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Differential Functional Roles of Slow-Wave and Oscillatory-Alpha Activity in Visual Sensory Cortex during Anticipatory Visual–Spatialn Attention

机译:预期视觉空间注意过程中视觉感觉皮层中的慢波和振荡阿尔法活动的不同功能作用。

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摘要

Markers of preparatory visual–spatial attention in sensory cortex have been described both as lateralized, slow-wave event-related potential (ERP) components and as lateralized changes in oscillatory-electroencephalography alpha power, but the roles of these markers and their functional relationship are still unclear. Here, 3 versions of a visual–spatial cueing paradigm, differing in perceptual task difficulty and/or response instructions, were used to investigate the functional relationships between posterior oscillatory-alpha changes and our previously reported posterior, slow-wave biasing-related negativity (swBRN) ERP activity. The results indicate that the swBRN reflects spatially specific, pretarget preparatory activity sensitive to the expected perceptual difficulty of the target detection task, correlating in both location and strength with the early sensory-processing N1 ERP to the target, consistent with reflecting a preparatory baseline-shift mechanism. In contrast, contralateral event-related decreases in alpha-band power were relatively insensitive to perceptual difficulty and differed topographically from both the swBRN and target N1. Moreover, when response instructions emphasized making immediate responses to targets, compared with prescribing delayed responses, contralateral alpha-event-related desynchronization activity was particularly strong and correlated with the longer latency target-P3b activity. Thus, in contrast to the apparent perceptual-biasing role of swBRN activity, contralateral posterior alpha activity may represent an attentionally maintained task set linking stimulus-specific information and task-specific response requirements.
机译:感觉皮层中准备性视觉-空间注意的标记既被描述为侧向的,慢波事件相关电位(ERP)分量,又被描述为振荡脑电图α功率的侧向变化,但这些标记的作用及其功能关系是仍不清楚。在这里,我们使用了3种形式的视觉-空间提示范例,它们在感知任务难度和/或响应指令方面有所不同,用于研究后振荡α变化与我们先前报道的后,慢波偏向相关性消极之间的功能关系( swBRN)ERP活动。结果表明,swBRN反映了对目标检测任务的预期感知难度敏感的空间特定的目标前准备活动,其位置和强度均与目标的早期感觉处理N1 ERP相关,这与反映预备基线-转移机制。相反,与对侧事件相关的α波段功率下降对感知困难相对不敏感,并且在地形上与swBRN和目标N1均不同。此外,当响应指示强调对目标立即做出反应时,与规定延迟响应相比,对侧与阿尔法事件相关的失步活动特别强,并且与更长的潜伏期目标P3b活动相关。因此,与swBRN活动的明显的感知偏见作用相反,对侧后方α活动可能表示将刺激特定信息和特定任务响应要求联系在一起的,精心维护的任务集。

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    《Cerebral Cortex》 |2011年第10期|p.2204-2216|共13页
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    Marty G. Woldorff;

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