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首页> 外文期刊>Cerebral cortex >Cortical Circuit for Binding Object Identity and Location During Multiple-Object Tracking
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Cortical Circuit for Binding Object Identity and Location During Multiple-Object Tracking

机译:用于绑定对象标识的皮质电路和多对象跟踪期间的位置

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摘要

Sustained multifocal attention for moving targets requires binding object identities with their locations. The brain mechanisms of identity-location binding during attentive tracking have remained unresolved. In 2 functional magnetic resonance imaging experiments, we measured participants' hemodynamic activity during attentive tracking of multiple objects with equivalent (multiple-object tracking) versus distinct (multiple identity tracking, MIT) identities. Task load was manipulated parametrically. Both tasks activated large frontoparietal circuits. MIT led to significantly increased activity in frontoparietal and temporal systems subserving object recognition and working memory. These effects were replicated when eye movements were prohibited. MIT was associated with significantly increased functional connectivity between lateral temporal and frontal and parietal regions. We propose that coordinated activity of this network subserves identity-location binding during attentive tracking.
机译:移动目标的持续多焦点注意需要将对象标识与其位置绑定。在注意力跟踪期间的身份位置结合的大脑机制仍未解决。在2个功能磁共振成像实验中,我们在具有等效(多物体跟踪)与不同(多重标识跟踪,麻省理工学院)标识的多个对象的提要跟踪期间测量参与者的血流动力学活动。任务负载参数化。这两个任务都激活了大型前线电路。麻省理工学院导致前迁徙和时间系统中的活动显着增加了对象识别和工作记忆的活动。当禁止眼球运动时,这些效果被复制。麻省理工学院与横向时间和前部和椎廓出区之间的功能连通性显着增加。我们建议在细心跟踪期间,该网络为该网络的协调活动提供了身份 - 位置约束。

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