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用于听觉领域空间注意力重新定向的额顶叶网络:一项关于功能和时间动态的人类功能磁共振成像/脑磁图研究。

A frontoparietal network for spatial attention reorienting in the auditory domain: a human fMRI/MEG study of functional and temporal dynamics.

作者信息

Brunetti M, Della Penna S, Ferretti A, Del Gratta C, Cianflone F, Belardinelli P, Caulo M, Pizzella V, Olivetti Belardinelli M, Romani G L

机构信息

Institute of Advanced Biomedical Technologies, University G.D'Annunzio of Chieti, Via dei Vestini, 33, 66013 Chieti (CH), Italy.

出版信息

Cereb Cortex. 2008 May;18(5):1139-47. doi: 10.1093/cercor/bhm145. Epub 2007 Aug 23.

Abstract

Several studies have identified a supramodal network critical to the reorienting of attention toward stimuli at novel locations and which involves the right temporoparietal junction and the inferior frontal areas. The present functional magnetic resonance imaging (fMRI)\magnetoencephalography (MEG) study investigates: 1) the cerebral circuit underlying attentional reorienting to spatially varying sound locations; 2) the circuit related to the regular change of sound location in the same hemifield, the change of sound location across hemifields, or sounds presented randomly at different locations on the azimuth plane; 3) functional temporal dynamics of the observed cortical areas exploiting the complementary characteristics of the fMRI and MEG paradigms. fMRI results suggest 3 distinct roles: the supratemporal plane appears modulated by variations of sound location; the inferior parietal lobule is modulated by the cross-meridian effect; and the inferior frontal cortex is engaged by the inhibition of a motor response. MEG data help to elucidate the temporal dynamics of this network by providing high-resolution time series with which to measure latency of neural activation manipulated by the reorienting of attention.

摘要

多项研究已确定了一个超模态网络,该网络对于将注意力重新定向到新位置的刺激至关重要,并且涉及右侧颞顶联合区和额下区域。本功能磁共振成像(fMRI)/脑磁图(MEG)研究调查了:1)注意力重新定向到空间变化的声音位置背后的脑回路;2)与同一半视野中声音位置的规律变化、跨半视野的声音位置变化或在方位平面上不同位置随机呈现的声音相关的回路;3)利用fMRI和MEG范式的互补特性观察到的皮质区域的功能时间动态。fMRI结果表明有3种不同的作用:颞上平面似乎受声音位置变化的调节;顶下小叶受跨子午线效应的调节;额下皮质通过抑制运动反应而被激活。MEG数据通过提供高分辨率时间序列来测量由注意力重新定向操纵的神经激活潜伏期,从而有助于阐明该网络的时间动态。

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