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使用基于聚酰亚胺的微电极对自由活动小鼠进行高密度脑电图记录。

High-density EEG recordings of the freely moving mice using polyimide-based microelectrode.

作者信息

Lee Mina, Kim Dongwook, Shin Hee-Sup, Sung Ho-Geun, Choi Jee Hyun

机构信息

Center for Neural Science , Korea Institute of Science and Technology.

出版信息

J Vis Exp. 2011 Jan 11(47):2562. doi: 10.3791/2562.

Abstract

Electroencephalogram (EEG) indicates the averaged electrical activity of the neuronal populations on a large-scale level. It is widely utilized as a noninvasive brain monitoring tool in cognitive neuroscience as well as a diagnostic tool for epilepsy and sleep disorders in neurology. However, the underlying mechanism of EEG rhythm generation is still under the veil. Recently introduced polyimide-based microelectrode (PBM-array) for high resolution mouse EEG is one of the trials to answer the neurophysiological questions on EEG signals based on a rich genetic resource that the mouse model contains for the analysis of complex EEG generation process. This application of nanofabricated PBM-array to mouse skull is an efficient tool for collecting large-scale brain activity of transgenic mice and accommodates to identify the neural correlates to certain EEG rhythms in conjunction with behavior. However its ultra-thin thickness and bifurcated structure cause a trouble in handling and implantation of PBM-array. In the presented video, the preparation and surgery steps for the implantation of PBM-array on a mouse skull are described step by step. Handling and surgery tips to help researchers succeed in implantation are also provided.

摘要

脑电图(EEG)显示了大规模水平上神经元群体的平均电活动。它在认知神经科学中被广泛用作一种非侵入性脑监测工具,在神经病学中也被用作癫痫和睡眠障碍的诊断工具。然而,EEG节律产生的潜在机制仍不为人知。最近推出的用于高分辨率小鼠脑电图的基于聚酰亚胺的微电极(PBM阵列),是基于小鼠模型所包含的丰富遗传资源来回答关于EEG信号的神经生理学问题的尝试之一,用于分析复杂的EEG产生过程。这种纳米制造的PBM阵列在小鼠颅骨上的应用是收集转基因小鼠大规模脑活动的有效工具,并有助于结合行为识别与特定EEG节律相关的神经关联。然而,其超薄的厚度和分叉结构给PBM阵列的处理和植入带来了麻烦。在本视频中,逐步描述了在小鼠颅骨上植入PBM阵列的准备和手术步骤。还提供了有助于研究人员成功植入的处理和手术技巧。

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