How to Direct the Edges of the Connectomes: Dynamics of the Consensus Connectomes and the Development of the Connections in the Human Brain
arXiv:1509.05703 · doi:10.1371/journal.pone.0158680
Abstract
The human connectome is the object of an intensive research today. In these graphs, the vertices correspond to the small areas of the gray matter, and two vertices are connected by an edge, if a diffusion-MRI based workflow finds connections between those areas. One main question of the field is discovering the directions of the edges. In a previous work we have reported the construction of the Budapest Reference Connectome Server http://connectome.pitgroup.org from the data recorded in the Human Connectome Project of the NIH. After the server had been published, we recognized a surprising and unforeseen property of it: The server can generate the braingraph of connections that are present in at least graphs out of the 418, for any value of . When the value of is changed from through 1 by moving a slider at the webserver from right to left, more and more edges appear in the consensus graph. The astonishing observation is that the appearance of the new edges is not random: it is similar to a growing tree. We hypothesize that this movement of the slider in the webserver may copy the development of the connections in the human brain in the following sense: the connections that are present in all subjects are the oldest ones, and those that are present in a decreasing fraction of subjects are gradually the newer connections in the individual brain development. An animation on the phenomenon is available at https://youtu.be/EnWwIf_HNjw. Based on this hypothesis, we can assign directions to the edges of the connectome as follows: Let denote the consensus connectome where each edge is present in at least graphs. Suppose that vertex is isolated in , and becomes connected to a vertex in , where was connected to other vertices already in . Then we direct this edge from to .
References in corpus (1)
Cited by in corpus (5)
- The Frequent Complete Subgraphs in the Human Connectome
- Parameterizable Consensus Connectomes from the Human Connectome Project: The Budapest Reference Connectome Server v3.0
- The braingraph.org Database with more than 1000 Robust Human Structural Connectomes in Five Resolutions
- The Robustness and the Doubly-Preferential Attachment Simulation of the Consensus Connectome Dynamics of the Human Brain
- The braingraph.org Database of High Resolution Structural Connectomes and the Brain Graph Tools