paper-with-me

Papers

Accounting for the Complex Hierarchical Topology of EEG Phase-Based Functional Connectivity in Network Binarisation

2017-09-29

Research into binary network analysis of brain function faces a methodological challenge in selecting an appropriate threshold to binarise edge weights. For EEG phase-based functional connectivity, we test the hypothesis that such binarisation should take into account the complex hierarchical structure found in functional connectivity. We explore the density range suitable for such structure and provide a comparison of state-of-the-art binarisation techniques, the recently proposed Cluster-Span Threshold (CST), minimum spanning trees, efficiency-cost optimisation and union of shortest path graphs, with arbitrary proportional thresholds and weighted networks. We test these techniques on weighted complex hierarchy models by contrasting model realisations with small parametric differences. We also test the robustness of these techniques to random and targeted topological attacks.We find that the CST performs consistenty well in state-of-the-art modelling of EEG network topology, robustness to topological network attacks, and in three real datasets, agreeing with our hypothesis of hierarchical complexity. This provides interesting new evidence into the relevance of considering a large number of edges in EEG functional connectivity research to provide informational density in the topology.

📄 PDF Abstract BibTeX arXiv:1610.06360

Code (0)

등록된 구현이 없습니다.

Tasks

EEGElectroencephalogram (EEG)Functional Connectivity

Similar Papers 제목 키워드 기반

Directional intermodular coupling enriches functional complexity in biological neuronal networks

2024-04-25 · Nobuaki Monma, Hideaki Yamamoto, Naoya Fujiwara, Hakuba Murota 외

Hierarchically modular organization is a canonical network topology that is evolutionarily conserved in the nervous systems of animals. Within the network, neurons form directional connections defined by the growth of th…

Sex Differences in Hierarchical and Modular Organization of Functional Brain Networks: Insights from Hierarchical Entropy and Modularity Analysis

2024-09-24 · Wenyu Chen, Ling Zhan, Tao Jia

Existing studies have demonstrated significant sex differences in the neural mechanisms of daily life and neuropsychiatric disorders. The hierarchical organization of the functional brain network is a critical feature fo…

Functional complexity emerging from anatomical constraints in the brain: the significance of network modularity and rich-clubs

2016-10-31

The large-scale structural ingredients of the brain and neural connectomes have been identified in recent years. These are, similar to the features found in many other real networks: the arrangement of brain regions into…

Functional Connectivity

HGFormer: A Hierarchical Graph Transformer Framework for Two-Stage Colonel Blotto Games via Reinforcement Learning

2025-06-10 · Yang Lv, Jinlong Lei, Peng Yi

Two-stage Colonel Blotto game represents a typical adversarial resource allocation problem, in which two opposing agents sequentially allocate resources in a network topology across two phases: an initial resource deploy…

Decision MakingGraph Neural Network

ChemFlow:A Hierarchical Neural Network for Multiscale Representation Learning in Chemical Mixtures

2026-03-03 · Jinming Fan, Chao Qian, Wilhelm T. S. Huck, William E. Robinson 외 arxiv

Accurate prediction of the physicochemical properties of molecular mixtures using graph neural networks remains a significant challenge, as it requires simultaneous embedding of intramolecular interactions while accounti…

Representation Learning