activity
20152017
collaborators

6 papers

q-bio.NC2017

The Frequent Subgraphs of the Connectome of the Human Brain

Mate Fellner, Balint Varga, Vince Grolmusz

In mapping the human structural connectome, we are in a very fortunate situation: one can compute and compare graphs, describing the cerebral connections between the very same, ana…

q-bio.NC2017

Comparing Advanced Graph-Theoretical Parameters of the Connectomes of the Lobes of the Human Brain

Balazs Szalkai, Balint Varga, Vince Grolmusz

Deep, classical graph-theoretical parameters, like the size of the minimum vertex cover, the chromatic number, or the eigengap of the adjacency matrix of the graph were studied wid…

q-bio.NC2016

The Dorsal Striatum and the Dynamics of the Consensus Connectomes in the Frontal Lobe of the Human Brain

Csaba Kerepesi, Balint Varga, Balazs Szalkai +1

In the applications of the graph theory it is unusual that one considers numerous, pairwise different graphs on the very same set of vertices. In the case of human braingraphs or c…

q-bio.NC2016

Parameterizable Consensus Connectomes from the Human Connectome Project: The Budapest Reference Connectome Server v3.0

Balázs Szalkai, Csaba Kerepesi, Bálint Varga +1

Connections of the living human brain, on a macroscopic scale, can be mapped by a diffusion MR imaging based workflow. Since the same anatomic regions can be corresponded between d…

q-bio.NC2016

Mapping Correlations of Psychological and Connectomical Properties of the Dataset of the Human Connectome Project with the Maximum Spanning Tree Method

Balazs Szalkai, Balint Varga, Vince Grolmusz

We analyzed correlations between more than 700 psychological-, anatomical- and connectome--properties, originated from the Human Connectome Project's (HCP) 500-subject dataset. Apa…

q-bio.NC2015

Comparative Connectomics: Mapping the Inter-Individual Variability of Connections within the Regions of the Human Brain

Csaba Kerepesi, Balázs Szalkai, Bálint Varga +1

The human braingraph, or connectome is a description of the connections of the brain: the nodes of the graph correspond to small areas of the gray matter, and two nodes are connect…