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模式翻转视觉诱发电位神经源的识别。

Identification of the neural sources of the pattern-reversal VEP.

作者信息

Di Russo Francesco, Pitzalis Sabrina, Spitoni Grazia, Aprile Teresa, Patria Fabiana, Spinelli Donatella, Hillyard Steven A

机构信息

Istituto Universitario di Scienze Motorie (IUSM), Rome, Italy.

出版信息

Neuroimage. 2005 Feb 1;24(3):874-86. doi: 10.1016/j.neuroimage.2004.09.029.

Abstract

This study aimed to characterize the neural generators of the early components of the visual-evoked potential (VEP) to pattern-reversal gratings. Multichannel scalp recordings of VEPs and dipole modeling techniques were combined with functional magnetic resonance imaging (fMRI) and retinotopic mapping in order to estimate the locations of the cortical sources giving rise to VEP components in the first 200 ms poststimulus. Dipole locations were seeded to visual cortical areas in which fMRI activations were elicited by the same stimuli. The results provide strong evidence that the first major component of the VEP elicited by a pattern-reversal stimulus (N75/P85) arises from surface-negative activity in the primary visual cortex (area V1). Subsequent waveform components could be accounted for by dipoles that were in close proximity to fMRI activations in the following cortical areas: P95 (area MT/V5), P125/N135 (area V1), N150 (transverse parietal sulcus, TPS), N160 (ventral occipital areas VP, V4v, and V4/V8), and N180 (dorsal occipital areas V3A/V7). These results provide a detailed spatiotemporal profile of the cortical origins of the pattern-reversal VEP, which should enhance its utility in both clinical and basic studies of visual-perceptual processing.

摘要

本研究旨在描绘视觉诱发电位(VEP)早期成分对模式反转光栅的神经发生器特征。将VEP的多通道头皮记录和偶极子建模技术与功能磁共振成像(fMRI)及视网膜拓扑映射相结合,以估计刺激后最初200毫秒内产生VEP成分的皮质源位置。偶极子位置设定在由相同刺激引发fMRI激活的视觉皮质区域。结果提供了强有力的证据,表明模式反转刺激诱发的VEP的第一个主要成分(N75/P85)源自初级视觉皮质(V1区)的表面负性活动。随后的波形成分可由紧邻以下皮质区域fMRI激活的偶极子来解释:P95(MT/V5区)、P125/N135(V1区)、N150(顶叶横沟,TPS)、N160(枕叶腹侧区域VP、V4v和V4/V8)以及N180(枕叶背侧区域V3A/V7)。这些结果提供了模式反转VEP皮质起源的详细时空概况,这应会增强其在视觉感知处理的临床和基础研究中的效用。

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