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脑电图中记录的癫痫样放电为单极和双极:使用电极位置与电压图区分切向和径向发生器的实用方法。

Epileptiform Discharges Recorded as Monopoles and Dipoles in the EEG: A Practical Approach to Differentiate Tangential and Radial Generators Using Electrode Position Versus Voltage Graphs.

机构信息

Department of Neurology, University Hospitals Cleveland Medical Center, Cleveland, OH, U.S.A.

School of Medicine, Case Western Reserve University, Cleveland, OH, U.S.A.

出版信息

J Clin Neurophysiol. 2024 Sep 1;41(6):495-506. doi: 10.1097/WNP.0000000000001080.

DOI:10.1097/WNP.0000000000001080
PMID:39186586
Abstract

Differentiating dipoles (tangential generators) from monopoles (radial generators) in routine EEG reading can be difficult. The polarity of sharp waves seen on surface EEG will change depending on the generator being located at the wall of the sulcus versus the crown of a gyrus. In this article, the authors introduce visual rules that may be used to determine polarity and estimate the localization of potentials during analysis of the EEG. They also review a practical approach to differentiate monopoles (radial generators) from dipoles (tangential dipoles) in the surface EEG using "electrode position versus voltage graphs." Finally, the authors illustrate examples of dipoles and monopoles with focal spikes located in the following locations: (1) bipolar spikes located in the anterior bank of the central sulcus, (2) bipolar spikes located in the posterior bank of the central sulcus, (3) monopolar spikes located in the crown of the precentral gyrus, (4) bipolar spikes with a vertically oriented dipole originated within the temporal (inferior) bank of the Sylvian fissure, and (5) monopolar spikes located in the convexity of a temporal gyrus. In summary, this article discusses electrographic features of spikes localized in various fissures and gyri and provides practical rules that permit the identification and location of dipoles and monopoles in standard scalp EEG recordings.

摘要

在常规脑电图阅读中,区分偶极子(切向发生器)和单极子(径向发生器)可能具有一定难度。在表面脑电图上观察到的尖波的极性将取决于发生器位于脑沟壁还是脑回顶。在本文中,作者介绍了一些视觉规则,可用于确定极性并在脑电图分析期间估计电位的定位。他们还回顾了一种实用方法,即使用“电极位置与电压图”来区分表面脑电图中的单极子(径向发生器)和偶极子(切向偶极子)。最后,作者通过以下示例说明了偶极子和单极子:(1)位于中央沟前壁的双极尖波;(2)位于中央沟后壁的双极尖波;(3)位于中央前回顶的单极尖波;(4)起源于 Sylvian 裂颞(下)侧的垂直取向偶极子的双极尖波;(5)位于颞回凸面的单极尖波。总之,本文讨论了定位于不同裂和回的棘波的电描记特征,并提供了允许在标准头皮脑电图记录中识别和定位偶极子和单极子的实用规则。

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