Graph alignment exploiting the spatial organization improves the similarity of brain networks

A Calissano, T Papadopoulo, X Pennec… - Human Brain …, 2024 - Wiley Online Library
Every brain is unique, having its structural and functional organization shaped by both
genetic and environmental factors over the course of its development. Brain image studies …

Network alignment and similarity reveal atlas-based topological differences in structural connectomes

M Frigo, E Cruciani, D Coudert, R Deriche… - Network …, 2021 - direct.mit.edu
The interactions between different brain regions can be modeled as a graph, called
connectome, whose nodes correspond to parcels from a predefined brain atlas. The edges …

Structural connectivity to reconstruct brain activation and effective connectivity between brain regions

B Belaoucha, T Papadopoulo - Journal of Neural Engineering, 2020 - iopscience.iop.org
Objective. Understanding how brain regions interact to perform a specific task is very
challenging. EEG and MEG are two non-invasive imaging modalities that allow the …

Inferring and comparing structural parcellations of the human brain using diffusion MRI

GAG Diez - 2018 - theses.hal.science
Understanding how brain connectivity is organized, and how this constrains brain
functionality is a key question of neuroscience. The advent of Diffusion Magnetic Resonance …

Computational Brain Connectivity Mapping: From Multi-Compartment Modeling To Network Topology Via Tractography Filtering

M Frigo - 2021 - theses.hal.science
The human brain is a complex multiscale biomechanism composed of nearly a hundred
billion neurons. Using diffusion magnetic resonance imaging (dMRI), in this thesis we …

[PDF][PDF] Construction et Comparaison de Parcellisations Structurelles Cérébrale par Imagerie de Diffusion

G GALLARDO - 2018 - core.ac.uk
Résumé Comprendre l'organisation de la connectivité structurelle du cerveau ainsi que
comment celle-ci contraint sa fonctionnalité est une question fondamentale en …