1 × 4 微磁刺激装置的设计及其对大鼠海马 Schaffer-CA1 LTP 的定向协调调节。

IF 4.2 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Yu Zheng , Qiwen Liu , Yuhang Zhao , Yenan Qi , Lei Dong
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引用次数: 0

摘要

磁技术是近年来神经调控研究的热点。然而,磁线圈受体积限制,无法在细胞尺度上实现对靶区的精确定向磁刺激。为此,本研究设计了一个 1 × 4 阵列微磁刺激(μMS)装置,其中有四个亚毫米大小的元件,可对大鼠海马区 CA1-CA3-DG 三突触位置进行精确磁刺激。首先,确定 70 KHz/2 mT /1 min 磁刺激参数对大鼠海马中 Schaffer-CA1 的长期电位(LTP)有调节作用。然后,利用1×4阵列μMS装置,在70 KHz/2 mT/1 min的频率下,分别针对CA1、CA3和DG区域进行单点磁刺激,并对CA1-CA3、CA1-DG和CA3-DG的双点靶区以及CA1-CA3-DG的三点靶区进行多区磁刺激,从而研究单区磁刺激和多区磁刺激对LTP的调控作用。实验结果表明,在单区磁刺激的情况下,CA1区的LTP增加幅度最大,其次是CA3区,而磁刺激对DG区的影响不明显。在多区域磁刺激中,对CA1-CA3-DG三点的协同磁刺激与刺激两个单独区域相比,LTP的增加幅度更大,多区域磁刺激对LTP诱导的增强作用超过了单区域刺激。这项研究对阵列式微磁设备的协作性靶向磁刺激应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a 1 × 4 micro-magnetic stimulation device and its targeted, coordinated regulation on LTP of Schaffer-CA1 in the hippocampus of rats

Magnetic technology has been a hotspot of neuromodulation research in recent years. However, magnetic coil is limited by their size, and it is impossible to realize precise targeted magnetic stimulation to the target area at the cellular scale. To this end, this study designs a 1 × 4 array micro-magnetic stimulation (μMS) device with four sub-millimeter-sized elements, enabling precise magnetic stimulation of the CA1-CA3-DG tri-synaptic positions in the rat hippocampal region. First, it is determined that 70 KHz/2 mT/1 min magnetic stimulation parameter has a modulatory effect on the long-term potentiation (LTP) of Schaffer-CA1 in rat hippocampus. Then, a 1 × 4 array μMS device is used to perform magnetic stimulation at 70 KHz/2 mT/1 min, targeting the CA1, CA3, and DG regions individually with single-point magnetic stimulation; and multi-region magnetic stimulation is applied to the double-point targeting regions of CA1-CA3, CA1-DG, and CA3-DG, as well as the triple-point targeting region of CA1-CA3-DG, so as to investigate the regulation of LTP by single-region magnetic stimulation and multi-region magnetic stimulation. The experimental results indicate that, in the case of single-region magnetic stimulation, the magnitude of the increase in LTP in the CA1 region is the greatest, followed by the CA3 region, while the effect of magnetic stimulation on the DG region is less pronounced. In multi-region magnetic stimulation, synergistic magnetic stimulation of the three-point CA1-CA3-DG results in a greater increase in LTP compared to stimulation of two individual areas, and the enhancement of LTP induction with multi-region magnetic stimulation surpasses that of single-region stimulation. This study has implications for the collaborative targeted magnetic stimulation application of arrayed micro-magnetic devices.

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来源期刊
Methods
Methods 生物-生化研究方法
CiteScore
9.80
自引率
2.10%
发文量
222
审稿时长
11.3 weeks
期刊介绍: Methods focuses on rapidly developing techniques in the experimental biological and medical sciences. Each topical issue, organized by a guest editor who is an expert in the area covered, consists solely of invited quality articles by specialist authors, many of them reviews. Issues are devoted to specific technical approaches with emphasis on clear detailed descriptions of protocols that allow them to be reproduced easily. The background information provided enables researchers to understand the principles underlying the methods; other helpful sections include comparisons of alternative methods giving the advantages and disadvantages of particular methods, guidance on avoiding potential pitfalls, and suggestions for troubleshooting.
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