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Relationship between regional hemodynamic activity and simultaneously recorded EEG‐theta associated with mental arithmetic‐induced workload

机译:区域血流动力学活动与同时记录的脑电图θ与心理算术诱发的工作量之间的关系

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摘要

Theta increases with workload and is associated with numerous processes including working memory, problem solving, encoding, or self monitoring. These processes, in turn, involve numerous structures of the brain. However, the relationship between regional brain activity and the occurrence of theta remains unclear. In the present study, simultaneous EEG‐fMRI recordings were used to investigate the functional topography of theta. EEG‐theta was enhanced by mental arithmetic‐induced workload. For the EEG‐constrained fMRI analysis, theta‐reference time‐series were extracted from the EEG, reflecting the strength of theta occurrence during the time course of the experiment. Theta occurrence was mainly associated with activation of the insular cortex, hippocampus, superior temporal areas, cingulate cortex, superior parietal, and frontal areas. Though observation of temporal and insular activation is in accord with the theory that theta specifically reflects encoding processes, the involvement of several other brain regions implies that surface‐recorded theta represents comprehensive functional brain states rather than specific processes in the brain. The results provide further evidence for the concept that emergent theta band oscillations represent dynamic functional binding of widely distributed cortical assemblies, essential for cognitive processing. This binding process may form the source of surface‐recorded EEG theta. Hum Brain Mapp, 2006. © 2006 Wiley‐Liss, Inc.
机译:Theta随着工作量的增加而增加,并与许多过程相关联,包括工作记忆,问题解决,编码或自我监控。这些过程又涉及大脑的许多结构。但是,尚不清楚区域脑活动与theta发生之间的关系。在本研究中,同时进行的EEG-fMRI记录用于研究theta的功能性地形。脑电图工作量因心理算术诱导的工作量而增强。对于EEG受限的fMRI分析,从EEG中提取了theta参考时间序列,反映了在实验过程中theta出现的强度。 θ的发生主要与岛上皮层,海马,颞上区域,扣带状皮层,顶叶和额叶区域的激活有关。尽管对颞叶和岛状激活的观察符合theta专门反映编码过程的理论,但其他几个大脑区域的参与也意味着表面记录的theta代表了综合的功能性大脑状态,而非大脑中的特定过程。结果为这一概念提供了进一步的证据,即出现的θ带振荡代表了广泛分布的皮质组件的动态功能结合,这对于认知加工至关重要。这种结合过程可能成为表面记录的脑电图θ的来源。嗡嗡的脑图,2006年。©2006 Wiley‐Liss,Inc.

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