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Prefrontal-Hippocampal-Fusiform Activity During Encoding Predicts Intraindividual Differences in Free Recall Ability: An Event-Related Functional-Anatomic MRI Study

机译:编码过程中的前额海马融合形式活动预测自由召回能力的个体差异:与事件相关的功能性MRI研究

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摘要

The ability to spontaneously recall recently learned information is a fundamental mnemonic activity of daily life, but has received little study using functional neuroimaging. We developed a functional MRI (fMRI) paradigm to study regional brain activity during encoding that predicts free recall. In this event-related fMRI study, ten lists of fourteen pictures of common objects were shown to healthy young individuals and regional brain activity during encoding was analyzed based on subsequent free recall performance. Free recall of items was predicted by activity during encoding in hippocampal, fusiform, and inferior prefrontal cortical regions. Within-subject variance in free recall performance for the ten lists was predicted by a linear combination of condition-specific inferior prefrontal, hippocampal, and fusiform activity. Recall performance was better for lists in which pre-frontal activity was greater for all items of the list and hippocampal and fusi-form activity were greater specifically for items that were recalled from the list. Thus, the activity of medial temporal, fusiform, and prefrontal brain regions during the learning of new information is important for the subsequent free recall of this information. These fronto-temporal brain regions act together as a large-scale memory-related network, the components of which make distinct yet interacting contributions during encoding that predict subsequent successful free recall performance.
机译:自发地召回最近学到的信息的能力是日常生活中的一项基本记忆功能,但很少使用功能性神经影像学进行研究。我们开发了一种功能性MRI(fMRI)范例,以研究在编码过程中预测自由召回的区域性大脑活动。在这项与事件相关的功能磁共振成像研究中,向健康的年轻人展示了十张共14张常见对象的照片清单,并根据随后的自由召回性能对编码过程中的区域大脑活动进行了分析。通过在海马,梭形和下额叶前皮层区域编码期间的活动来预测物品的自由召回。通过条件特异性下额前额叶,海马和梭形活动的线性组合来预测十个列表的自由回忆表现的受试者内部差异。对于列表中的所有项目,其前额叶活动都较大,而特别是对于从列表中召回的项目,海马和融合形式活动的召回性能更好。因此,在学习新信息期间,内侧颞,梭形和前额脑区域的活动对于此信息的后续自由召回很重要。这些额颞脑区域共同充当一个大规模的记忆相关网络,其组成部分在编码过程中做出了独特但相互作用的贡献,从而预测了随后成功的自由召回性能。

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