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首页> 外文期刊>Journal of Neuroscience Methods >A low-noise flexible integrated system for recording and analysis of multiple electrical signals during sleep-wake states in rats.
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A low-noise flexible integrated system for recording and analysis of multiple electrical signals during sleep-wake states in rats.

机译:一种低噪声的灵活集成系统,用于在大鼠的睡眠唤醒状态下记录和分析多个电信号。

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摘要

A low-noise flexible system for the simultaneous recording and analysis of several electrical signals (EEG, ECG, EMG, and diaphragm EMG) from the same rat was constructed for studying changes in physiological functions during the sleep-wake cycle. The hardware in the system includes a multichannel amplifier, a video camera, a timer code generator, and a PC. A miniature buffer headstage with high-input impedance connected to a 6-channel amplifier was developed. All electrical activities devoid of 60 Hz interference could be consistently recorded by our low-cost amplifier with no shielding treatment. The analytical software was established in the LabVIEW environment and consisted of three major frames: temporal, spectral, and nonlinear analyses. These analytical tools demonstrated several distinct utilities. For example, the sleep-wake states could be successfully distinguished by combining temporal and spectral analyses. An obvious theta rhythm during rapid-eye-movement sleep (REMS) was recorded from parietal to occipital cortical areas but not from the frontal area. In addition, two types of sleep apnea with/without cardiac arrhythmias were observed under REMS condition. Moreover, the evoked potentials of the primary somatosensory cortex elicited by innocuous electrical pulses were modulated by vigilant states, especially under a slow-wave sleep state. These results show that our system delivers high-quality signals and is suitable for sleep investigations. The system can be easily expanded by combining other recording devices, like a plethysmograph. This compact system can also be easily modified and applied to other related physiological or pharmacological studies.
机译:构建了一个低噪声的灵活系统,用于同时记录和分析来自同一只大鼠的几种电信号(EEG,ECG,EMG和隔膜EMG),以研究睡眠唤醒周期中的生理功能变化。系统中的硬件包括多通道放大器,摄像机,计时器代码生成器和PC。开发了具有高输入阻抗的微型缓冲探头,其连接到6通道放大器。无需屏蔽处理的低成本放大器可以一致地记录所有无60 Hz干扰的电活动。该分析软件是在LabVIEW环境中建立的,由三个主要框架组成:时间,频谱和非线性分析。这些分析工具展示了几种不同的实用程序。例如,通过结合时间和频谱分析,可以成功地区分睡眠-唤醒状态。快速眼动睡眠(REMS)期间,从顶叶到枕叶皮质区域记录了明显的theta节律,而额叶区域则没有。另外,在REMS条件下观察到两种类型的有/没有心律不齐的睡眠呼吸暂停。而且,由无害电脉冲引起的初级体感皮层的诱发电位是由警惕状态调制的,特别是在慢波睡眠状态下。这些结果表明,我们的系统可提供高质量的信号,适用于睡眠调查。通过组合其他记录设备(如体积描记器),可以轻松扩展该系统。这种紧凑的系统也可以轻松修改,并应用于其他相关的生理学或药理学研究。

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