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皮质下结构参与左侧视空间注意偏向的时空特征。

Spatio-temporal indications of sub-cortical involvement in leftward bias of spatial attention.

机构信息

Functional Brain Center, Wohl Institute for Advanced Imaging, Tel Aviv Sourasky Medical Center, Tel Aviv, Israel.

出版信息

Neuroimage. 2011 Feb 14;54(4):3010-20. doi: 10.1016/j.neuroimage.2010.10.078. Epub 2010 Nov 5.

Abstract

A leftward bias is well known in humans and animals, and commonly related to the right hemisphere dominance for spatial attention. Our previous fMRI study suggested that this bias is mediated by faster conduction from the right to left parietal cortices, than the reverse (Siman-Tov et al., 2007). However, the limited temporal resolution of fMRI and evidence on the critical involvement of sub-cortical regions in orienting of spatial attention suggested further investigation of the leftward bias using multi-scale measurement. In this simultaneous EEG-fMRI study, healthy participants were presented with face pictures in either the right or left visual fields while performing a central fixation task. Temporo-occipital event related potentials, time-locked to the stimulus onset, showed an association between faster conduction from the right to the left hemisphere and higher fMRI activation in the left pulvinar nucleus following left visual field stimulation. This combined-modal finding provides original evidence of the involvement of sub-cortical central attention-related regions in the leftward bias. This assertion was further strengthened by a DCM analysis designated at cortical (i.e., inferior parietal sulcus; IPS) and sub-cortical (pulvinar nucleus) attention-related nodes that revealed: 1. Stronger inter-hemispheric connections from the right to left than vice versa, already at the pulvinar level. 2. Stronger connections within the right than the left hemisphere, from the pulvinar to the IPS. This multi-level neural superiority can guide future efforts in alleviating attention deficits by focusing on improving network connectivity.

摘要

左偏性在人类和动物中是众所周知的,通常与空间注意的右半球优势有关。我们之前的 fMRI 研究表明,这种偏向是由右侧到左侧顶叶皮质的更快传导介导的,而不是相反的情况(Siman-Tov 等人,2007 年)。然而,fMRI 的时间分辨率有限,以及关于皮质下区域在空间注意定向中关键作用的证据表明,需要使用多尺度测量进一步研究左偏性。在这项同时进行的 EEG-fMRI 研究中,健康参与者在执行中央注视任务时,在右或左视野中呈现面孔图片。与刺激起始时间锁定的颞枕事件相关电位(ERP)显示,右侧到左侧半球的更快传导与左视野刺激后左侧丘脑枕核的 fMRI 激活更高之间存在关联。这种联合模态的发现为皮质下中央注意相关区域参与左偏性提供了原始证据。通过指定皮质(即下顶叶沟;IPS)和皮质下(丘脑枕核)注意相关节点的 DCM 分析进一步加强了这一断言,该分析揭示了:1. 在丘脑枕核水平,从右侧到左侧的半球间连接比从左侧到右侧的更强。2. 从丘脑枕核到 IPS 的右侧连接比左侧更强。这种多水平的神经优势可以指导未来通过关注改善网络连接来减轻注意力缺陷的努力。

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