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用于临床前研究的模块化电流刺激系统。

Modular Current Stimulation System for Pre-clinical Studies.

作者信息

Mottaghi Soheil, Afshari Niloofar, Buchholz Oliver, Liebana Samuel, Hofmann Ulrich G

机构信息

Section for Neuroelectronic Systems, Department of Neurosurgery, Medical Center University of Freiburg, Freiburg, Germany.

Faculty of Medicine, University of Freiburg, Freiburg, Germany.

出版信息

Front Neurosci. 2020 Apr 30;14:408. doi: 10.3389/fnins.2020.00408. eCollection 2020.

Abstract

Electric stimulators with precise and reliable outputs are an indispensable part of electrophysiological research. From single cells to deep brain or neuromuscular tissue, there are diverse targets for electrical stimulation. Even though commercial systems are available, we state the need for a low-cost, high precision, functional, and modular (hardware, firmware, and software) current stimulation system with the capacity to generate stable and complex waveforms for pre-clinical research. The system presented in this study is a USB controlled 4-channel modular current stimulator that can be expanded and generate biphasic arbitrary waveforms with 16-bit resolution, high temporal precision (μs), and passive charge balancing: the NES STiM (Neuro Electronic Systems Stimulator). We present a detailed description of the system's structural design, the controlling software, reliability test, and the pre-clinical studies [deep brain stimulation (DBS) in hemi-PD rat model] in which it was utilized. The NES STiM has been tested with MacOS and Windows operating systems. Interfaces to MATLAB source codes are provided. The system is inexpensive, relatively easy to build and can be assembled quickly. We hope that the NES STiM will be used in a wide variety of neurological applications such as Functional Electrical Stimulation (FES), DBS and closed loop neurophysiological research.

摘要

具有精确且可靠输出的电刺激器是电生理研究中不可或缺的一部分。从单细胞到深部脑区或神经肌肉组织,电刺激有多种目标。尽管已有商用系统,但我们指出,对于临床前研究而言,仍需要一种低成本、高精度、功能完备且模块化(硬件、固件和软件)的电流刺激系统,该系统需具备生成稳定且复杂波形的能力。本研究中介绍的系统是一款由USB控制的4通道模块化电流刺激器,它可以进行扩展,能够生成具有16位分辨率、高时间精度(微秒级)且具备无源电荷平衡功能的双相任意波形:NES STiM(神经电子系统刺激器)。我们详细描述了该系统的结构设计、控制软件、可靠性测试以及使用它进行的临床前研究[半侧帕金森病大鼠模型中的深部脑刺激(DBS)]。NES STiM已在MacOS和Windows操作系统上进行了测试。还提供了与MATLAB源代码的接口。该系统价格低廉,相对易于构建且能快速组装。我们希望NES STiM能应用于多种神经学应用中,如功能性电刺激(FES)、DBS以及闭环神经生理学研究。

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