Department of Psychology, University of California, Davis, Davis, CA 95616, USA.
J Neurosci. 2012 May 9;32(19):6550-60. doi: 10.1523/JNEUROSCI.3711-11.2012.
Numerous studies support the importance of the perirhinal cortex (PRC) and parahippocampal cortex (PHC) in episodic memory. Theories of PRC and PHC function in humans have been informed by neuroanatomical studies of these regions obtained in animal tract-tracing studies, but knowledge of the connectivity of PHC and PRC in humans is limited. To address this issue, we used resting-state functional magnetic resonance imaging to compare the intrinsic functional connectivity profiles associated with the PRC and PHC both across the neocortex and within the subfields of the hippocampus. In Experiment 1, we acquired standard-resolution whole-brain resting-state fMRI data in 15 participants, and in Experiment 2, we acquired high-resolution resting-state fMRI data targeting the hippocampus in an independent sample of 15 participants. Experiment 1 revealed that PRC showed preferential connectivity with the anterior hippocampus, whereas PHC showed preferential connectivity with posterior hippocampus. Experiment 2 indicated that this anterior-posterior functional connectivity dissociation was more evident for subfields CA1 and subiculum than for a combined CA2/CA3/dentate gyrus region. Finally, whole-brain analyses from Experiment 1 revealed preferential PRC connectivity with an anterior temporal and frontal cortical network, and preferential PHC connectivity with a posterior medial temporal, parietal, and occipital network. These results suggest a framework for refining models of the functional organization of the human medial temporal lobes in which the PRC and PHC are associated with distinct neocortical pathways that, in turn, may differentially interact with regions along the anterior-posterior axis of the hippocampus.
大量研究支持边缘皮层(PRC)和海马旁回皮层(PHC)在情景记忆中的重要性。关于 PRC 和 PHC 功能的理论是通过对动物追踪研究中这些区域的神经解剖学研究得出的,但人类 PHC 和 PRC 的连接知识有限。为了解决这个问题,我们使用静息态功能磁共振成像来比较与 PRC 和 PHC 相关的内在功能连接谱,这些连接谱既跨越新皮层,也在海马亚区内部。在实验 1 中,我们在 15 名参与者中获得了标准分辨率的全脑静息态 fMRI 数据,在实验 2 中,我们在一个独立的 15 名参与者样本中获得了针对海马体的高分辨率静息态 fMRI 数据。实验 1 表明 PRC 与前海马体有优先连接,而 PHC 与后海马体有优先连接。实验 2 表明,这种前-后功能连接分离在 CA1 和 subiculum 亚区比 CA2/CA3/dentate gyrus 区域更为明显。最后,实验 1 的全脑分析表明 PRC 与一个前颞叶和额皮质网络有优先连接,而 PHC 与一个后内侧颞叶、顶叶和枕叶网络有优先连接。这些结果为细化人类内侧颞叶功能组织模型提供了一个框架,其中 PRC 和 PHC 与不同的新皮质通路相关,而这些通路又可能与海马体的前-后轴上的区域有不同的相互作用。