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The Timing of Neural Activity during Shifts of Spatial Attention

机译:空间注意转移过程中神经活动的时机

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摘要

We developed a new experimental task to investigate the relative timing of neural activity during shifts of spatial attention with event-related potentials. The task enabled the investigation of nonlateralized as well as lateralized neural activity associated with spatial shifts. Participants detected target stimuli within one of two peripheral streams of visual letters. Colored letters embedded within the streams indicated which stream was to be used for target detection, signaling that participants should "hold" or "shift" their current focus of spatial attention. A behavioral experiment comparing performance in these focused-attention conditions with performance in a divided-attention condition confirmed the efficacy of the spatialrncues. Another behavioral experiment showed that overt shifts of spatial attention were mainly complete by around 400 msec, placing an upper boundary for isolating neural activity that was instrumental in controlling spatial shifts. Event-related potentials recorded during a covert version of the focused-attention task showed a large amount of nonlateralized neural activity associated with spatial shifts, with significant effects starting around 330 msec. The effects started over posterior scalp regions, where they remained pronounced. Transient effects were also observed over frontal scalp regions. The results are compatible with a pivotal role of posterior parietal areas in initiating shifts of spatial attention.
机译:我们开发了一项新的实验任务,以调查在具有事件相关电位的空间注意力转移过程中神经活动的相对时机。该任务使得能够调查与空间移动相关的非侧向和侧向神经活动。参与者在视觉字母的两个外围流之一中检测到目标刺激。嵌入在流中的彩色字母表示哪个流将用于目标检测,表明参与者应“保持”或“转移”其当前的空间注意力焦点。一项将这些注意力集中条件下的表现与注意力分散条件下的表现进行比较的行为实验证实了空间线索的有效性。另一个行为实验表明,空间注意力的明显转移主要在400毫秒左右完成,为隔离神经活动设置了上限,这有助于控制空间转移。在重点关注任务的秘密版本中记录的与事件相关的电位显示,与空间移位相关的大量非偏侧神经活动,其显着影响始于330毫秒左右。效果始于头皮后部区域,在该区域仍很明显。在额头皮区域也观察到短暂的影响。该结果与后顶叶区域在引发空间注意力转移方面的关键作用兼容。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2009年第12期|2369-2383|共15页
  • 作者单位

    IRCCS San Giovanni di Dio Fatebenefratelli, Brescia, Italy;

    University of Oxford, Oxford, UK Max Planck Institute for Human Cognitiveand Brain Sciences, Stephanstrasse la, 04103 Leipzig, Germany;

    University of Oxford, Oxford, UK;

    Brain & Cognition Lab, Department of Experimental Psychology, Uni versity of Oxford, South Parks Road, Oxford, OX1 3UD, UK;

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