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Sustained posterior contralateral activity indicates re-entrant target processing in visual change detection: an EEG study

机译:持续的后侧对侧活动表明视觉改变检测中的折返目标处理:一项脑电图研究

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摘要

The present study investigated the neural mechanisms that contribute to the detection of visual feature changes between stimulus displays by means of event-related lateralizations of the electroencephalogram (EEG). Participants were instructed to respond to a luminance change in either of two lateralized stimuli that could randomly occur alone or together with an irrelevant orientation change of the same or contralateral stimulus. Task performance based on response times and accuracy was decreased compared to the remaining stimulus conditions when relevant and irrelevant feature changes were presented contralateral to each other (contralateral distractor condition). The sensory response to the feature changes was reflected in a posterior contralateral positivity at around 100 ms after change presentation and a posterior contralateral negativity in the N1 time window (N1pc). N2pc reflected a subsequent attentional bias in favor of the relevant luminance change. The continuation of the sustained posterior contralateral negativity (SPCN) following N2pc covaried with response times within feature change conditions and revealed a posterior topography comparable to the earlier components associated with sensory and attentional mechanisms. Therefore, this component might reflect the re-processing of information based on sustained short-term memory representations in the visual system until a stable target percept is created that can serve as the perceptual basis for response selection and the initiation of goal-directed behavior.
机译:本研究调查了神经机制,通过事件相关的脑电图(EEG)侧向化,有助于检测刺激显示之间的视觉特征变化。指示参与者对可能随机地单独发生或与相同或对侧刺激无关的方向改变的两种侧向刺激中的任何一种的亮度变化做出响应。当相关的和不相关的特征变化彼此对侧出现时(对侧撑开器状态),与其余刺激条件相比,基于响应时间和准确性的任务绩效会降低。对特征变化的感觉反应反映在变化呈现后约100 ms的后侧对侧阳性和N1时间窗(N1pc)中的后侧对侧阴性。 N2pc反映了随后的注意力偏向,有利于相关的亮度变化。 N2pc之后持续的后侧对侧负性(SPCN)的持续与特征改变条件下的响应时间共变,并显示了与可感知和注意机制相关的早期组件相当的后部地形。因此,此组件可能会反映基于视觉系统中持续的短期记忆表示的信息再处理,直到创建稳定的目标感知为止,该目标感知可以用作响应选择和目标导向行为的感知的感知基础。

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