Changes in resting-state functionally connected parietofrontal networks after videogame practice.

Abstract:

:Neuroimaging studies provide evidence for organized intrinsic activity under task-free conditions. This activity serves functionally relevant brain systems supporting cognition. Here, we analyze changes in resting-state functional connectivity after videogame practice applying a test-retest design. Twenty young females were selected from a group of 100 participants tested on four standardized cognitive ability tests. The practice and control groups were carefully matched on their ability scores. The practice group played during two sessions per week across 4 weeks (16 h total) under strict supervision in the laboratory, showing systematic performance improvements in the game. A group independent component analysis (GICA) applying multisession temporal concatenation on test-retest resting-state fMRI, jointly with a dual-regression approach, was computed. Supporting the main hypothesis, the key finding reveals an increased correlated activity during rest in certain predefined resting state networks (albeit using uncorrected statistics) attributable to practice with the cognitively demanding tasks of the videogame. Observed changes were mainly concentrated on parietofrontal networks involved in heterogeneous cognitive functions.

journal_name

Hum Brain Mapp

journal_title

Human brain mapping

authors

Martínez K,Solana AB,Burgaleta M,Hernández-Tamames JA,Alvarez-Linera J,Román FJ,Alfayate E,Privado J,Escorial S,Quiroga MA,Karama S,Bellec P,Colom R

doi

10.1002/hbm.22129

subject

Has Abstract

pub_date

2013-12-01 00:00:00

pages

3143-57

issue

12

eissn

1065-9471

issn

1097-0193

journal_volume

34

pub_type

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