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听觉诱发电位P300成分的偶极子源分析:方法学的进展?

Dipole source analysis of P300 component of the auditory evoked potential: a methodological advance?

作者信息

Hegerl U, Frodl-Bauch T

机构信息

Department of Psychiatry, Ludwig-Maximilians Universität München, Germany.

出版信息

Psychiatry Res. 1997 May 16;74(2):109-18. doi: 10.1016/s0925-4927(97)03129-6.

Abstract

A dipole model of the P300 component of the auditory evoked potential was developed with the aim of separating the overlapping P300 subcomponents and assessing the reliability of P300 dipole parameters compared with other methods such as principal component analysis (PCA). P300 was recorded within an auditory oddball paradigm in 57 healthy subjects. Dipole source analysis was performed with Brain Electrical Source Analysis (BESA). With a temporo-basal and a temporo-superior dipole per hemisphere, most of the variance of scalp-recorded P300 activity can be explained. When dipole source analysis is used, the test-retest reliability of P300-amplitude measurements is enhanced as compared with PCA or single channel analysis. The P300 activity of the temporo-basal dipoles and that of the temporo-superior dipoles differ in several respects (e.g. latency, correlations with age) and thus appear to reflect functionally different neuronal processes. In spite of problems in the interpretation of dipole locations, it is concluded that dipole source analysis enhances both the reliability and physiological validity of P300 parameters.

摘要

为了分离重叠的P300子成分,并与主成分分析(PCA)等其他方法相比评估P300偶极子参数的可靠性,建立了听觉诱发电位P300成分的偶极子模型。在57名健康受试者的听觉oddball范式中记录P300。使用脑电源分析(BESA)进行偶极子源分析。每个半球有一个颞底部偶极子和一个颞上部偶极子,头皮记录的P300活动的大部分方差都可以得到解释。与PCA或单通道分析相比,当使用偶极子源分析时,P300振幅测量的重测信度会提高。颞底部偶极子的P300活动和颞上部偶极子的P300活动在几个方面有所不同(例如潜伏期、与年龄的相关性),因此似乎反映了功能上不同的神经元过程。尽管在解释偶极子位置方面存在问题,但得出的结论是,偶极子源分析提高了P300参数的可靠性和生理有效性。

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