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使用多通道薄膜电极对小鼠进行视觉诱发电位的地形 EEG 记录。

Topographical EEG Recordings of Visual Evoked Potentials in Mice using Multichannel Thin-film Electrodes.

机构信息

Institute for Audioneurotechnology, Department of Experimental Otology, Hannover Medical School;

Institute for Audioneurotechnology, Department of Experimental Otology, Hannover Medical School; Institute for Endocrinology and Diabetes, Center of Brain, Behavior and Metabolism, University of Lübeck.

出版信息

J Vis Exp. 2022 Jun 23(184). doi: 10.3791/64034.

Abstract

Visual evoked potentials (VEP) allow the characterization of visual function in preclinical mouse models. Various methods exist to measure VEPs in mice, from non-invasive EEG, subcutaneous single-electrodes, and ECoG to fully invasive intracortical multichannel visual cortex recordings. It can be useful to acquire a global, topographical EEG-level characterization of visual responses previous to local intracortical microelectrode measurements in acute experimental settings. For example, one use case is to assess global cross-modal changes in VEP topography in deafness models before studying its effects on a local intracortical level. Multichannel epicranial EEG is a robust method to acquire such an overview measure of cortical visual activity. Multichannel epicranial EEG provides comparable results through a standardized, consistent approach to, for example, identify cross-modal, pathological, or age-related changes in cortical visual function. The current study presents a method to obtain the topographical distribution of flash-evoked VEPs with a 32-channel thin-film EEG electrode array in anesthetized mice. Combined with analysis in the time and frequency domain, this approach allows fast characterization and screening of the topography and basic visual properties of mouse cortical visual function, which can be combined with various acute experimental settings.

摘要

视觉诱发电位(VEP)可用于描述临床前小鼠模型中的视觉功能。目前存在多种方法来测量小鼠的 VEP,包括非侵入性 EEG、皮下单电极和 ECoG 以及完全侵入性的皮质内多通道视觉皮层记录。在急性实验环境中进行局部皮质内微电极测量之前,先获取视觉反应的全局、地形 EEG 水平特征可能会很有用。例如,一种应用是在研究耳聋模型中 VEP 地形的全局跨模态变化之前,评估其对局部皮质内水平的影响。多通道颅顶 EEG 是一种获取这种皮质视觉活动概述测量的强大方法。多通道颅顶 EEG 通过标准化、一致的方法提供可比的结果,例如识别皮质视觉功能的跨模态、病理性或与年龄相关的变化。本研究提出了一种在麻醉小鼠中使用 32 通道薄膜 EEG 电极阵列获得闪光诱发电位地形分布的方法。结合时域和频域分析,这种方法允许快速表征和筛选小鼠皮质视觉功能的地形和基本视觉特性,并可与各种急性实验设置相结合。

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