首页> 外文期刊>NeuroImage >Connectivity and signal intensity in the parieto-occipital cortex predicts top-down attentional effect in visual masking: an fMRI study based on individual differences.
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Connectivity and signal intensity in the parieto-occipital cortex predicts top-down attentional effect in visual masking: an fMRI study based on individual differences.

机译:顶枕皮质的连通性和信号强度可预测自上而下的视觉掩盖注意效果:一项基于个体差异的功能磁共振成像研究。

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摘要

Top-down attention affects even the early stages of visual processing. For example, several studies have reported that instructions prior to the presentation of visual stimuli can both enhance and reduce visual masking. The finding that top-down processing influences perceptual processing is called the attentional effect. However, the magnitude of the attentional effect differs between individuals, and how these differences relate to brain activation remains to be explained. One possibility would be that activation intensity predicts the magnitude of the attentional effect. Another possible explanation would be that effective connectivity among activated areas determines the attentional effect. In the present study, we used structural equation modeling to analyze individual differences in the attentional effect on visual masking, in relation to the signal and connectivity strength of activated brain regions prior to presentation of the visual stimuli. The results showed that signal intensity was positively correlated with attentional effect in the occipital areas, but not in fronto-parietal areas, and the effect was also positively correlated with connective efficiency from the right intraparietal sulcus (IPS) to the bilateral fusiform gyrus (GF). Furthermore, a higher degree of effective connections from the right IPS to the GF led to greater neural activity in the GF. We therefore propose that the effective modulator in the parietal areas and strong activation in the visual areas together and in cooperation predict higher attentional effects in visual processing.
机译:自上而下的注意力甚至会影响视觉处理的早期阶段。例如,一些研究报告说,在呈现视觉刺激之前的指令可以增强和减少视觉掩盖。自上而下的处理影响知觉处理的发现称为注意力效应。但是,注意效果的大小因人而异,这些差异与大脑激活的关系尚待解释。一种可能性是激活强度可以预测注意效果的大小。另一个可能的解释是激活区域之间的有效连通性决定了注意力的影响。在本研究中,我们使用结构方程模型分析了在视觉掩盖上注意效果上的个体差异,这些差异与视觉刺激呈现之前激活的大脑区域的信号和连接强度有关。结果表明,信号强度与枕叶区域的注意力效应呈正相关,而与额顶叶区域的呈负相关,并且信号强度与右顶壁沟(IPS)到双侧梭状回(GF)的连接效率也呈正相关。 )。此外,从正确的IPS到GF的更高程度的有效连接导致了GF中更大的神经活动。因此,我们提出,顶叶区域的有效调节剂和视觉区域的强烈激活共同作用并共同作用,可以预测视觉处理中的注意力更高。

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