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k核渗流和有向图分析均揭示了静息态功能磁共振成像(fMRI)动态相关性中体素时空进程的连续性和转变。

Both k-core percolation and directed graph analysis revealed succession and transition of voxels' spatiotemporal progress on dynamic correlation resting-state fMRI.

作者信息

Lee Dong Soo, Kim Hyun Joo, Huh Youngmin, Kang Yeon Koo, Whi Wonseok, Lee Hyekyoung, Kang Hyejin

机构信息

Medical Science and Engineering, School of Convergence Science and Technology, Pohang University of Science and Technology, Pohang, Republic of Korea.

Nuclear Medicine, College of Medicine, Seoul National University, Seoul, Republic of Korea.

出版信息

Front Hum Neurosci. 2025 Apr 16;19:1543854. doi: 10.3389/fnhum.2025.1543854. eCollection 2025.

Abstract

INTRODUCTION

Voxel hierarchy on dynamic brain graphs is produced by k-core percolation on functional dynamic amplitude correlation of resting-state fMRI.

METHODS

Directed graphs and their afferent/efferent capacities are produced by Markov modeling of the universal cover of undirected graphs simultaneously with the calculation of volume entropy. Using these methods, state stationarity was tested for resting-state positive and unsigned negative brain graphs separately on sliding-window representation. The spatiotemporal progress of voxels was visualized and quantified.

RESULTS AND DISCUSSION

The voxel hierarchy of positive graphs revealed abrupt changes in coreness k (k-core) and maximum k-core (kmaxcore) voxels on animation maps representing state transitions interspersed among the succession. Afferent voxel capacities of the positive graphs revealed transient modules composed of dominant voxels and independent components as well as their exchanges compatible with transitions. Moreover, this voxel hierarchy and afferent capacity corroborated each other only on the positive directed functional connectivity graphs but not on the unsigned negative graphs. The Spatiotemporal progression of voxels on positive dynamic graphs constructed a hierarchy by k-core percolation and afferent information flow by volume entropy and directed graph methods. We disclosed the non-stationarity and its temporal progress pattern at rest, accompanied by diverse resting-state transitions on resting-state fMRI graphs in normal human subjects.

摘要

引言

动态脑图上的体素层次结构是通过对静息态功能磁共振成像的功能动态幅度相关性进行k核渗流产生的。

方法

通过对无向图的万有覆盖进行马尔可夫建模并同时计算体积熵,生成有向图及其传入/传出容量。使用这些方法,分别在滑动窗口表示上对静息态正性和无符号负性脑图的状态平稳性进行了测试。对体素的时空进展进行了可视化和量化。

结果与讨论

正性图的体素层次结构显示,在表示状态转换的动画图上,核心度k(k核)和最大k核(kmaxcore)体素出现突然变化,这些状态转换穿插在序列中。正性图的传入体素容量揭示了由优势体素和独立成分组成的瞬态模块,以及它们与转换兼容的交换。此外,这种体素层次结构和传入容量仅在正性有向功能连接图上相互印证,而在无符号负性图上则不然。正性动态图上体素的时空进展通过k核渗流以及体积熵和有向图方法的传入信息流构建了一个层次结构。我们揭示了静息时的非平稳性及其时间进展模式,同时在正常人类受试者的静息态功能磁共振成像图上伴随着多种静息态转换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b2b/12040893/da6ba888b517/fnhum-19-1543854-g001.jpg

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