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Transcranial magnetic stimulation of the left human frontal eye fields eliminates the cost of invalid endogenous cues.对人类左侧额叶眼区进行经颅磁刺激可消除无效内源性线索的代价。
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通过微刺激额叶眼区快速增强视觉皮层反应的可辨别性。

Rapid enhancement of visual cortical response discriminability by microstimulation of the frontal eye field.

作者信息

Armstrong Katherine M, Moore Tirin

机构信息

Department of Neurobiology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 May 29;104(22):9499-504. doi: 10.1073/pnas.0701104104. Epub 2007 May 21.

DOI:10.1073/pnas.0701104104
PMID:17517599
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1890523/
Abstract

Visual attention provides a means of selecting among the barrage of information reaching the retina and of enhancing the perceptual discriminability of relevant stimuli. Neurophysiological studies in monkeys and functional imaging studies in humans have demonstrated neural correlates of these perceptual improvements in visual cortex during attention. Importantly, voluntary attention improves the discriminability of visual cortical responses to relevant stimuli. Recent work aimed at identifying sources of attentional modulation has implicated the frontal eye field (FEF) in driving spatial attention. Subthreshold microstimulation of the FEF enhances the responses of area V4 neurons to spatially corresponding stimuli. However, it is not known whether these enhancements include improved visual-response discriminability, a hallmark of voluntary attention. We used receiver-operator characteristic analysis to quantify how well V4 responses discriminated visual stimuli and examined how discriminability was affected by FEF microstimulation. Discriminability of responses to stable visual stimuli decayed over time but was transiently restored after microstimulation of the FEF. As observed during voluntary attention, the enhancement resulted only from changes in the magnitude of V4 responses and not in the relationship between response magnitude and variance. Enhanced response discriminability was apparent immediately after microstimulation and was reliable within 40 ms of microstimulation onset, indicating a direct influence of FEF stimulation on visual representations. These results contribute to the mounting evidence that saccade-related signals are a source of spatial attentive selection.

摘要

视觉注意力提供了一种在大量传入视网膜的信息中进行选择的方式,并增强了相关刺激的感知辨别力。对猴子的神经生理学研究和对人类的功能成像研究表明,在注意力集中期间,视觉皮层中这些感知改善存在神经关联。重要的是,自主注意力提高了视觉皮层对相关刺激反应的辨别力。最近旨在确定注意力调制来源的研究表明,额叶眼区(FEF)在驱动空间注意力方面发挥作用。对FEF进行阈下微刺激可增强V4区神经元对空间对应刺激的反应。然而,尚不清楚这些增强是否包括视觉反应辨别力的提高,而这是自主注意力的一个标志。我们使用接收者操作特征分析来量化V4区反应对视觉刺激的辨别程度,并研究辨别力如何受到FEF微刺激的影响。对稳定视觉刺激的反应辨别力会随时间衰减,但在对FEF进行微刺激后会短暂恢复。正如在自主注意力过程中观察到的那样,这种增强仅源于V4区反应幅度的变化,而不是反应幅度与方差之间的关系。微刺激后立即出现增强的反应辨别力,并且在微刺激开始后40毫秒内是可靠的,这表明FEF刺激对视觉表征有直接影响。这些结果进一步证明了与扫视相关的信号是空间注意力选择的一个来源。