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Relative Neuroadaptive Effect of Resistance Training along the Descending Neuroaxis in Older Adults
Univ Thessaly, Dept Phys Educ & Sport Sci, ErgoMech Lab, Trikala 42100, Greece..
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Biomedical Engineering and Health Systems, Ergonomics. Univ Thessaly, Dept Phys Educ & Sport Sci, ErgoMech Lab, Trikala 42100, Greece..ORCID iD: 0000-0001-5005-9957
Vrije Univ Brussel, Fac Phys Educ & Physiotherapy, Dept Human Physiol & Rehabil Sci, Pain Mot Res Grp, B-1050 Brussels, Belgium..
Univ Thessaly, Dept Phys Educ & Sport Sci, ErgoMech Lab, Trikala 42100, Greece.;Aristotle Univ Thessaloniki, Ctr Orthopaed & Regenerat Med, CORE CIRI, Thessaloniki 54124, Greece.;Karolinska Inst, Dept Mol Med & Surg, SE-17176 Solna, Sweden..ORCID iD: 0000-0002-6626-5795
2023 (English)In: Brain Sciences, E-ISSN 2076-3425, Vol. 13, no 4, article id 679Article, review/survey (Refereed) Published
Abstract [en]

Age-related decline in voluntary force production represents one of the main contributors to the onset of physical disability in older adults and is argued to stem from adverse musculoskeletal alterations and changes along the descending neuroaxis. The neural contribution of the above is possibly indicated by disproportionate losses in voluntary activation (VA) compared to muscle mass. For young adults, resistance training (RT) induces muscular and neural adaptations over several levels of the central nervous system, contributing to increased physical performance. However, less is known about the relative neuroadaptive contribution of RT in older adults. The aim of this review was to outline the current state of the literature regarding where and to what extent neural adaptations occur along the descending neuroaxis in response to RT in older adults. We performed a literature search in PubMed, Google Scholar and Scopus. A total of 63 articles met the primary inclusion criteria and following quality analysis (PEDro) 23 articles were included. Overall, neuroadaptations in older adults seemingly favor top-down adaptations, where the preceding changes of neural drive from superior levels affect the neural output of lower levels, following RT. Moreover, older adults appear more predisposed to neural rather than morphological adaptations compared to young adults, a potentially important implication for the improved maintenance of neuromuscular function during aging.

Place, publisher, year, edition, pages
MDPI AG , 2023. Vol. 13, no 4, article id 679
Keywords [en]
aging, neural adaptations, resistance training, physical function
National Category
Neurosciences
Identifiers
URN: urn:nbn:se:kth:diva-327195DOI: 10.3390/brainsci13040679ISI: 000977482200001PubMedID: 37190644Scopus ID: 2-s2.0-85156245687OAI: oai:DiVA.org:kth-327195DiVA, id: diva2:1758468
Note

QC 20230523

Available from: 2023-05-23 Created: 2023-05-23 Last updated: 2024-07-04Bibliographically approved

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Elcadi, Guilherme H.

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