Department of Nuclear Medicine, Seoul National University College of Medicine, Seoul, 110-744, Korea.
Institute of Radiation Medicine, Medical Research Center, Seoul National University, Seoul, 110-744, Korea.
Sci Rep. 2017 Feb 7;7:41592. doi: 10.1038/srep41592.
To explain gating of memory encoding, magnetoencephalography (MEG) was analyzed over multi-regional network of negative correlations between alpha band power during cue (cue-alpha) and gamma band power during item presentation (item-gamma) in Remember (R) and No-remember (NR) condition. Persistent homology with graph filtration on alpha-gamma correlation disclosed topological invariants to explain memory gating. Instruction compliance (R-hits minus NR-hits) was significantly related to negative coupling between the left superior occipital (cue-alpha) and the left dorsolateral superior frontal gyri (item-gamma) on permutation test, where the coupling was stronger in R than NR. In good memory performers (R-hits minus false alarm), the coupling was stronger in R than NR between the right posterior cingulate (cue-alpha) and the left fusiform gyri (item-gamma). Gating of memory encoding was dictated by inter-regional negative alpha-gamma coupling. Our graph filtration over MEG network revealed these inter-regional time-delayed cross-frequency connectivity serve gating of memory encoding.
为了解释记忆编码的门控,对记忆(R)和无记忆(NR)条件下线索(线索-α)期间的α频带功率与项目呈现(项目-γ)期间的γ频带功率之间的负相关的多区域网络进行了脑磁图(MEG)分析。在α-γ相关的图过滤上的持久同调揭示了拓扑不变量来解释记忆门控。指令遵守(R-命中数减去 NR-命中数)在置换检验中与左侧顶枕部(线索-α)和左侧额上回(项目-γ)之间的负耦合显著相关,其中 R 中的耦合强于 NR。在记忆表现良好的人(R-命中数减去假警报)中,右侧后扣带回(线索-α)和左侧梭状回(项目-γ)之间的耦合在 R 中强于 NR。记忆编码的门控由区域间负α-γ耦合决定。我们对 MEG 网络的图过滤揭示了这些区域间时滞的跨频连接,用于记忆编码的门控。