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Information Transfer During a Transitive Reasoning Task

机译:传递推理任务中的信息传递

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摘要

For about two decades now, the localization of the brain regions involved in reasoning processes is being investigated through fMRI studies, and it is known that for a transitive form of reasoning the frontal and parietal regions are most active. In contrast, less is known about the information exchange during the performance of such complex tasks. In this study, the propagation of brain activity during a transitive reasoning task was investigated and compared to the propagation during a simple memory task. We studied EEG transmission patterns obtained for physiological indicators of brain activity and determined whether there are frequency bands specifically related to this type of cognitive operations. The analysis was performed by means of the directed transfer function. The transmission patterns were determined in the theta, alpha and gamma bands. The results show stronger transmissions in theta and alpha bands from frontal to parietal as well as within frontal regions in reasoning trials comparing to memory trials. The increase in theta and alpha transmissions was accompanied by flows in gamma band from right posterior to left posterior and anterior sites. These results are consistent with previous neuroimaging (fMRI) data concerning fronto-parietal regions involvement in reasoning and working memory processes and also provide new evidence for the executive role of frontal theta waves in organizing the cognition.
机译:大约二十年来,正在通过功能磁共振成像研究来研究参与推理过程的大脑区域的定位,并且已知对于推理的传递形式,额叶和顶叶区域最为活跃。相反,在执行此类复杂任务期间对信息交换的了解较少。在这项研究中,研究了在传递推理任务期间大脑活动的传播,并将其与在简单记忆任务中的传播进行了比较。我们研究了脑活动的生理指标获得的脑电图传输模式,并确定是否存在与这种类型的认知操作特别相关的频段。通过定向传递函数进行分析。在θ,α和γ波段确定透射模式。结果表明,与记忆试验相比,在推理试验中,θ和α带从额叶到顶叶以及额叶区域的传递更强。 θ和alpha传播的增加伴随着从右后到左后和前位的伽马流。这些结果与先前有关额叶顶区参与推理和工作记忆过程的神经成像(fMRI)数据一致,也为额叶theta波在组织认知中的执行作用提供了新的证据。

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