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Gating of memory encoding of time-delayed cross-frequency MEG networks revealed by graph filtration based on persistent homology

机译:基于持久性同源性的曲线过滤显示时延横频兆网络的存储器编码

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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.
机译:为了解释内存编码的播出,在MUES(CUE-ALPHA)和伽马带电力期间的α频带功率之间的多区域相关负相关网络中的多区域网络和伽马带电力期间在记忆(r)和没有记住(NR)条件。持续同源性与α-gamma相关性的曲线过滤公开了用于解释记忆门的拓扑不变。指令符合性(R-HITS减去NR-HITS)与左上枕骨(CUE-alpha)与左背体上额寄存在排列测试中的负耦合显着相关,耦合在R中更强大而不是nr。在良好的记忆表演者(R-HITS减去误报)中,右侧铰接(Cue-alpha)和左侧梭形Gyri(Item-gamma)之间的耦合比NR更强。内存编码的栅栏由区域间阴性α-γ耦合指定。我们的图形过滤在MEG网络上揭示了这些区域间延迟横频连接服务于存储器编码的播放。

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