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自由活动大鼠的皮质局部场电位、心电图、肌电图和呼吸节律的同步记录

Simultaneous Recordings of Cortical Local Field Potentials, Electrocardiogram, Electromyogram, and Breathing Rhythm from a Freely Moving Rat.

作者信息

Shikano Yu, Sasaki Takuya, Ikegaya Yuji

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo.

Graduate School of Pharmaceutical Sciences, The University of Tokyo;

出版信息

J Vis Exp. 2018 Apr 2(134):56980. doi: 10.3791/56980.

Abstract

Monitoring the physiological dynamics of the brain and peripheral tissues is necessary for addressing a number of questions about how the brain controls body functions and internal organ rhythms when animals are exposed to emotional challenges and changes in their living environments. In general experiments, signals from different organs, such as the brain and the heart, are recorded by independent recording systems that require multiple recording devices and different procedures for processing the data files. This study describes a new method that can simultaneously monitor electrical biosignals, including tens of local field potentials in multiple brain regions, electrocardiograms that represent the cardiac rhythm, electromyograms that represent awake/sleep-related muscle contraction, and breathing signals, in a freely moving rat. The recording configuration of this method is based on a conventional micro-drive array for cortical local field potential recordings in which tens of electrodes are accommodated, and the signals obtained from these electrodes are integrated into a single electrical board mounted on the animal's head. Here, this recording system was improved so that signals from the peripheral organs are also transferred to an electrical interface board. In a single surgery, electrodes are first separately implanted into the appropriate body parts and the target brain areas. The open ends of all of these electrodes are then soldered to individual channels of the electrical board above the animal's head so that all of the signals can be integrated into the single electrical board. Connecting this board to a recording device allows for the collection of all of the signals into a single device, which reduces experimental costs and simplifies data processing, because all data can be handled in the same data file. This technique will aid the understanding of the neurophysiological correlates of the associations between central and peripheral organs.

摘要

监测大脑和外周组织的生理动态对于解决许多关于动物在面临情感挑战和生活环境变化时大脑如何控制身体功能和内脏节律的问题至关重要。在一般实验中,来自不同器官(如大脑和心脏)的信号由独立的记录系统记录,这些系统需要多个记录设备和不同的数据文件处理程序。本研究描述了一种新方法,该方法可以在自由活动的大鼠中同时监测电生物信号,包括多个脑区的数十个局部场电位、代表心律的心电图、代表清醒/睡眠相关肌肉收缩的肌电图以及呼吸信号。该方法的记录配置基于用于皮质局部场电位记录的传统微驱动阵列,其中容纳了数十个电极,并且从这些电极获得的信号被集成到安装在动物头部的单个电路板中。在这里,对该记录系统进行了改进,以便来自外周器官的信号也能传输到电接口板。在一次手术中,首先将电极分别植入适当的身体部位和目标脑区。然后将所有这些电极的开口端焊接到动物头部上方电路板的各个通道上,这样所有信号都可以集成到单个电路板中。将该电路板连接到记录设备可以将所有信号收集到一个设备中,这降低了实验成本并简化了数据处理,因为所有数据都可以在同一个数据文件中处理。这项技术将有助于理解中枢和外周器官之间关联的神经生理相关性。

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