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Behavioural and electrophysiological measures of task switching during single and mixed-task conditions.

机译:在单任务和混合任务条件下进行任务切换的行为和电生理措施。

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摘要

In order to understand how the brain prepares for and executes a switch in task demand, we measured reaction time (RT), accuracy, and event-related brain potentials associated with performance in single and mixed-task blocks using a cued design. Our results show that trials which repeat in a mixed-task block (repeat trials) were more demanding than trials which repeated in a single-task block, as reflected by the presence of a RT mixing cost and by the presence of a smaller target-locked positivity (P3b) on repeat trials. Within a mixed-task block, repeat and switch trials also differed, where repeat trials showed evidence of greater preparation (larger cue-locked negativity), more efficient target processing (larger target-locked P3b), and shorter RTs. In addition, the cue-locked negativity difference remained despite equating repeat and switch trials on RT, suggesting that this negativity difference is specific to the switching process. Our results are discussed in light of existing models of task switching.
机译:为了了解大脑如何为任务需求做好准备并执行切换,我们使用提示设计测量了反应时间(RT),准确性以及与单个任务和混合任务块中的性能相关的事件相关的大脑潜能。我们的结果表明,在混合任务块中重复进行的试验(重复试验)比在单任务块中重复进行的试验更为苛刻,这体现在RT混合成本的存在和较小目标的存在,重复试验锁定阳性(P3b)。在混合任务块内,重复和切换试验也有所不同,重复试验显示出更多的准备工作(较大的线索锁定负性),更有效的靶标处理(较大的目标锁定P3b)和较短的RT。此外,尽管在RT上进行了重复和切换试验,但提示锁定的负性差异仍然存在,这表明这种负性差异是特定于切换过程的。根据现有的任务切换模型讨论了我们的结果。

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