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Developmental Changes of BOLD Signal Correlations with Global Human EEG Power and Synchronization during Working Memory

机译:工作记忆过程中与全球人类脑电功率和同步相关的大胆信号相关性的发展变化

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摘要

In humans, theta band (5–7 Hz) power typically increases when performing cognitively demanding working memory (WM) tasks, and simultaneous EEG-fMRI recordings have revealed an inverse relationship between theta power and the BOLD (blood oxygen level dependent) signal in the default mode network during WM. However, synchronization also plays a fundamental role in cognitive processing, and the level of theta and higher frequency band synchronization is modulated during WM. Yet, little is known about the link between BOLD, EEG power, and EEG synchronization during WM, and how these measures develop with human brain maturation or relate to behavioral changes. We examined EEG-BOLD signal correlations from 18 young adults and 15 school-aged children for age-dependent effects during a load-modulated Sternberg WM task. Frontal load (in-)dependent EEG theta power was significantly enhanced in children compared to adults, while adults showed stronger fMRI load effects. Children demonstrated a stronger negative correlation between global theta power and the BOLD signal in the default mode network relative to adults. Therefore, we conclude that theta power mediates the suppression of a task-irrelevant network. We further conclude that children suppress this network even more than adults, probably from an increased level of task-preparedness to compensate for not fully mature cognitive functions, reflected in lower response accuracy and increased reaction time. In contrast to power, correlations between instantaneous theta global field synchronization and the BOLD signal were exclusively positive in both age groups but only significant in adults in the frontal-parietal and posterior cingulate cortices. Furthermore, theta synchronization was weaker in children and was –in contrast to EEG power– positively correlated with response accuracy in both age groups. In summary we conclude that theta EEG-BOLD signal correlations differ between spectral power and synchronization and that these opposite correlations with different distributions undergo similar and significant neuronal developments with brain maturation.
机译:在人类中,执行认知要求较高的工作记忆(WM)任务时,θ波段(5–7 Hz)功率通常会增加,同时进行的EEG-fMRI记录显示,θ功率与BOLD(取决于血氧水平)信号呈反比关系。 WM期间的默认模式网络。但是,同步在认知处理中也起着基本作用,并且在WM期间调制theta和更高频段同步的级别。然而,关于WM期间BOLD,EEG功率和EEG同步之间的联系,以及这些措施如何随着人脑的成熟发展或与行为变化相关的了解甚少。我们在负荷调节的Sternberg WM任务期间检查了来自18位年轻成年人和15位学龄儿童的EEG-BOLD信号相关性与年龄的关系。与成年人相比,儿童的额叶负荷(中)依赖性EEG theta功率显着增强,而成年人表现出更强的fMRI负荷效应。与成人相比,儿童在默认模式网络中显示了总体theta功率与BOLD信号之间更强的负相关性。因此,我们得出结论,theta功率可以抑制与任务无关的网络。我们进一步得出结论,儿童对这一网络的抑制甚至比成年人更大,这可能是由于任务准备水平的提高,以弥补未完全成熟的认知功能,这反映在较低的响应准确度和响应时间上。与功率相反,瞬时θ全局场同步与BOLD信号之间的相关性在两个年龄组中均仅呈正相关,而仅在额顶叶和后扣带状皮质的成年人中显着。此外,儿童的theta同步性较弱,并且与EEG功率相反,在两个年龄组中,它们的反应准确性均呈正相关。总之,我们得出结论,θEEG-BOLD信号相关在频谱功率和同步之间是不同的,并且这些具有不同分布的相反相关会经历与大脑成熟相关的相似且重要的神经元发育。

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