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High-density Electroencephalographic Acquisition in a Rodent Model Using Low-cost and Open-source Resources

机译:使用低成本和开源资源的啮齿动物模型中的高密度脑电图采集

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摘要

Advanced electroencephalographic analysis techniques requiring high spatial resolution, including electrical source imaging and measures of network connectivity, are applicable to an expanding variety of questions in neuroscience. Performing these kinds of analyses in a rodent model requires higher electrode density than traditional screw electrodes can accomplish. While higher-density electroencephalographic montages for rodents exist, they are of limited availability to most researchers, are not robust enough for repeated experiments over an extended period of time, or are limited to use in anesthetized rodents.1-3 A proposed low-cost method for constructing a durable, high-count, transcranial electrode array, consisting of bilaterally implantable headpieces is investigated as a means to perform advanced electroencephalogram analyses in mice or rats.Procedures for headpiece fabrication and surgical implantation necessary to produce high signal to noise, low-impedance electroencephalographic and electromyographic signals are presented. While the methodology is useful in both rats and mice, this manuscript focuses on the more challenging implementation for the smaller mouse skull. Freely moving mice are only tethered to cables via a common adapter during recording. One version of this electrode system that includes 26 electroencephalographic channels and 4 electromyographic channels is described below.
机译:需要高空间分辨率的高级脑电图分析技术,包括电源成像和网络连接性度量,适用于神经科学领域不断扩大的各种问题。在啮齿动物模型中执行这些类型的分析需要比传统的螺旋电极可以实现的电极密度更高的电极密度。虽然存在用于啮齿动物的高密度脑电蒙太奇,但它们对大多数研究人员的可用性有限,对于长时间的重复实验而言不够强大,或者仅限于在麻醉的啮齿动物中使用。 1-3 研究了一种建议的低成本方法,该方法用于构建耐用的,高计数性的经颅电极阵列,该电极阵列由可双向植入的头戴装置组成,可以在小鼠或大鼠中进行高级脑电图分析。产生高信噪比,低阻抗脑电图和肌电图信号。虽然该方法学对大鼠和小鼠均有用,但该手稿着重于对较小的小鼠头骨的更具挑战性的实现。在记录过程中,自由移动的鼠标仅通过公共适配器连接到电缆。以下描述了该电极系统的一种形式,其包括26个脑电图通道和4个肌电图通道。

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