
@article{ref1,
title="Principles of recovery from traumatic brain injury: Reorganization of functional networks",
journal="NeuroImage",
year="2011",
author="Castellanos, Nazareth P. and Leyva, Inmaculada and Buldú, Javier M. and Bajo, Ricardo and Paúl, Nuria and Cuesta, Pablo and Ordóñez, Victoria E. and Pascua, Cristina L. and Boccaletti, Stefano and Maestú, Fernando and Del-Pozo, Francisco",
volume="55",
number="3",
pages="1189-1199",
abstract="Recovery after brain injury is an excellent platform to study the mechanism underlying brain plasticity, the reorganization of networks. Do complex network measures capture the physiological and cognitive alteration occurred after a traumatic brain injury and its recovery? Patients underwent resting-state MEG recording following injury and after neurorehabilitation, as well as control subjects. Next, network measures such as network strength, path length, efficiency, clustering and energetic cost were calculated. We show that these parameters restore, in many cases, to control ones after recovery, specifically in delta and alpha bands, and we design a model that gives some hints about how the functional networks modify their weights in the recovery process. Positive correlations between complex network measures and some of the general index of the WAIS-III test were found: changes in delta-based path-length and those in Performance IQ score, and alpha-based normalized global efficiency and Perceptual Organization Index. These results indicate that: 1) the principle of recovery depends on the spectral band, 2) the structure of the functional networks evolve in parallel to brain recovery with correlations with neuropsychological scales, and 3) energetic cost reveals an optimal principle of recovery.<p /> <p>Language: en</p>",
language="en",
issn="1053-8119",
doi="10.1016/j.neuroimage.2010.12.046",
url="http://dx.doi.org/10.1016/j.neuroimage.2010.12.046"
}