A cooperative-competitive Hopf model of brain dynamics for superior realism and subject-specificity.
Mar 11, 2026
We use computational whole-brain modelling across human, macaque, and mouse to show that models with competitive interactions are more realistic, more personalised, more synergistic, and perform better.
Mar 11, 2026
Across human, macaque, marmoset, and mouse, anaesthesia disrupts integration of information in the mammalian brain, which is restored upon re-awakening by central-thalamic deep-brain stimulation, and reproduced in species-specific computational models.
Jan 28, 2026
Neurotransmission-modulated (NEMO) whole-brain model updates effective connectivity to simulate task states
Jan 27, 2026
We outline two different research cultures in neuroscience and the road ahead for overcoming their division.
Jul 21, 2025
We use network control theory to establish how brain network organization and chemoarchitecture interact to manifest different cognitive topographies, demonstrating the energetic efficiency of the human brain.
Aug 5, 2024
We review how disentangling synergistic and redundant information provides a guiding principle for understanding the informational architecture of the brain and cognition and their evolution.
Apr 1, 2024
Computational biophysical models can be used to generate and test mechanistic hypotheses in network neuroscience.
Oct 7, 2022