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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Top-down control of human visual cortex by frontal and parietal cortex in anticipatory visual spatial attention.
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Top-down control of human visual cortex by frontal and parietal cortex in anticipatory visual spatial attention.

机译:在预期的视觉空间注意中,由额叶和顶叶皮层控制人的视觉皮层。

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摘要

Advance information about an impending stimulus facilitates its subsequent identification and ensuing behavioral responses. This facilitation is thought to be mediated by top-down control signals from frontal and parietal cortex that modulate sensory cortical activity. Here we show, using Granger causality measures on blood oxygen level-dependent time series, that frontal eye field (FEF) and intraparietal sulcus (IPS) activity predicts visual occipital activity before an expected visual stimulus. Top-down levels of Granger causality from FEF and IPS to visual occipital cortex were significantly greater than both bottom-up and mean cortex-wide levels in all individual subjects and the group. In the group and most individual subjects, Granger causality was significantly greater from FEF to IPS than from IPS to FEF, and significantly greater from both FEF and IPS to intermediate-tier than lower-tier ventral visual areas. Moreover, top-down Granger causality from right IPS to intermediate-tier areas was predictive of correct behavioral performance. These results suggest that FEF and IPS modulate visual occipital cortex, and FEF modulates IPS, in relation to visual attention. The current approach may prove advantageous for the investigation of interregional directed influences in other human brain functions.
机译:有关即将到来的刺激的预先信息有助于其随后的识别和随后的行为反应。据认为,这种促进作用是由额叶和顶叶皮质的自上而下的控制信号介导的,这些信号调节感觉皮层活动。在这里,我们显示,通过对血氧水平依赖的时间序列使用格兰杰因果关系度量,额叶视场(FEF)和顶叶内沟(IPS)活动可在预期的视觉刺激之前预测视觉枕骨活动。从FEF和IPS到视觉枕叶皮质的格兰杰因果关系自上而下的水平显着高于所有个体受试者和该组中自下而上和整个皮质范围内的水平。在小组和大多数个体受试者中,从FEF到IPS的Granger因果关系显着大于从IPS到FEF的Granger因果关系,从FEF和IPS到中间层的Granger因果关系显着大于下层腹侧视觉区域。此外,从正确的IPS到中间层区域的自上而下的Granger因果关系可预测正确的行为表现。这些结果表明,FEF和IPS调节视觉枕叶皮质,而FEF调节IPS,与视觉注意力有关。当前的方法对于研究其他人类大脑功能中的区域间定向影响可能是有利的。

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