unclear. However, an experimental system that enables large-scale long-term animal studies is still an unmet need for those mechanistic studies. This study proposed a fully wireless neurostimulation system that can efficiently support a long-term animal study for neuropathic pain relief. The developed system consists of an implantable stimulator, an animal cage with an external charging coil, and a wireless communication interface. The proposed device has the feature of remotely controlling stimulation parameters via radio-frequency (RF) communication and wirelessly charging via magnetic induction in freely moving rats. Users can program stimulation parameters such as pulse width, intensity, and duration through an interface on a computer. The stimulator was packaged with biocompatible epoxy to ensure long-term durability under in vivo conditions. Animal experiments using SCI rats were conducted to demonstrate the functionality of the device, including long-term usability and therapeutic effects. The developed system can be tailored to individual user needs with commercially available components, thus providing a cost-effective solution for large-scale long-term animal studies on neuropathic pain relief.

摘要

脊髓刺激 (SCS) 是一种新兴的治疗方法,适用于因脊髓损伤 (SCI) 而导致的神经性疼痛患者。已经进行了许多关于 SCS 缓解疼痛效果的研究,并取得了有前途的结果,而 SCS 期间的镇痛效果机制仍不清楚。然而,对于这些机制研究来说,仍然需要一种能够支持大规模长期动物研究的实验系统。本研究提出了一种完全无线的神经刺激系统,能够有效地支持神经性疼痛缓解的长期动物研究。所开发的系统由一个可植入的刺激器、一个带有外部充电线圈的动物笼以及一个无线通信接口组成。所提出的设备具有通过射频 (RF) 通信远程控制刺激参数和通过磁感应无线充电的功能,可在自由移动的大鼠中使用。用户可以通过计算机上的界面编程刺激参数,如脉冲宽度、强度和持续时间。刺激器用生物相容性环氧树脂进行封装,以确保在体内条件下的长期耐用性。使用 SCI 大鼠进行了动物实验,以证明该设备的功能,包括长期可用性和治疗效果。该系统可以使用商业上可用的组件根据个人用户的需求进行定制,从而为大规模长期动物研究提供一种具有成本效益的神经性疼痛缓解解决方案。

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引用本文的文献

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Characterization of preclinical models to investigate spinal cord stimulation for neuropathic pain: a systematic review and meta-analysis.用于研究脊髓刺激治疗神经性疼痛的临床前模型的特征:一项系统评价和荟萃分析。
Pain Rep. 2025 Jan 13;10(1):e1228. doi: 10.1097/PR9.0000000000001228. eCollection 2025 Feb.
2
A Sensory Feedback Neural Stimulator Prototype for Both Implantable and Wearable Applications.一种适用于植入式和可穿戴应用的感觉反馈神经刺激器原型。
Micromachines (Basel). 2024 Mar 30;15(4):480. doi: 10.3390/mi15040480.