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目标检测的神经元计时:血流动力学与事件相关电位数据的融合

Neuronal chronometry of target detection: fusion of hemodynamic and event-related potential data.

作者信息

Calhoun V D, Adali T, Pearlson G D, Kiehl K A

机构信息

Olin Neuropsychiatry Research Center, Institute of Living, Hartford, CT 06106, USA.

出版信息

Neuroimage. 2006 Apr 1;30(2):544-53. doi: 10.1016/j.neuroimage.2005.08.060. Epub 2005 Oct 24.

Abstract

Event-related potential (ERP) studies of the brain's response to infrequent, target (oddball) stimuli elicit a sequence of physiological events, the most prominent and well studied being a complex, the P300 (or P3) peaking approximately 300 ms post-stimulus for simple stimuli and slightly later for more complex stimuli. Localization of the neural generators of the human oddball response remains challenging due to the lack of a single imaging technique with good spatial and temporal resolution. Here, we use independent component analyses to fuse ERP and fMRI modalities in order to examine the dynamics of the auditory oddball response with high spatiotemporal resolution across the entire brain. Initial activations in auditory and motor planning regions are followed by auditory association cortex and motor execution regions. The P3 response is associated with brainstem, temporal lobe, and medial frontal activity and finally a late temporal lobe "evaluative" response. We show that fusing imaging modalities with different advantages can provide new information about the brain.

摘要

对大脑对罕见目标(异常球)刺激的反应进行的事件相关电位(ERP)研究引发了一系列生理事件,其中最突出且研究最多的是一种复合体,即P300(或P3),对于简单刺激,其在刺激后约300毫秒达到峰值,对于更复杂的刺激则稍晚达到峰值。由于缺乏具有良好空间和时间分辨率的单一成像技术,人类异常球反应的神经发生器定位仍然具有挑战性。在这里,我们使用独立成分分析来融合ERP和功能磁共振成像(fMRI)模式,以便在全脑范围内以高时空分辨率检查听觉异常球反应的动态变化。听觉和运动规划区域的初始激活之后是听觉联合皮层和运动执行区域。P3反应与脑干、颞叶和内侧额叶活动相关,最后是颞叶晚期的“评估性”反应。我们表明,融合具有不同优势的成像模式可以提供有关大脑的新信息。

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