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行为猕猴顶叶皮质中空间注意力的功能结构

Functional architecture of spatial attention in the parietal cortex of the behaving monkey.

作者信息

Raffi Milena, Siegel Ralph M

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers University, Newark, New Jersey 07102, USA.

出版信息

J Neurosci. 2005 May 25;25(21):5171-86. doi: 10.1523/JNEUROSCI.5201-04.2005.

Abstract

Functional architectures facilitate orderly transmittal of representations between cortices, allow for local interactions between neurons, and ensure a uniform distribution of feature representations with respect to larger-scale topographies. We sought to correlate such topographies with internal cognitive states. A psychophysical task for which the monkey was required to detect a change in one of two identical peripheral expanding flow fields tested for spatial shifts of attention. The monkey was cued as to which flow would change with a small cue near the fixation points. Reaction time data indicate that the monkey's performance in the optic flow detection task depended on the location of the cue. Using optical imaging of intrinsic signals, we show that a monkey's internally generated locus of attention is correlated with an 800-860 microm patchy topological architecture across the cortical surface of the inferior parietal lobule. The attentional patches vary in location but are stable in spatial frequency. The patches are embedded in a larger-scale and stable representation of eye position. Trial-by-trial analysis of the images indicates that the organizational scheme with simultaneous stable and variable subcomponents occurs within the experiment of 1 d, as well as across days. This novel functional architecture is the first to be correlated with attentional mechanisms and could support a fine-scale functional architecture underlying hemispatial neglect, an attentional deficit caused by parietal lesions.

摘要

功能架构有助于在皮层之间有序地传递表征,允许神经元之间进行局部相互作用,并确保在更大尺度的拓扑结构方面特征表征的均匀分布。我们试图将这种拓扑结构与内部认知状态联系起来。我们设计了一项心理物理学任务,要求猴子检测两个相同的外周扩展流场之一的变化,以此测试注意力的空间转移。在注视点附近用一个小提示告知猴子哪个流场会发生变化。反应时间数据表明,猴子在光流检测任务中的表现取决于提示的位置。通过对内在信号进行光学成像,我们发现猴子内部产生的注意力焦点与下顶叶皮层表面一个800 - 860微米的斑片状拓扑结构相关。注意力斑块在位置上有所不同,但在空间频率上是稳定的。这些斑块嵌入在一个更大尺度且稳定的眼位表征中。对图像进行逐次试验分析表明,同时具有稳定和可变子成分的组织模式在1天内以及不同天的实验中都会出现。这种新颖的功能架构首次与注意力机制相关联,并且可能支持半侧空间忽视(一种由顶叶病变引起的注意力缺陷)背后的精细尺度功能架构。

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