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Retinotopic patterns of functional connectivity between V1 and large-scale brain networks during resting fixation

机译:在静息固定期间V1和大型脑网络之间的功能连接的视网膜外节模式

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摘要

Psychophysical and neurobiological evidence suggests that central and peripheral vision are specialized for different functions. This specialization of function might be expected to lead to differences in the large-scale functional interactions of early cortical areas that represent central and peripheral visual space. Here, we characterize differences in whole-brain functional connectivity among sectors in primary visual cortex (V1) corresponding to central, near-peripheral, and far-peripheral vision during resting fixation. Importantly, our analyses reveal that eccentricity sectors in V1 have different functional connectivity with non-visual areas associated with large-scale brain networks. Regions associated with the fronto-parietal control network are most strongly connected with central sectors of V1, regions associated with the cingulo-opercular control network are most strongly connected with near-peripheral sectors of V1, and regions associated with the default mode and auditory networks are most strongly connected with far-peripheral sectors of V1. Additional analyses suggest that similar patterns are present during eyes-closed rest. These results suggest that different types of visual information may be prioritized by large-scale brain networks with distinct functional profiles, and provide insights into how the small-scale functional specialization within early visual regions such as V1 relates to the large-scale organization of functionally distinct whole-brain networks. (C) 2016 Elsevier Inc. All rights reserved.
机译:心理物理学和神经生物学证据表明,中央和周边视力都专门针对不同的功能。这种功能专业化预期可能导致的代表中枢和外周的视觉空间早期皮质区的大型功能性相互作用的差异。在这里,我们休息定影期间表征初级视觉皮层(V1)对应于中部,靠近外围,和远周边视力扇区间在全脑功能连接差异。重要的是,我们的分析显示,在V1偏心部门具有与大型大脑网络相关的非影像区域的不同功能连接。与额顶叶控制网络相关联的区域被最强烈地与V1的中央扇区连接,与cingulo-鳃控制网络相关联的区域被最强烈地与V1的近周的扇区连接,并且与所述默认模式和听觉网络相关联的区域与V1的远外围扇区最强连接。额外的分析表明,类似的模式是在眼睛闭休息存在。这些结果表明,不同类型的视觉信息可以通过大规模大脑网络具有不同的功能简被优先,并提供深入了解早期的视觉区域,例如V1内的小规模的功能专门化如何涉及的功能大型组织独特的全脑网络。 (c)2016 Elsevier Inc.保留所有权利。

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