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A Procedure for Implanting Organized Arrays of Microwires for Single-unit Recordings in Awake Behaving Animals

机译:植入有组织的微丝阵列用于在清醒的行为动物中进行单单元记录的程序。

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摘要

In vivo electrophysiological recordings in the awake, behaving animal provide a powerful method for understanding neural signaling at the single-cell level. The technique allows experimenters to examine temporally and regionally specific firing patterns in order to correlate recorded action potentials with ongoing behavior. Moreover, single-unit recordings can be combined with a plethora of other techniques in order to produce comprehensive explanations of neural function. In this article, we describe the anesthesia and preparation for microwire implantation. Subsequently, we enumerate the necessary equipment and surgical steps to accurately insert a microwire array into a target structure. Lastly, we briefly describe the equipment used to record from each individual electrode in the array. The fixed microwire arrays described are well-suited for chronic implantation and allow for longitudinal recordings of neural data in almost any behavioral preparation. We discuss tracing electrode tracks to triangulate microwire positions as well as ways to combine microwire implantation with immunohistochemical techniques in order to increase the anatomical specificity of recorded results.
机译:处于清醒状态的动物体内的体内电生理记录提供了一种了解单细胞水平神经信号的强大方法。该技术允许实验人员检查时间和区域特定的发射模式,以便将记录的动作电位与正在进行的行为相关联。此外,单单元录音可以与大量其他技术结合使用,以产生对神经功能的全面解释。在本文中,我们描述了麻醉和微线植入的准备工作。随后,我们列举了将微丝阵列准确插入目标结构的必要设备和手术步骤。最后,我们简要介绍用于记录阵列中每个单独电极的设备。所描述的固定微线阵列非常适合于慢性植入,并且可以在几乎任何行为准备中纵向记录神经数据。我们讨论了跟踪电极轨迹以对微丝位置进行三角测量,以及将微丝植入与免疫组织化学技术结合以增加记录结果的解剖学特异性的方法。

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