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A transcranial magnetic stimulation study on response activation and selection in spatial conflict

机译:经颅磁刺激研究空间冲突中反应的激活和选择

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In choice reaction tasks, subjects typically respond faster when the relative spatial positions of stimulus and response correspond than when they do not, even when spatial information is irrelevant to the task (e.g. in the Simon task). Cognitive models attribute the Simon effect to automatic response activation elicited by spatial information, which facilitates or competes with the controlled selection of the correct response as required by task demands. In the present study, we investigated the role of the dorsal premotor cortex (PMd) in response activation and selection during spatial conflict. We applied single-pulse transcranial magnetic stimulation (TMS) to the PMd of the right and left hemispheres during the execution of a Simon task, at different times after the onset of the visual stimulus. The results showed that TMS produced a different effect on subjects' performance in two separate time windows. When TMS was applied at an early time [160-ms stimulus onset asynchrony (SOA)], we observed suppression of the Simon effect, resulting from a delay of corresponding trials. When TMS was applied at a late time (220 and 250-ms SOA), we observed an increase in the Simon effect, resulting from a delay of non-corresponding trials. These outcomes revealed that the PMd is involved both in the activation of the spatially triggered response and in response selection during spatial conflict.
机译:在选择反应任务中,即使空间信息与任务无关(例如在Simon任务中),受刺激和反应的相对空间位置相对应时,对象通常也会比不响应时反应更快。认知模型将西蒙效应归因于空间信息引起的自动响应激活,这可以根据任务要求促进或与正确响应的受控选择竞争。在本研究中,我们调查了空间运动期间背前运动皮层(PMd)在反应激活和选择中的作用。我们在执行西蒙任务期间,在视觉刺激开始后的不同时间,对左右半球的PMd施加了单脉冲经颅磁刺激(TMS)。结果表明,TMS在两个不同的时间窗口内对受试者的表现产生了不同的影响。当早期应用TMS [160毫秒刺激发作异步(SOA)]时,我们观察到西蒙效应受到抑制,这是由于相应试验的延迟所致。当在较晚的时间(220和250毫秒SOA)应用TMS时,我们观察到西蒙效应的增加,这是由于非相应试验的延迟所致。这些结果表明,PMd参与了空间触发响应的激活和空间冲突期间的响应选择。

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