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An information theory account of late frontoparietal ERP positivities in cognitive control

机译:认知控制中晚期前期ERP实证性的信息理论述评

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摘要

ERP research on task switching has revealed distinct transient and sustained positive waveforms (latency circa 300–900 ms) while shifting task rules or stimulus-response (S-R) mappings. However, it remains unclear whether such switch-related positivities show similar scalp topography and index context-updating mechanisms akin to those posed for domain-general (i.e., classic P300) positivities in many task domains. To examine this question, ERPs were recorded from 31 young adults (18–30 years) while they were intermittently cued to switch or repeat their perceptual categorization of Gabor gratings varying in color and thickness (switch task), or else they performed two visually identical control tasks (go/no-go and oddball). Our task cueing paradigm examined two temporarily distinct stages of proactive rule updating and reactive rule execution. A simple information theory model helped us gauge cognitive demands under distinct temporal and task contexts in terms of low-level S-R pathways and higher-order rule updating operations. Task demands modulated domain-general (indexed by classic oddball P3) and switch positivities—indexed by both a cue-locked late positive complex and a sustained positivity ensuing task transitions. Topographic scalp analyses confirmed subtle yet significant split-second changes in the configuration of neural sources for both domain-general P3s and switch positivities as a function of both the temporal and task context. These findings partly meet predictions from information estimates, and are compatible with a family of P3-like potentials indexing functionally distinct neural operations within a common frontoparietal “multiple demand” system during the preparation and execution of simple task rules.
机译:ERP对任务交换的研究揭示了不同的瞬态和持续的正波形(延迟大约300-900毫秒),同时转换任务规则或刺激 - 响应(S-R)映射。然而,它仍然尚不清楚这种相关的有关的实证情况是否显示类似的头皮地形和索引上下文更新机制,类似于用于许多任务域中的域一般(即经典P300)实证性的那些。要检查这个问题,erps从31名年轻人(18-30岁)中记录,而他们间歇性地致电,以改变颜色和厚度(开关任务)的葛兰罗克索的感知分类,否则它们在视觉上的两个视觉上进行了两种控制任务(Go / No-Go和Oddball)。我们的任务提示范式检查了两个暂时的主动规则更新和反应规则执行的暂时不同的阶段。简单的信息理论模型帮助我们在低级S-R路径和高阶规则更新操作中在不同的时间和任务环境下的仪表认知需求。任务要求调制域一般(由Classic Oddball P3索引),并通过CUE锁定的后期正复合复合复数和随后的任务转换进行持续阳性来切换实证性。地形头皮分析确认了域通用P3的神经源配置中的微妙但是显着的分秒变化,以及作为时间和任务上下文的函数的函数。这些发现部分与信息估计的预测相达到了预测,并且与在简单任务规则的常见前部“多次需求”系统中,与一个多种P3样潜力索引的P3样潜力索引的家族兼容。

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