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Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth

Neurovascular coupling (NVC) is mediated via nitric oxide signaling, which is independently influenced by sex hormones and exercise training. Whether exercise training differentially modifies NVC pre- versus postpuberty, where levels of circulating sex hormones will differ greatly within and between...

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Autores principales: Talbot, Jack S., Perkins, Dean R., Dawkins, Tony G., Douglas, Andrew J. M., Griffiths, Thomas D., Richards, Cory T., Owen, Kerry, Lord, Rachel N., Pugh, Christopher J. A., Oliver, Jon L., Lloyd, Rhodri S., Ainslie, Philip N., McManus, Ali M., Stembridge, Mike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10538977/
https://www.ncbi.nlm.nih.gov/pubmed/37450291
http://dx.doi.org/10.1152/ajpheart.00302.2023
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author Talbot, Jack S.
Perkins, Dean R.
Dawkins, Tony G.
Douglas, Andrew J. M.
Griffiths, Thomas D.
Richards, Cory T.
Owen, Kerry
Lord, Rachel N.
Pugh, Christopher J. A.
Oliver, Jon L.
Lloyd, Rhodri S.
Ainslie, Philip N.
McManus, Ali M.
Stembridge, Mike
author_facet Talbot, Jack S.
Perkins, Dean R.
Dawkins, Tony G.
Douglas, Andrew J. M.
Griffiths, Thomas D.
Richards, Cory T.
Owen, Kerry
Lord, Rachel N.
Pugh, Christopher J. A.
Oliver, Jon L.
Lloyd, Rhodri S.
Ainslie, Philip N.
McManus, Ali M.
Stembridge, Mike
author_sort Talbot, Jack S.
collection PubMed
description Neurovascular coupling (NVC) is mediated via nitric oxide signaling, which is independently influenced by sex hormones and exercise training. Whether exercise training differentially modifies NVC pre- versus postpuberty, where levels of circulating sex hormones will differ greatly within and between sexes, remains to be determined. Therefore, we investigated the influence of exercise training status on resting intracranial hemodynamics and NVC at different stages of maturation. Posterior and middle cerebral artery velocities (PCA(v) and MCA(v)) and pulsatility index (PCA(PI) and MCA(PI)) were assessed via transcranial Doppler ultrasound at rest and during visual NVC stimuli. N = 121 exercise-trained (males, n = 32; females, n = 32) and untrained (males, n = 28; females, n = 29) participants were characterized as pre (males, n = 33; females, n = 29)- or post (males, n = 27; females, n = 32)-peak height velocity (PHV). Exercise-trained youth demonstrated higher resting MCA(v) (P = 0.010). Maturity and training status did not affect the ΔPCA(v) and ΔMCA(v) during NVC. However, pre-PHV untrained males (19.4 ± 13.5 vs. 6.8 ± 6.0%; P ≤ 0.001) and females (19.3 ± 10.8 vs. 6.4 ± 7.1%; P ≤ 0.001) had a higher ΔPCA(PI) during NVC than post-PHV untrained counterparts, whereas the ΔPCA(PI) was similar in pre- and post-PHV trained youth. Pre-PHV untrained males (19.4 ± 13.5 vs. 7.9 ± 6.0%; P ≤ 0.001) and females (19.3 ± 10.8 vs. 11.1 ± 7.3%; P = 0.016) also had a larger ΔPCA(PI) than their pre-PHV trained counterparts during NVC, but the ΔPCA(PI) was similar in trained and untrained post-PHV youth. Collectively, our data indicate that exercise training elevates regional cerebral blood velocities during youth, but training-mediated adaptations in NVC are only attainable during early stages of adolescence. Therefore, childhood provides a unique opportunity for exercise-mediated adaptations in NVC. NEW & NOTEWORTHY We report that the change in cerebral blood velocity during a neurovascular coupling task (NVC) is similar in pre- and postpubertal youth, regardless of exercise-training status. However, prepubertal untrained youth demonstrated a greater increase in cerebral blood pulsatility during the NVC task when compared with their trained counterparts. Our findings highlight that childhood represents a unique opportunity for exercise-mediated adaptations in cerebrovascular hemodynamics during NVC, which may confer long-term benefits in cerebrovascular function.
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spelling pubmed-105389772023-09-29 Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth Talbot, Jack S. Perkins, Dean R. Dawkins, Tony G. Douglas, Andrew J. M. Griffiths, Thomas D. Richards, Cory T. Owen, Kerry Lord, Rachel N. Pugh, Christopher J. A. Oliver, Jon L. Lloyd, Rhodri S. Ainslie, Philip N. McManus, Ali M. Stembridge, Mike Am J Physiol Heart Circ Physiol Research Article Neurovascular coupling (NVC) is mediated via nitric oxide signaling, which is independently influenced by sex hormones and exercise training. Whether exercise training differentially modifies NVC pre- versus postpuberty, where levels of circulating sex hormones will differ greatly within and between sexes, remains to be determined. Therefore, we investigated the influence of exercise training status on resting intracranial hemodynamics and NVC at different stages of maturation. Posterior and middle cerebral artery velocities (PCA(v) and MCA(v)) and pulsatility index (PCA(PI) and MCA(PI)) were assessed via transcranial Doppler ultrasound at rest and during visual NVC stimuli. N = 121 exercise-trained (males, n = 32; females, n = 32) and untrained (males, n = 28; females, n = 29) participants were characterized as pre (males, n = 33; females, n = 29)- or post (males, n = 27; females, n = 32)-peak height velocity (PHV). Exercise-trained youth demonstrated higher resting MCA(v) (P = 0.010). Maturity and training status did not affect the ΔPCA(v) and ΔMCA(v) during NVC. However, pre-PHV untrained males (19.4 ± 13.5 vs. 6.8 ± 6.0%; P ≤ 0.001) and females (19.3 ± 10.8 vs. 6.4 ± 7.1%; P ≤ 0.001) had a higher ΔPCA(PI) during NVC than post-PHV untrained counterparts, whereas the ΔPCA(PI) was similar in pre- and post-PHV trained youth. Pre-PHV untrained males (19.4 ± 13.5 vs. 7.9 ± 6.0%; P ≤ 0.001) and females (19.3 ± 10.8 vs. 11.1 ± 7.3%; P = 0.016) also had a larger ΔPCA(PI) than their pre-PHV trained counterparts during NVC, but the ΔPCA(PI) was similar in trained and untrained post-PHV youth. Collectively, our data indicate that exercise training elevates regional cerebral blood velocities during youth, but training-mediated adaptations in NVC are only attainable during early stages of adolescence. Therefore, childhood provides a unique opportunity for exercise-mediated adaptations in NVC. NEW & NOTEWORTHY We report that the change in cerebral blood velocity during a neurovascular coupling task (NVC) is similar in pre- and postpubertal youth, regardless of exercise-training status. However, prepubertal untrained youth demonstrated a greater increase in cerebral blood pulsatility during the NVC task when compared with their trained counterparts. Our findings highlight that childhood represents a unique opportunity for exercise-mediated adaptations in cerebrovascular hemodynamics during NVC, which may confer long-term benefits in cerebrovascular function. American Physiological Society 2023-09-01 2023-07-14 /pmc/articles/PMC10538977/ /pubmed/37450291 http://dx.doi.org/10.1152/ajpheart.00302.2023 Text en Copyright © 2023 The Authors. https://creativecommons.org/licenses/by/4.0/Licensed under Creative Commons Attribution CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/) . Published by the American Physiological Society.
spellingShingle Research Article
Talbot, Jack S.
Perkins, Dean R.
Dawkins, Tony G.
Douglas, Andrew J. M.
Griffiths, Thomas D.
Richards, Cory T.
Owen, Kerry
Lord, Rachel N.
Pugh, Christopher J. A.
Oliver, Jon L.
Lloyd, Rhodri S.
Ainslie, Philip N.
McManus, Ali M.
Stembridge, Mike
Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title_full Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title_fullStr Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title_full_unstemmed Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title_short Neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
title_sort neurovascular coupling and cerebrovascular hemodynamics are modified by exercise training status at different stages of maturation during youth
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10538977/
https://www.ncbi.nlm.nih.gov/pubmed/37450291
http://dx.doi.org/10.1152/ajpheart.00302.2023
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