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The Role of Working Memory Gating in Task Switching: A Procedural Version of the Reference-Back Paradigm

机译:工作记忆门控在任务切换中的作用:Reference-Back范例的程序版本

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Models of working memory (WM) suggest that the contents of WM are separated from perceptual input by a gate, that enables shielding information against interference when closed, and allows for rapid updating when open. Recent work in the declarative WM domain provided evidence for this notion, demonstrating the behavioral cost of opening and closing the gate. The goal of the present work was to examine gating in procedural WM, namely in a task-switching experiment. In each trial, participants were presented with a digit and a task cue, indicating whether the required task was a parity or a magnitude decision. Critically, a colored frame around the stimulus indicated whether the task cue was relevant (attend trials), or whether it had to be ignored, and the previous task set should be applied regardless of the present cue (ignore trials). Switching between tasks, and between ignore and attend trials, was manipulated. The results of two experiments demonstrated that the cost of gate opening was eliminated in task switching trials, implying that both processes operate in parallel.
机译:工作存储器(WM)的模型建议通过门将WM的内容与感知输入分开,这样可以在关闭时屏蔽信息以防干扰,并在打开时实现快速更新。声明式WM领域中的最新工作为这一概念提供了证据,证明了打开和关闭大门的行为成本。当前工作的目的是检查程序WM中的门控,即在任务切换实验中。在每个试验中,为参与者显示一个数字和一个任务提示,指示所需的任务是奇偶校验还是幅度决定。至关重要的是,刺激周围的彩色框表示任务提示是否相关(参加试验),还是必须忽略它,并且无论当前提示如何,都应使用先前的任务集(忽略试验)。可以在任务之间以及忽略和参加审判之间进行切换。两个实验的结果表明,在任务切换试验中消除了开门的成本,这意味着这两个过程并行运行。

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