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Lateralized delay period activity marks the focus of spatial attention in working memory: evidence from somatosensory event-related brain potentials

机译:延迟活动的横向化标志着工作记忆中空间注意力的焦点:来自体感事件相关脑电势的证据

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摘要

The short-term retention of sensory information in working memory (WM) is known to be associated with a sustained enhancement of neural activity. What remains controversial is whether this neural trace indicates the sustained storage of information or the allocation of attention. To evaluate the storage and attention accounts, we examined sustained tactile contralateral delay activity (tCDA component) of the event-related potential. The tCDA manifests over somatosensory cortex contralateral to task-relevant tactile information during stimulus retention. Two tactile sample sets (S1, S2) were presented sequentially, separated by 1.5 s. Each set comprised two stimuli, one per hand. Human participants memorized the location of one task-relevant stimulus per sample set and judged whether one of these locations was stimulated again at memory test. The two relevant pulses were unpredictably located on the same hand (stay trials) or on different hands (shift trials). Initially, tCDA components emerged contralateral to the relevant S1 pulse. Sequential loading of WM enhanced the tCDA after S2 was presented on stay trials. On shift trials, the tCDA's polarity reversed after S2 presentation, resulting in delay activity that was now contralateral to the task-relevant S2 pulse. The disappearance of a lateralized neural trace for the relevant S1 pulse did not impair memory accuracy for this stimulus on shift trials. These results contradict the storage account and suggest that delay period activity indicates the sustained engagement of an attention-based rehearsal mechanism. In conclusion, somatosensory delay period activity marks the current focus of attention in tactile WM.
机译:感觉信息在工作记忆(WM)中的短期保留与神经活动的持续增强有关。仍然有争议的是这种神经轨迹是否表明信息的持续存储或注意力的分配。为了评估存储和注意事项,我们检查了事件相关电位的持续触觉对侧延迟活动(tCDA组件)。在刺激保留期间,tCDA表现在与任务相关的触觉信息对侧的体感皮质上。依次提供两个触觉样本集(S1,S2),相隔1.5 s。每组包括两个刺激,每只手一个。人体参与者记忆每个样品组一个与任务相关的刺激的位置,并判断是否在记忆力测试中再次刺激了其中一个位置。不可预测的是,两个相关的脉冲位于同一只手上(停留试验)或不同手上(移位试验)。最初,tCDA组分出现在相关S1脉冲的对侧。在中止试验中出现S2后,WM的顺序加载增强了tCDA。在班次试验中,tCDA的极性在S2呈现后反转,导致延迟活动现在与任务相关的S2脉冲相反。相关的S1脉冲的神经化痕迹的消失并不影响移位试验中这种刺激的记忆准确性。这些结果与存储帐户相矛盾,并表明延迟活动表明了基于注意力的排练机制的持续参与。总之,体感延迟期活动标志着触觉WM的当前关注焦点。

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    Katus Tobias; Eimer Martin;

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  • 年度 2015
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