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Spatial Mnemonic Encoding: Theta Power Decreases and Medial Temporal Lobe BOLD Increases Co-Occur during the Usage of the Method of Loci

机译:空间助记符编码:在使用基因座方法期间Theta功率降低且内侧颞叶粗体增加

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摘要

The method of loci is one, if not the most, efficient mnemonic encoding strategy. This spatial mnemonic combines the core cognitive processes commonly linked to medial temporal lobe (MTL) activity: spatial and associative memory processes. During such processes, fMRI studies consistently demonstrate MTL activity, while electrophysiological studies have emphasized the important role of theta oscillations (3–8 Hz) in the MTL. However, it is still unknown whether increases or decreases in theta power co-occur with increased BOLD signal in the MTL during memory encoding. To investigate this question, we recorded EEG and fMRI separately, while human participants used the spatial method of loci or the pegword method, a similarly associative but nonspatial mnemonic. The more effective spatial mnemonic induced a pronounced theta power decrease source localized to the left MTL compared with the nonspatial associative mnemonic strategy. This effect was mirrored by BOLD signal increases in the MTL. Successful encoding, irrespective of the strategy used, elicited decreases in left temporal theta power and increases in MTL BOLD activity. This pattern of results suggests a negative relationship between theta power and BOLD signal changes in the MTL during memory encoding and spatial processing. The findings extend the well known negative relation of alpha/beta oscillations and BOLD signals in the cortex to theta oscillations in the MTL.
机译:基因座的方法是一种(即使不是最有效的)有效的助记符编码策略。这种空间助记符结合了通常与内侧颞叶(MTL)活动相关的核心认知过程:空间和联想记忆过程。在这种过程中,fMRI研究始终显示MTL活性,而电生理研究则强调了theta振荡(3–8 Hz)在MTL中的重要作用。但是,仍然不清楚在存储器编码期间MTL中MTA中BOLD信号的增加是同时发生theta功率的增加还是减小。为了调查这个问题,我们分别记录了脑电图和功能磁共振成像,而人类参与者则使用了基因座的空间方法或联词法,这是一种类似的关联但非空间的记忆法。与非空间关联助记符策略相比,更有效的空间助记符引起了位于左侧MTL的明显theta功率降低源。 MTL中BOLD信号的增加反映了这种效果。无论使用何种策略,成功的编码都会导致左侧颞叶theta功率降低,而MTL BOLD活动增强。这种结果模式表明在存储器编码和空间处理期间,MTL中theta功率与BOLD信号变化之间存在负相关关系。这些发现扩展了皮质中的alpha / beta振荡和BOLD信号与MTL中theta振荡的负相关关系。

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