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Spatiotemporal Dynamics of Feature-Based Attention Spread: Evidence from Combined Electroencephalographic and Magnetoencephalographic Recordings

机译:基于特征的注意力传播的时空动态:脑电和磁脑电图结合记录的证据。

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摘要

Attentional selection on the basis of nonspatial stimulus features induces a sensory gain enhancement by increasing the firing-rate of individual neurons tuned to the attended feature, while responses of neurons tuned to opposite feature-values are suppressed. Here we recorded event-related potentials (ERPs) and magnetic fields (ERMFs) in human observers to investigate the underlying neural correlates of feature-based attention at the population level. During the task subjects attended to a moving transparent surface presented in the left visual field, while task-irrelevant probe stimuli executing brief movements into varying directions were presented in the opposite visual field. ERP and ERMF amplitudes elicited by the unattended task-irrelevant probes were modulated as a function of the similarity between their movement direction and the task-relevant movement direction in the attended visual field. These activity modulations reflecting globally enhanced processing of the attended feature were observed to start not before 200 ms poststimulus and were localized to the motion-sensitive area hMT. The current results indicate that feature-based attention operates in a global manner but needs time to spread and provide strong support for the feature-similarity gain model.
机译:基于非空间刺激特征的注意选择通过提高调整为关注特征的单个神经元的放电速率来诱导感觉增益的增强,而抑制调整为相反特征值的神经元的响应。在这里,我们在人类观察者中记录了事件相关的电势(ERP)和磁场(ERMF),以研究在人群水平上基于特征的注意力的潜在神经相关性。在任务期间,受试者注意在左视野中呈现的移动透明表面,而在相反视野中呈现与任务无关的,向不同方向执行短暂运动的探针刺激。由无人看管的与任务无关的探针引起的ERP和ERMF振幅根据其在所关注视野中的运动方向和与任务相关的运动方向之间的相似性进行调制。观察到这些反映出参与功能的整体增强处理的活动调制在刺激后200毫秒之前就开始了,并被定位在运动敏感区域hMT上。目前的结果表明,基于特征的注意力以全局的方式运作,但是需要时间来传播并为特征相似度增益模型提供强有力的支持。

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