Department of Psychology, University of California, Davis, 135 Young Hall, One Shields Avenue, Davis, CA 95616, USA; Center for Mind and Brain, University of California, Davis, 202 Cousteau Place, Davis, CA 95618, USA.
Department of Psychology, University of California, Davis, 135 Young Hall, One Shields Avenue, Davis, CA 95616, USA; Center for Neuroscience, University of California, Davis, 1544 Newton Court, Davis, CA 95618, USA.
Neuroimage. 2014 Jul 1;94:162-171. doi: 10.1016/j.neuroimage.2014.03.019. Epub 2014 Mar 15.
Episodic memory critically depends on the hippocampus to bind the features of an experience into memory. Episodic memory develops in childhood and adolescence, and hippocampal changes during this period may contribute to this development. Little is known, however, about how the hippocampus contributes to episodic memory development. The hippocampus is comprised of several cytoarchitectural subfields with functional significance for episodic memory. However, hippocampal subfields have not been assessed in vivo during child development, nor has their relation with episodic memory been assessed during this period. In the present study, high-resolution T2-weighted images of the hippocampus were acquired in 39 children and adolescents aged 8 to 14 years (M=11.30, SD=2.38), and hippocampal subfields were segmented using a protocol previously validated in adult populations. We first validated the method in children and adolescents and examined age-related differences in hippocampal subfields and correlations between subfield volumes and episodic memory. Significant age-related increases in the subfield volume were observed into early adolescence in the right CA3/DG and CA1. The right CA3/DG subfield volumes were positively correlated with accurate episodic memory for item-color relations, and the right CA3/DG and subiculum were negatively correlated with item false alarm rates. Subfield development appears to follow a protracted developmental trajectory, and likely plays a pivotal role in episodic memory development.
情景记忆严重依赖海马体将体验的特征结合成记忆。情景记忆在儿童和青少年时期发展,在此期间海马体的变化可能有助于这种发展。然而,对于海马体如何有助于情景记忆的发展,我们知之甚少。海马体由几个具有情景记忆功能意义的细胞构筑亚区组成。然而,在儿童发育过程中尚未在体内评估海马亚区,也未在该期间评估其与情景记忆的关系。在本研究中,我们在 39 名 8 至 14 岁的儿童和青少年(M=11.30,SD=2.38)中获得了海马体的高分辨率 T2 加权图像,并使用以前在成人人群中验证过的方案对海马体亚区进行了分割。我们首先在儿童和青少年中验证了该方法,并检查了海马体亚区的年龄相关性差异以及亚区体积与情景记忆之间的相关性。在右 CA3/DG 和 CA1 中观察到与年龄相关的亚区体积显著增加,进入青春期早期。右 CA3/DG 亚区体积与物品颜色关系的准确情景记忆呈正相关,而右 CA3/DG 和下托与项目虚报率呈负相关。亚区发育似乎遵循一个延长的发育轨迹,并且可能在情景记忆发育中起着关键作用。