| Literature DB >> 30249651 |
Kazuya Suwabe1,2, Kyeongho Byun2,3, Kazuki Hyodo1, Zachariah M Reagh3,4, Jared M Roberts3,4, Akira Matsushita5,6, Kousaku Saotome5, Genta Ochi1, Takemune Fukuie1, Kenji Suzuki5, Yoshiyuki Sankai5, Michael A Yassa7,3,4, Hideaki Soya8,2.
Abstract
Physical exercise has beneficial effects on neurocognitive function, including hippocampus-dependent episodic memory. Exercise intensity level can be assessed according to whether it induces a stress response; the most effective exercise for improving hippocampal function remains unclear. Our prior work using a special treadmill running model in animals has shown that stress-free mild exercise increases hippocampal neuronal activity and promotes adult neurogenesis in the dentate gyrus (DG) of the hippocampus, improving spatial memory performance. However, the rapid modification, from mild exercise, on hippocampal memory function and the exact mechanisms for these changes, in particular the impact on pattern separation acting in the DG and CA3 regions, are yet to be elucidated. To this end, we adopted an acute-exercise design in humans, coupled with high-resolution functional MRI techniques, capable of resolving hippocampal subfields. A single 10-min bout of very light-intensity exercise (30%[Formula: see text]) results in rapid enhancement in pattern separation and an increase in functional connectivity between hippocampal DG/CA3 and cortical regions (i.e., parahippocampal, angular, and fusiform gyri). Importantly, the magnitude of the enhanced functional connectivity predicted the extent of memory improvement at an individual subject level. These results suggest that brief, very light exercise rapidly enhances hippocampal memory function, possibly by increasing DG/CA3-neocortical functional connectivity.Entities:
Keywords: episodic memory; functional MRI; hippocampus; pattern separation; physical exercise
Mesh:
Year: 2018 PMID: 30249651 PMCID: PMC6187140 DOI: 10.1073/pnas.1805668115
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205