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计算机脑电图地形图。

Computed EEG topography.

作者信息

Harner R N, Ostergren K A

出版信息

Electroencephalogr Clin Neurophysiol Suppl. 1978(34):151-61.

PMID:285829
Abstract

Using the method of sequential analysis, clinical EEGs are transformed into a temporal sequence of individual events with specification of amplitude, wave or segment interval, channel of origin and paroxysmal character in relation to background activity. These data can be viewed immediately in graphic form and stored for subsequent display or numerical analysis. The speed, format, and high information content of this method of data reduction allow real time topographic display of individual background and paroxysmal events - computed EEG topography (CET). Alpha asymmetry, slow activity, paroxysmal events and bilateral spike-wave activity are vividly represented and distinguished. There appears to be a close correlation between the usual method of EEG interpretation and the independent interpretation of a very compact quasi-anatomic CET with respect to nature and localization of normal and abnormal EEG activity. Initial observations suggest particular value of the CET in defining the extent of functional disturbance related to an anatomical lesion and in communicating this information to the electroencephalographer and to the clinician.

摘要

采用序贯分析方法,临床脑电图被转换为个体事件的时间序列,同时明确其幅度、波或节段间隔、起源通道以及与背景活动相关的阵发性特征。这些数据能够立即以图形形式查看,并存储起来以供后续显示或数值分析。这种数据缩减方法的速度、格式和高信息含量使得能够实时进行个体背景和阵发性事件的地形图显示——即计算脑电图地形图(CET)。阿尔法不对称性、慢活动、阵发性事件和双侧棘波活动都能得到生动呈现并加以区分。在脑电图常规解读方法与非常紧凑的准解剖学CET对正常和异常脑电图活动的性质及定位进行的独立解读之间,似乎存在密切关联。初步观察表明,CET在确定与解剖病变相关的功能障碍程度以及将此信息传达给脑电图医师和临床医生方面具有特殊价值。

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