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成年对照啮齿动物视频脑电图的方法学标准及解读。国际抗癫痫联盟(ILAE)AES/ILAE转化任务组的TASK1-WG1报告

Methodological standards and interpretation of video-electroencephalography in adult control rodents. A TASK1-WG1 report of the AES/ILAE Translational Task Force of the ILAE.

作者信息

Kadam Shilpa D, D'Ambrosio Raimondo, Duveau Venceslas, Roucard Corinne, Garcia-Cairasco Norberto, Ikeda Akio, de Curtis Marco, Galanopoulou Aristea S, Kelly Kevin M

机构信息

Department of Neurology, Kennedy Krieger Institute and Johns Hopkins University School of Medicine, Baltimore, Maryland, U.S.A.

Department of Neurological Surgery and Regional Epilepsy Center, University of Washington, Seattle, Washington, U.S.A.

出版信息

Epilepsia. 2017 Nov;58 Suppl 4(Suppl 4):10-27. doi: 10.1111/epi.13903.

Abstract

In vivo electrophysiological recordings are widely used in neuroscience research, and video-electroencephalography (vEEG) has become a mainstay of preclinical neuroscience research, including studies of epilepsy and cognition. Studies utilizing vEEG typically involve comparison of measurements obtained from different experimental groups, or from the same experimental group at different times, in which one set of measurements serves as "control" and the others as "test" of the variables of interest. Thus, controls provide mainly a reference measurement for the experimental test. Control rodents represent an undiagnosed population, and cannot be assumed to be "normal" in the sense of being "healthy." Certain physiological EEG patterns seen in humans are also seen in control rodents. However, interpretation of rodent vEEG studies relies on documented differences in frequency, morphology, type, location, behavioral state dependence, reactivity, and functional or structural correlates of specific EEG patterns and features between control and test groups. This paper will focus on the vEEG of standard laboratory rodent strains with the aim of developing a small set of practical guidelines that can assist researchers in the design, reporting, and interpretation of future vEEG studies. To this end, we will: (1) discuss advantages and pitfalls of common vEEG techniques in rodents and propose a set of recommended practices and (2) present EEG patterns and associated behaviors recorded from adult rats of a variety of strains. We will describe the defining features of selected vEEG patterns (brain-generated or artifactual) and note similarities to vEEG patterns seen in adult humans. We will note similarities to normal variants or pathological human EEG patterns and defer their interpretation to a future report focusing on rodent seizure patterns.

摘要

体内电生理记录在神经科学研究中被广泛应用,视频脑电图(vEEG)已成为临床前神经科学研究的主要手段,包括癫痫和认知研究。利用vEEG的研究通常涉及比较不同实验组或同一实验组在不同时间获得的测量结果,其中一组测量结果作为“对照”,其他测量结果作为感兴趣变量的“测试”。因此,对照主要为实验测试提供参考测量。对照啮齿动物代表未被诊断的群体,不能被假定为“健康”意义上的“正常”。在人类中看到的某些生理性脑电图模式在对照啮齿动物中也能看到。然而,啮齿动物vEEG研究的解释依赖于对照和测试组之间特定脑电图模式和特征在频率、形态、类型、位置、行为状态依赖性、反应性以及功能或结构相关性方面的记录差异。本文将聚焦于标准实验室啮齿动物品系的vEEG,旨在制定一套实用指南,以协助研究人员设计、报告和解释未来的vEEG研究。为此,我们将:(1)讨论啮齿动物中常见vEEG技术的优缺点,并提出一套推荐做法;(2)展示从多种品系成年大鼠记录的脑电图模式及相关行为。我们将描述选定的vEEG模式(脑源性或人为的)的定义特征,并指出与成年人类中看到的vEEG模式的相似之处。我们将指出与正常变异或病理性人类脑电图模式的相似之处,并将其解释推迟到未来一篇关注啮齿动物癫痫发作模式的报告中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbe9/5679281/6e7c68df3d8c/nihms903543f1.jpg

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