Link Between Children's Brain Development And Physical Fitness

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Main Category: Pediatrics / Children's Health
Also Included In: Sports Medicine / Fitness;  Neurology / Neuroscience
Article Date: 20 Sep 2010 - 0:00 PDT

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Researchers have found an association between physical fitness and the brain in 9- and 10-year-old children: Those who are more fit tend to have a bigger hippocampus and perform better on a test of memory than their less-fit peers.

The new study, which used magnetic resonance imaging to measure the relative size of specific structures in the brains of 49 child subjects, appears in the journal Brain Research.

"This is the first study I know of that has used MRI measures to look at differences in brain between kids who are fit and kids who aren't fit," said University of Illinois psychology professor and Beckman Institute director Art Kramer, who led the study with doctoral student Laura Chaddock and kinesiology and community health professor Charles Hillman. "Beyond that, it relates those measures of brain structure to cognition."

The study focused on the hippocampus, a structure tucked deep in the brain, because it is known to be important in learning and memory. Previous studies in older adults and in animals have shown that exercise can increase the size of the hippocampus. A bigger hippocampus is associated with better performance on spatial reasoning and other cognitive tasks.

"In animal studies, exercise has been shown to specifically affect the hippocampus, significantly increasing the growth of new neurons and cell survival, enhancing memory and learning, and increasing molecules that are involved in the plasticity of the brain," Chaddock said.

Rather than relying on second-hand reports of children's physical activity level, the researchers measured how efficiently the subjects used oxygen while running on a treadmill.

"This is the gold standard measure of fitness," Chaddock said.

The physically fit children were "much more efficient than the less-fit children at utilizing oxygen," Kramer said.

When they analyzed the MRI data, the researchers found that the physically fit children tended to have bigger hippocampal volume - about 12 percent bigger relative to total brain size - than their out-of-shape peers.

The children who were in better physical condition also did better on tests of relational memory - the ability to remember and integrate various types of information - than their less-fit peers.

"Higher fit children had higher performance on the relational memory task, higher fit children had larger hippocampal volumes, and in general, children with larger hippocampal volumes had better relational memory," Chaddock said.

Further analyses indicated that a bigger hippocampus boosted performance on the relational memory task.

"If you remove hippocampal volume from the equation," Chaddock said, "the relationship between fitness and memory decreases."

The new findings suggest that interventions to increase childhood physical activity could have an important effect on brain development, Kramer said.

"We knew that experience and environmental factors and socioeconomic status all impact brain development," he said.

"If you get some lousy genes from your parents, you can't really fix that, and it's not easy to do something about your economic status. But here's something that we can do something about," Kramer said.

Source: University of Illinois at Urbana-Champaign

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Visitor Opinions (latest shown first)

Broaden understanding

posted by Per Ciwesson on 18 Nov 2010 at 1:27 am

Hi, by experience also by looking at teenagers, it is clear that most of the ones practicing for example swimming, cross country skiing has a higher grade of excellent results in their studies, despite the large amount of time they spend on athletic activities. It seems there is an ability to push the limits to quite extreme balance between athletics and studies, spending the majority of time on the athletic exercises. I have two questions. Are there any studies showing where the limits are reached before the positive effects turns into negative? Are there any specific studies done on children/ teenagers with syndromes like Aspergers, ADHD or Tourettes?

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