Research shows that video game players have stronger brain activity and decision-making ability From Georgia State University

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According to a study recently published in neuroimage: reports by researchers at Georgia State University, compared with people who do not play video games, people who often play video games show superior sensory motor decision-making skills and increased activity in key areas of the brain. According to the authors who used functional magnetic resonance imaging (fMRI) in the study, these findings suggest that video games can be a useful tool for perceptual decision-making training.

Mukesh dhamala, chief researcher and associate professor of the Department of physics and astronomy at Georgia State University and the Institute of Neuroscience at the University, said: “most of our young people play video games for more than three hours a week, but the beneficial effects on decision-making ability and brain are not completely clear.”

“Our work provides some answers in this regard,” dhamala said. “Once the relevant brain networks are identified, video game play can be effectively used for training – for example, decision efficiency training and therapeutic interventions.”

Dhamala, a consultant to Tim Jordan, the main author of the paper, provided a personal example to illustrate that this research can provide a reference for using video games to train the brain.

Jordan, who received his doctorate in physics and astronomy from Georgia State University in 2021, had weak eyesight in one eye when he was a child. When he was about five years old, as part of a study, he was asked to cover his good eyes and play video games to strengthen the vision of his weak eyes. Jordan believes that video game training has helped him from legal blindness in one eye to building a strong visual processing ability, so that he can finally play lacrosse and paintball shooting. He is now a postdoctoral researcher at the University of California, Los Angeles (UCLA).

The Georgia study involved 47 college age participants, 28 of whom were classified as regular video game players and 19 as non game players.

The subjects lay in an MRI machine with a mirror, and they saw a prompt, followed by a moving point display. Participants were asked to press a button with their right or left hand to indicate the direction of movement of the point. If there was no directional movement, no button was pressed.

According to the research results, people who play video games react faster and more accurately. Analysis of the resulting fMRI brain scans found that these differences were related to increased activity in some parts of the brain.

“These results suggest that playing video games may enhance several sub processes of sensation, perception and action mapping to improve decision-making ability. These findings begin to clarify how playing video games changes the brain to improve task performance and their potential impact on increasing specific task activities,” the authors write

There is no trade-off between speed and accuracy of response – researchers point out that video game players are better at both measures.

“This lack of speed accuracy tradeoff shows that playing video games is a good candidate for cognitive training because it is related to decision-making,” the authors write

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