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顶叶α波刺激可因果性增强诱发活动和振荡活动中的注意力信息编码。

Parietal alpha stimulation causally enhances attentional information coding in evoked and oscillatory activity.

作者信息

Lu Runhao, Michael Elizabeth, Scrivener Catriona L, Jackson Jade B, Duncan John, Woolgar Alexandra

机构信息

MRC Cognition and Brain Sciences Unit, University of Cambridge, Cambridge, UK.

MRC Cognition and Brain Sciences Unit, University of Cambridge, Cambridge, UK.

出版信息

Brain Stimul. 2025 Jan-Feb;18(1):114-127. doi: 10.1016/j.brs.2025.01.003. Epub 2025 Jan 6.

Abstract

BACKGROUND

Selective attention is a fundamental cognitive mechanism that allows people to prioritise task-relevant information while ignoring irrelevant information. Previous research has suggested key roles of parietal event-related potentials (ERPs) and alpha oscillatory responses in attention tasks. However, the informational content of these signals is less clear, and their causal effects on the coding of multiple task elements are yet unresolved.

OBJECTIVE

To test the causal roles of alpha oscillations and ERPs in coding different types of attentional information (where to attend, what to attend to, and features of thevisual stimulus).

METHODS

We first used EEG to examine the temporal dynamics of alpha oscillations and ERPs in coding attentional information. Then, we applied rhythmic-TMS (rh-TMS) at individual alpha frequency over the right intraparietal sulcus (IPS), while concurrently measuring EEG, to causally manipulate parietal alpha power and ERPs and investigate their roles in coding multiple task features in a selective attention task.

RESULTS

EEG-only data suggested that ERPs coded all three types of task-relevant information with distinct temporal dynamics, while alpha oscillations carried information regarding both where to attend and what to attend to. TMS-EEG results indicated that, compared to arrhythmic-TMS, alpha rh-TMS increased alpha power and inter-trial phase coherence and yielded more negative posterior-contralateral ERPs. Moreover, alpha rh-TMS specifically and causally improved multivariate decoding of information about where to attend (but not what to attend to or visual feature information) during task performance, with decoding improvements predicting changes in behavioural performance.

CONCLUSIONS

These findings illuminate the dynamics with which the complementary aspects of a selective attention task are encoded in evoked and oscillatory brain activity. Moreover, they reveal a specific and causal role of IPS-controlled evoked and oscillatory activity in carrying behaviour-driving information exclusively about where to focus attention.

摘要

背景

选择性注意是一种基本的认知机制,它使人们能够在忽略无关信息的同时,优先处理与任务相关的信息。先前的研究表明,顶叶事件相关电位(ERP)和阿尔法振荡反应在注意力任务中起着关键作用。然而,这些信号的信息内容尚不清楚,它们对多个任务元素编码的因果效应也尚未得到解决。

目的

测试阿尔法振荡和ERP在编码不同类型注意力信息(注意位置、注意内容以及视觉刺激特征)中的因果作用。

方法

我们首先使用脑电图(EEG)来检查阿尔法振荡和ERP在编码注意力信息时的时间动态。然后,我们在右顶内沟(IPS)处以个体阿尔法频率应用节律性重复经颅磁刺激(rh-TMS),同时测量脑电图,以因果性地操纵顶叶阿尔法功率和ERP,并研究它们在选择性注意任务中对多个任务特征编码的作用。

结果

仅EEG数据表明,ERP以不同的时间动态编码所有三种与任务相关的信息类型,而阿尔法振荡携带有关注意位置和注意内容的信息。经颅磁刺激-脑电图(TMS-EEG)结果表明,与无节律TMS相比,阿尔法rh-TMS增加了阿尔法功率和试次间相位相干性,并产生了更负的对侧后头部ERP。此外,阿尔法rh-TMS在任务执行期间特别且因果性地改善了关于注意位置(而非注意内容或视觉特征信息)的信息的多变量解码,解码的改善预测了行为表现的变化。

结论

这些发现揭示了选择性注意任务的互补方面在诱发和振荡脑活动中编码的动态过程。此外,它们揭示了IPS控制的诱发和振荡活动在专门携带关于注意力集中位置的行为驱动信息方面的特定因果作用。

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