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早期对中央凹输入的空间注意调制。

Early spatial attentional modulation of inputs to the fovea.

机构信息

Program in Cognitive Neuroscience, Departments of Psychology and Biology, City College of the City University of New York, New York, NY 10031, USA.

出版信息

J Neurosci. 2010 Mar 31;30(13):4547-51. doi: 10.1523/JNEUROSCI.5217-09.2010.

Abstract

Attending to a specific spatial location modulates responsivity of neurons with receptive fields processing that part of the environment. A major outstanding question is whether attentional modulation operates differently for the foveal (central) representation of the visual field than it does for the periphery. Indeed, recent animal electrophysiological recordings suggest that attention differentially affects spatial integration for central and peripheral receptive fields in primary visual cortex. In human electroencephalographic recordings, spatial attention to peripheral locations robustly modulates activity in early visual regions, but it has been claimed that this mechanism does not operate in foveal vision. Here, however, we show clear early attentional modulation of foveal stimulation with the same timing and cortical sources as seen for peripheral stimuli, demonstrating that attentional gain control operates similarly across the entire field of view. These results imply that covertly attending away from the center of gaze, which is a common paradigm in behavioral and electrophysiological studies of attention, results in a precisely timed push-pull mechanism. While the amplitude of the initial response to stimulation at attended peripheral locations is significantly increased beginning at 80 ms, the amplitude of the response to foveal stimulation begins to be attenuated.

摘要

关注特定的空间位置会调节具有感受野处理功能的神经元的反应性,这些感受野处理的是环境的一部分。一个主要的悬而未决的问题是,注意调节对视野中央(中央)表示的作用是否与对周围区域的作用不同。事实上,最近的动物电生理记录表明,注意力对初级视觉皮层中中央和周围感受野的空间整合有不同的影响。在人类脑电图记录中,对周围位置的空间注意力强烈调节早期视觉区域的活动,但有人声称,这种机制在中央凹视觉中不起作用。然而,在这里,我们显示了与外围刺激相同的时间和皮质来源的对中央凹刺激的清晰早期注意调节,证明注意力增益控制在整个视场中都以相似的方式运作。这些结果意味着,从注视中心转移注意力,这是注意力的行为和电生理研究中的常见范式,会导致一个精确计时的推拉机制。虽然在 80 毫秒时,对注视周围位置的刺激的初始反应的幅度显著增加,但对中央凹刺激的反应的幅度开始减弱。

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