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Exercise-induced improvement in cognitive performance after fimbria-fornix transection depends on the timing of exercise administration
Highlights • Improved post-injury place learning after a 7 day running regimen. • Varying effects on performance with exercise initiation 1, 8 or 21 days post-injury. • Delayed voluntary exercise resulted in support of posttraumatic cognitive recovery. • Less efficient effect on functional recovery...
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Published in: | Brain research bulletin 2016-07, Vol.125, p.117-126 |
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container_title | Brain research bulletin |
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creator | Gram, Marie Gajhede Wogensen, Elise Moseholm, Kristine Mogensen, Jesper Malá, Hana |
description | Highlights • Improved post-injury place learning after a 7 day running regimen. • Varying effects on performance with exercise initiation 1, 8 or 21 days post-injury. • Delayed voluntary exercise resulted in support of posttraumatic cognitive recovery. • Less efficient effect on functional recovery with early exercise initiation. • Timing of voluntary exercise appears to determine posttraumatic functional outcome |
doi_str_mv | 10.1016/j.brainresbull.2016.06.012 |
format | article |
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ispartof | Brain research bulletin, 2016-07, Vol.125, p.117-126 |
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source | Elsevier |
subjects | Analysis of Variance Animals Brain Injuries - complications Brain Injuries - pathology Brain injury Cognition Disorders - etiology Cognition Disorders - rehabilitation Cognitive recovery Exercise Fornix, Brain - injuries Male Maze Learning - physiology Motor Activity - physiology Neurology Physical Conditioning, Animal - methods Place learning Rat Rats Rats, Wistar Time Factors Timing |
title | Exercise-induced improvement in cognitive performance after fimbria-fornix transection depends on the timing of exercise administration |
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