Department of Psychiatry, University of Nebraska Medical Center, Omaha, NE, USA.
Department of Rehabilitation Counseling Psychology, Seoul Hanyoung University, Seoul, Republic of Korea.
J Physiol Anthropol. 2020 Jul 2;39(1):15. doi: 10.1186/s40101-020-00225-x.
The hippocampus reportedly plays a crucial role in memory. However, examining individual human hippocampal-subfield function remains challenging because of their small sizes and convoluted structures. Here, we identified hippocampal subregions involved in memory types (implicit and explicit memory) and stages (encoding and retrieval).
We modified the serial reaction time task to examine four memory types, i.e. implicit encoding, explicit encoding, implicit retrieval, and explicit retrieval. During this task, 7-T functional magnetic resonance imaging was used to compare brain activity evoked by these memory types.
We found hippocampal activation according to all memory types and stages and identified that the hippocampus subserves both implicit and explicit memory processing. Moreover, we confirmed that cornu ammonis (CA) regions 1-3 were implicated in both memory encoding and retrieval, whereas the subiculum was implicated only in memory retrieval. We also found that CA 1-3 was activated more for explicit than implicit memory.
These results elucidate human hippocampal-subfield functioning underlying memory and may support future investigations into hippocampal-subfield functioning in health and neurodegenerative disease.
据报道,海马体在记忆中起着至关重要的作用。然而,由于其体积小且结构复杂,检查个体的海马亚区功能仍然具有挑战性。在这里,我们确定了参与记忆类型(内隐记忆和外显记忆)和阶段(编码和检索)的海马亚区。
我们修改了序列反应时间任务,以检查四种记忆类型,即内隐编码、外显编码、内隐检索和外显检索。在此任务中,使用 7-T 功能磁共振成像比较了这些记忆类型引起的大脑活动。
我们根据所有记忆类型和阶段发现了海马体的激活,并确定海马体既参与内隐记忆又参与外显记忆处理。此外,我们证实,齿状回(CA)区域 1-3 既参与记忆编码又参与记忆检索,而下托只参与记忆检索。我们还发现,CA 1-3 在外显记忆中比内隐记忆更活跃。
这些结果阐明了人类海马亚区在记忆中的功能,可能为未来研究健康和神经退行性疾病中海马亚区功能提供支持。