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Overlapping neural circuits for visual attention and eye movements in the human cerebellum

机译:重叠的神经回路可在人类小脑中实现视觉注意力和眼球运动

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Previous research in patients with cerebellar damage suggests that the cerebellum plays a role in covert visual attention. One limitation of some of these studies is that they examined patients with heterogeneous cerebellar damage. As a result, the patterns of reported deficits have been inconsistent. In the current study, we used functional neuroimaging (fMRI) in healthy adults (N=14) to examine whether or not the cerebellum plays a role in covert visual attention. Participants performed two covert attention tasks in which they were cued exogenously (with peripheral flashes) or endogenously (using directional arrows) to attend to marked locations in the visual periphery without moving their eyes. We compared BOLD activation in these covert attention conditions to a number of control conditions including: the same attention tasks with eye movements, a target detection task with no cueing, and a self-paced button-press task. Subtracting these control conditions from the covert attention conditions allowed us to effectively remove the contribution of the cerebellum to motor output. In addition to the usual frontoparietal networks commonly engaged by these attention tasks, lobule VI of the vermis in the cerebellum was also activated when participants performed the covert attention tasks with or without eye movements. Interestingly, this effect was larger for exogenous compared to endogenous cueing. These results, in concert with recent patient studies, provide independent yet converging evidence that the same cerebellar structures that are involved in eye movements are also involved in visuospatial attention. (c) 2015 Elsevier Ltd. All rights reserved.
机译:先前对小脑损伤患者的研究表明,小脑在隐性视觉注意中起一定作用。这些研究中的一些局限性在于,他们检查了患有异型小脑损伤的患者。结果,报告的赤字模式一直不一致。在当前的研究中,我们在健康的成年人(N = 14)中使用了功能性神经成像(fMRI)来检查小脑是否在隐性视觉注意力中起作用。参与者执行了两个秘密注意任务,其中,他们是外在(带有外围闪烁)或内在(使用方向箭头)提示的,要注意视觉外围的标记位置,而不会动眼。我们将这些隐蔽注意条件下的BOLD激活与许多控制条件进行了比较,这些条件包括:眼睛运动相同的注意任务,无提示的目标检测任务以及自定进度的按钮按下任务。从秘密注意条件中减去这些控制条件,可以使我们有效地消除小脑对运动输出的影响。除了通常由这些注意任务参与的通常的额前额叶网络外,当参与者在有或没有眼睛运动的情况下执行隐蔽的注意任务时,小脑中ver小叶的VI也被激活。有趣的是,与内源性提示相比,外源性影响更大。这些结果与最近的患者研究相结合,提供了独立但又不断汇聚的证据,表明与眼动有关的小脑结构也与视觉空间注意力有关。 (c)2015 Elsevier Ltd.保留所有权利。

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