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首页> 外文期刊>Journal of Cognitive Neuroscience >Slow Endogenous Fluctuations in Cortical fMRI Signals Correlate with Reduced Performance in a Visual Detection Task and Are Suppressed by Spatial Attention
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Slow Endogenous Fluctuations in Cortical fMRI Signals Correlate with Reduced Performance in a Visual Detection Task and Are Suppressed by Spatial Attention

机译:皮质功能磁共振成像信号中的慢内源性波动与视觉检测任务中的性能降低相关,并受到空间注意力的抑制

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摘要

Spatial attention improves performance on visual tasks, increases neural responses to attended stimuli, and reduces correlated noise in visual cortical neurons. In addition to being visually responsive, many retinotopic visual cortical areas exhibit very slow (<0.1 Hz) endogenous fluctuations in functional magnetic resonance imaging signals. To test whether these fluctuations degrade stimulus representations, thereby impairing visual detection, we recorded functional magnetic resonance imaging responses while human participants performed a target detection task that required them to allocate spatial attention to either a rotating wedge stimulus or a central fixation point. We then measured the effects of spatial attention on response amplitude at the frequency of wedge rotation and on the amplitude of endogenous fluctuations at nonstimulus frequencies. We found that, in addition to enhancing stimulus-evoked responses, attending to the wedge also suppressed slow endogenous fluctuations that were unrelated to the visual stimulus in topographically defined areas in early visual cortex, posterior parietal cortex, and lateral occipital cortex, but not in a nonvisual cortical control region. Moreover, attentional enhancement of response amplitude and suppression of endogenous fluctuations were dissociable across cortical areas and across time. Finally, we found that the amplitude of the stimulus-evoked response was not correlated with a perceptual measure of visual target detection. Instead, perceptual performance was accounted for by the amount of suppression of slow endogenous fluctuations. Our results indicate that the amplitude of slow fluctuations of cortical activity is influenced by spatial attention and suggest that these endogenous fluctuations may impair perceptual processing in topographically organized visual cortical areas.
机译:空间注意力改善了视觉任务的表现,增加了对参与刺激的神经反应,并减少了视觉皮层神经元中的相关噪声。除了具有视觉响应能力外,许多视网膜视网膜视皮层区域在功能性磁共振成像信号中还表现出非常缓慢的(<0.1 Hz)内源性波动。为了测试这些波动是否会降低刺激表现,从而损害视觉检测,我们记录了功能性磁共振成像反应,而人类参与者执行了目标检测任务,要求他们将空间注意力分配给旋转楔形刺激或中央固定点。然后,我们测量了空间注意力对楔形旋转频率处的响应幅度和非刺激频率处的内源性波动幅度的影响。我们发现,除了增强刺激诱发的反应外,参加楔形手术还可以抑制缓慢的内源性波动,这种波动与早期视觉皮层,后顶叶皮层和枕叶外侧皮层的地形定义区域中的视觉刺激无关,但在非视觉皮质控制区域。此外,注意幅度的提高和内源性波动的抑制在整个皮层区域和时间上是分离的。最后,我们发现,刺激诱发反应的幅度与视觉目标检测的感知指标无关。取而代之的是,感知性能是由抑制内源性缓慢波动引起的。我们的结果表明,皮质活动的缓慢波动幅度受空间注意的影响,并表明这些内源性波动可能会损害地形组织的视觉皮质区域的知觉处理。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2020年第1期|85-99|共15页
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  • 作者单位

    Univ Calif Berkeley Berkeley CA 94720 USA;

    Univ Calif Berkeley Berkeley CA 94720 USA|Univ Washington eSci Inst Seattle WA 98195 USA;

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  • 正文语种 eng
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