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Changes in anterior and posterior hippocampus differentially predict item-space, item-time, and item-item memory improvement

机译:前和后海马的变化差异地预测项目空间,项目时间和项目 - 项目内存改进

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Relational memory improves during middle childhood and adolescence, yet the neural correlates underlying those improvements are debated. Although memory for spatial, temporal, and other associative relations requires the hippocampus, it is not established whether within-individual changes in hippocampal structure contribute to memory improvements from middle childhood into adolescence. Here, we investigated how structural changes in hippocampal head, body, and tail subregions predict improvements in the capacity to remember item-space, item-time, and item-item relations. Memory for each relation and volumes of hippocampal subregions were assessed longitudinally in 171 participants across 3 time points ( M age at T1?=?9.45 years; M age at T2?=?10.86 years, M age at T3?=?12.12 years; comprising 393 behavioral assessments and 362 structural scans). Among older children, volumetric growth in: (a) head and body predicted improvements in item-time memory, (b) head predicted improvements in item-item memory; and (c) right tail predicted improvements in item-space memory. The present research establishes that changes in hippocampal structure are related to improvements in relational memory, and that sub-regional changes in hippocampal volume differentially predict changes in different aspects of relational memory. These findings underscore a division of labor along the anterior-posterior axis of the hippocampus during child development.
机译:在中间儿童和青春期期间,关系记忆改善,然而,这些改进的神经相关性是争论的。虽然空间,时间和其他联想关系的记忆需要海马,但没有确定海马结构的个体变化是否有助于中间儿童进入青春期的内存改善。在这里,我们调查了海马头部,身体和尾部区域的结构变化如何预测资料的改进,以记住项目空间,项目时间和项目项目关系的能力。每种关系和海马次区域的存储器中的记忆被纵向在3个时间点(T1在T1的年龄(米年龄)中进行评估(t1?= 9.45岁;在t2的年龄?=?10.86岁,T3 = 12.12岁;包括393个行为评估和362个结构扫描)。在较旧的儿童中,体积增长:(a)头部和身体预测物品 - 时间内存的改进,(b)磁头预测项目 - 项目存储器的改进; (c)右尾预测项目空间存储器的改进。本研究确定海马结构的变化与关系记忆的改善有关,并且海马体积的次区域变化差异地预测关系存储器的不同方面的变化。这些调查结果强调了儿童开发期间海马前后轴的劳动分工。

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