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猕猴V4区柱状分辨率下注意力调制的空间分布

Spatial Distribution of Attentional Modulation at Columnar Resolution in Macaque Area V4.

作者信息

Tanigawa Hisashi, Chen Gang, Roe Anna W

机构信息

Interdisciplinary Institute of Neuroscience and Technology, Zhejiang UniversityHangzhou, China; Center for Transdisciplinary Research, Niigata UniversityNiigata, Japan; Department of Psychology, Vanderbilt UniversityNashville, TN, USA.

Interdisciplinary Institute of Neuroscience and Technology, Zhejiang UniversityHangzhou, China; Department of Psychology, Vanderbilt UniversityNashville, TN, USA.

出版信息

Front Neural Circuits. 2016 Dec 12;10:102. doi: 10.3389/fncir.2016.00102. eCollection 2016.

Abstract

Attention to a location in a visual scene affects neuronal responses in visual cortical areas in a retinotopically specific manner. Optical imaging studies have revealed that cortical responses consist of two components of different sizes: the stimulus-nonspecific global signal and the stimulus-specific mapping signal (domain activity). It remains unclear whether either or both of these components are modulated by spatial attention. In this study, to determine the spatial distribution of attentional modulation at columnar resolution, we performed cerebral blood volume (CBV)-based optical imaging in area V4 of monkeys performing a color change detection task in which spatial attention was manipulated. We found that spatial attention enhanced global signals of the hemodynamic responses, but did not affect stimulus-selective domain activities. These results indicate the involvement of global signals in neural processing of spatial attention. We propose that global signals reflect the neural substrate of the normalization pool in normalization models of attention.

摘要

对视觉场景中某一位置的注意会以视网膜拓扑特异性的方式影响视觉皮层区域的神经元反应。光学成像研究表明,皮层反应由两种不同大小的成分组成:刺激非特异性全局信号和刺激特异性映射信号(区域活动)。目前尚不清楚这些成分中的一种或两种是否会受到空间注意的调节。在本研究中,为了在柱状分辨率下确定注意调制的空间分布,我们对执行颜色变化检测任务(其中空间注意受到操控)的猴子的V4区进行了基于脑血容量(CBV)的光学成像。我们发现空间注意增强了血液动力学反应的全局信号,但不影响刺激选择性区域活动。这些结果表明全局信号参与了空间注意的神经处理。我们提出,全局信号反映了注意归一化模型中归一化池的神经基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61aa/5149540/5a55cd7647ff/fncir-10-00102-g0001.jpg

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