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首页> 外文期刊>Journal of biosciences >Functional connectivity between frontal/parietal regions and MTL–basal ganglia during feedback learning and declarative memory retrieval
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Functional connectivity between frontal/parietal regions and MTL–basal ganglia during feedback learning and declarative memory retrieval

机译:正面/榫廓区域与MTL-BASAL GANGLIA之间的功能连接,在反馈学习和声明内存检索期间

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Feedback assists the memory system in preserving the learnings from ongoing activities and updating it for future retrievals. Thus, the feedback coming from an individual's performance affects the behavior and, thereby, the performance. However, little is known regarding the interactions of learning and memory associated regions. Thus, we employ a combination of functional connectivity and neurovascular approach to explore the significance of these interactions. Our study comprises thirty-five volunteers who undergo a feedback declarative memory task using simultaneous EEG-fMRI data acquisition. Functional connectivity analysis showed that medial temporal lobe (MTL) and basal ganglia possess significant connectivity but differential relationships during feedback learning and memory retrieval. Specifically, Putamen and pallidum (sub-regions of basal ganglia) are the central hubs in these mechanisms. The neurovascular analysis reveals the increased correlation of frontal-alpha and theta powers with the bold activity of MTL during memory retrievals. The results also report the role of the frontal (and parietal) alpha-beta powers in de-synchronization (and synchronization) of the bold activity of caudate; and parietal-theta (frontal-higher-alpha) power in de-synchronization (and synchronization) of bold activity of right accumbens. Hence, the study demonstrates the significant role of the frontal-parietal EEG powers in MTL–basal ganglia relationships and neuronal adaptations during declarative memory retrieval.
机译:反馈帮助内存系统保留了从正在进行的活动中保留了学习并更新以供将来的检索。因此,来自个人性能的反馈会影响行为,从而影响性能。然而,关于学习和记忆相关区域的相互作用很少。因此,我们采用功能性连体和神经血管方法的组合来探讨这些相互作用的重要性。我们的研究包括使用同时EEG-FMRI数据采集的反馈声明内存任务的三十五个志愿者。功能连接分析表明,内侧颞叶(MTL)和基础神经节在反馈学习和存储器检索期间具有显着的连通性,但差异关系。具体而言,Putamen和Pallidum(基底神经节的次区域)是这些机制中的中心轮毂。神经血管分析揭示了在存储器检索期间对MTL大胆活性的额外-α和θ功率的相关性增加。结果还报告了阶级(和顶点)Alpha-β功率在凯特大胆活动的去同步(和同步)中的作用;和右侧Accumbens的大胆活动的解除同步(和同步)中的台式 - θ(额高alpha)功率。因此,该研究表明额外脑电图功率在声明内存检索期间MTL-BASAL GANKLIA关系和神经元适应中的重要作用。

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