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Impact of aerobic exercise on brain structure in models of aging: Hippocampus and beyond
Umeå University, Faculty of Medicine, Department of Integrative Medical Biology (IMB). Umeå University, Faculty of Medicine, Umeå Centre for Functional Brain Imaging (UFBI).ORCID iD: 0000-0001-6169-5836
Department of Psychology, University of Pittsburgh, Sennott Square, PA, Pittsburgh, United States.
Department of Psychology, University of Pittsburgh, Sennott Square, PA, Pittsburgh, United States.
2021 (English)In: Factors Affecting Neurological Aging: Genetics, Neurology, Behavior, and Diet / [ed] Colin R. Martin, Victor R. Preedy, Rajkumar Rajendram, Elsevier, 2021, p. 403-413Chapter in book (Refereed)
Abstract [en]

Evidence from multiple scientific disciplines indicates that aerobic exercise could be effective in enhancing brain health and function in aging, and reducing the risk for cognitive impairment and dementia. Animal models have provided convincing evidence that exercise increases the expression of growth factors involved in neuroplasticity. By triggering signaling cascades in the brain, these growth factors promote proliferation, neurogenesis, neural differentiation, and cell survival in the hippocampus, and angiogenesis and/or synaptic plasticity and neural growth throughout the brain more generally. These growth factor-induced effects partly explain why exercise improves memory. Furthermore, they engender neuroprotective effects by influencing regeneration, remyelination, cell survival, and waste removal. Whereas human intervention evidence supports hippocampal plasticity, cross-sectional studies highlight effects in the cortex too, indicating that exercise-induced gross morphological changes may be regionally specific. Aerobic exercise is a promising nonpharmacological therapy to maintain brain health, although knowledge about the effects of specific exercise parameters (i.e., intensity) on different populations is still lacking.

Place, publisher, year, edition, pages
Elsevier, 2021. p. 403-413
Keywords [en]
Aerobic exercise, Aging, Angiogenesis, BDNF, Cognition, Fitness, Growth factor, Memory, Neurogenesis, Neuroplasticity
National Category
Neurosciences Neurology
Identifiers
URN: urn:nbn:se:umu:diva-192242DOI: 10.1016/B978-0-12-817990-1.00035-4Scopus ID: 2-s2.0-85123655263ISBN: 978-0-12-817990-1 (electronic)OAI: oai:DiVA.org:umu-192242DiVA, id: diva2:1664298
Available from: 2022-06-03 Created: 2022-06-03 Last updated: 2022-06-03Bibliographically approved

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Stiernman Jonasson, Lars

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