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首页> 外文期刊>NeuroImage >Parallel networks operating across attentional deployment and motion processing: a multi-seed partial least squares fMRI study.
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Parallel networks operating across attentional deployment and motion processing: a multi-seed partial least squares fMRI study.

机译:跨注意力部署和运动处理运行的并行网络:多种子偏最小二乘fMRI研究。

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Anticipatory deployment of attention may operate through networks of brain areas that modulate the representations of to-be-attended items in advance of their occurrence through top-down control. Luks and Simpson (2004) (Luks, T.L., Simpson, G.V., 2004. Preparatory deployment of attention to motion activates higher order motion-processing brain regions. NeuroImage 22, 1515-1522) found activations in both control areas and sensory areas during anticipatory deployment of attention to visual motion in the absence of stimuli. In the present follow-up analysis, we tested which network activity during anticipatory deployment of attention is functionally connected with task-related network activity during subsequent selective processing of motion stimuli. Following a cue (anticipatory phase), participants monitored a sequence of complex motion stimuli for a target motion pattern (task phase). We analyzed fMR signal using a partial least squares analysis with previously identified cue- and motion-related voxels as seed regions. The method identified two networks that covaried with the activity of seed regions during the cue and motion-stimulus-processing phases of the task. We suggest that the first network, involving ventral intraparietal sulcus, superior parietal lobule and motor areas, is related to anticipatory and sustained visuomotor attention. Operating in parallel to this visuomotor attention network, there is a second network, involving visual occipital areas, frontal areas as well as angular and supramarginal gyri, that may underlie anticipatory and sustained visual attention processes.
机译:注意力的预期部署可以通过大脑区域的网络进行,该大脑区域的网络通过自上而下的控制在要出现的项目出现之前对其进行调制。 Luks和Simpson(2004)(Luks,TL,Simpson,GV,2004.对运动的注意的预备部署激活了更高阶的运动处理大脑区域。NeuroImage 22,1515-1522)发现在预期期间控制区域和感觉区域均被激活。在没有刺激的情况下将注意力转移到视觉运动上。在当前的后续分析中,我们测试了预期的注意力部署过程中的哪些网络活动在功能上与任务相关的网络活动在随后的选择性运动刺激处理过程中功能相关。提示(预期阶段)之后,参与者监视目标运动模式的一系列复杂运动刺激(任务阶段)。我们使用偏最小二乘分析法分析了fMR信号,并将先前确定的与提示和运动相关的体素作为种子区域。该方法确定了两个网络,该网络与任务的提示和运动刺激处理阶段中的种子区域活动相关。我们建议第一个网络,涉及腹侧顶内沟,顶上小叶和运动区,与预期和持续的视觉运动注意力有关。与该视觉运动注意力网络并行运行的是第二个网络,它涉及视觉枕区,额叶区域以及角和上颌回,可能是预期和持续的视觉注意过程的基础。

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