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Multisubject Decomposition of Event-related Positivities in Cognitive Control: Tackling Age-related Changes in Reactive Control

机译:认知控制中与事件相关的积极性的多主体分解:处理与年龄相关的反应性控制变化

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摘要

Age-related neurocognitive effects have been observed at different levels ranging from reduced amplitudes of even-related potentials and brain oscillations, to topography changes of brain activity. However, their association remains incompletely understood. We investigated time-frequency and time-course effects in functional networks underlying the P300 and their involvement in reactive control. Electroencephalographic (EEG) data of three different age groups (30 young: 18–26 years, 30 mid-aged: 49–58 years, 30 elderly: 65–75 years) was measured while they performed a cued colour/thickness switching task. Neural data was analysed concerning the targets. To consider restart, mixing, and switching processes, the targets´ position after a cue (first or third target) as well as their context in the single-task (distractor cue) or the mixed-task block (switch- or repeat cue) was analysed. P300 EEG data was decomposed by means of group-independent component and time-frequency analyses focusing on theta and beta oscillations. RTs generally slowed down with age (main effect group), and effects were specifically strong in targets after a switching cue (larger Cohens d). Peaking at around 300 ms, we detected five functionally independent networks reflecting the multicomponent process underlying task-switching. These networks differed in terms of their topography (parietal and frontal), their involvement in task processes (switch-specific, mixing-, restart-, and single-task processes) and in terms of frequency effects. All were affected by age, as indicated by amplitude changes of the target-P300 and power reductions most consistently shown in beta oscillations. Most extensive age-related changes were observed in one parietal network sensitive to mixing and restart processes. Changes included a topography shift, P300 and beta amplitudes, and were ongoing in the elderly group.Electronic supplementary materialThe online version of this article (doi:10.1007/s10548-016-0512-4) contains supplementary material, which is available to authorized users.
机译:与年龄相关的神经认知作用已在不同水平上观察到,从甚至相关电位的振幅降低和脑震荡到脑活动的地形变化。但是,他们的关联仍然不完全了解。我们调查了P300底层功能网络中的时频和时程效应及其在无功控制中的作用。在执行提示的颜色/厚度切换任务时,测量了三个不同年龄组(30岁的年轻人:18-26岁,30岁的中年人:49-58岁,30岁的老人:65-75岁)的脑电图(EEG)数据。分析了有关目标的神经数据。要考虑重新启动,混合和切换过程,目标在一个提示(第一个或第三个目标)之后的位置,以及它们在单任务(干扰提示)或混合任务块(切换或重复提示)中的位置被分析了。 P300 EEG数据通过独立于组的成分和以theta和beta振荡为中心的时频分析进行分解。 RTs通常随着年龄的增长而减慢(主要作用组),并且在转换提示后对靶的作用特别明显(较大的Cohens d)。在300毫秒左右达到峰值时,我们检测到五个功能独立的网络,这些网络反映了任务切换背后的多组件过程。这些网络在拓扑结构(顶叶和额叶),它们在任务过程中的参与(特定于交换机,混合过程,重启过程和单任务过程)以及频率影响方面有所不同。所有目标均受年龄的影响,如目标P300的幅度变化和β振荡中最一致地显示的功耗降低所示。在一个对混合和重启过程敏感的顶壁网络中观察到最广泛的与年龄相关的变化。变化包括地形变化,P300和β振幅,并且正在老年人群中进行。电子补充材料本文的在线版本(doi:10.1007 / s10548-016-0512-4)包含补充材料,授权用户可以使用。 。

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