Literature DB >> 29775407

Effect of healthy aging and sex on middle cerebral artery blood velocity dynamics during moderate-intensity exercise.

Jaimie L Ward1, Jesse C Craig2, Yumei Liu1, Eric D Vidoni3, Rebecca Maletsky4, David C Poole2, Sandra A Billinger1.   

Abstract

Blood velocity measured in the middle cerebral artery (MCAV) increases with finite kinetics during moderate-intensity exercise, and the amplitude and dynamics of the response provide invaluable insights into the controlling mechanisms. The MCAV response after exercise onset is well fit to an exponential model in young individuals but remains to be characterized in their older counterparts. The responsiveness of vasomotor control degrades with advancing age, especially in skeletal muscle. We tested the hypothesis that older subjects would evince a slower and reduced MCAV response to exercise. Twenty-nine healthy young (25 ± 1 yr old) and older (69 ± 1 yr old) adults each performed a rapid transition from rest to moderate-intensity exercise on a recumbent stepper. Resting MCAV was lower in older than young subjects (47 ± 2 vs. 64 ± 3 cm/s, P < 0.001), and amplitude from rest to steady-state exercise was lower in older than young subjects (12 ± 2 vs. 18 ± 3 cm/s, P = 0.04), even after subjects were matched for work rate. As hypothesized, the time constant was significantly longer (slower) in the older than young subjects (51 ± 10 vs. 31 ± 4 s, P = 0.03), driven primarily by older women. Neither age-related differences in fitness, end-tidal CO2, nor blood pressure could account for this effect. Thus, MCAV kinetic analyses revealed a marked impairment in the cerebrovascular response to exercise in older individuals. Kinetic analysis offers a novel approach to evaluate the efficacy of therapeutic interventions for improving cerebrovascular function in elderly and patient populations. NEW & NOTEWORTHY Understanding the dynamic cerebrovascular response to exercise has provided insights into sex-related cerebrovascular control mechanisms throughout the aging process. We report novel differences in the kinetics response of cerebrovascular blood velocity after the onset of moderate-intensity exercise. The exponential increase in brain blood flow from rest to exercise revealed that 1) the kinetics profile of the older group was blunted compared with their young counterparts and 2) the older women demonstrated a slowed response.

Entities:  

Keywords:  aging; cerebral blood flow; dynamic blood flow response; sex differences

Mesh:

Year:  2018        PMID: 29775407      PMCID: PMC6172645          DOI: 10.1152/ajpheart.00129.2018

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  81 in total

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Review 2.  Assessment of flow-mediated dilation in humans: a methodological and physiological guideline.

Authors:  Dick H J Thijssen; Mark A Black; Kyra E Pyke; Jaume Padilla; Greg Atkinson; Ryan A Harris; Beth Parker; Michael E Widlansky; Michael E Tschakovsky; Daniel J Green
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3.  Regulation of tissue factor expression in human microvascular endothelial cells by nitric oxide.

Authors:  Y Yang; J Loscalzo
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4.  CrossTalk opposing view: The middle cerebral artery diameter does not change during alterations in arterial blood gases and blood pressure.

Authors:  R Matthew Brothers; Rong Zhang
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5.  Dynamics of middle cerebral artery blood flow velocity during moderate-intensity exercise.

Authors:  Sandra A Billinger; Jesse C Craig; Sarah J Kwapiszeski; Jason-Flor V Sisante; Eric D Vidoni; Rebecca Maletsky; David C Poole
Journal:  J Appl Physiol (1985)       Date:  2017-03-09

6.  Dynamic exercise enhances regional cerebral artery mean flow velocity.

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Journal:  J Appl Physiol (1985)       Date:  1995-01

7.  Cerebral arterial diameters during changes in blood pressure and carbon dioxide during craniotomy.

Authors:  C A Giller; G Bowman; H Dyer; L Mootz; W Krippner
Journal:  Neurosurgery       Date:  1993-05       Impact factor: 4.654

8.  Relationship of middle cerebral artery blood flow velocity to intensity during dynamic exercise in normal subjects.

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Review 9.  Topology and hemodynamics of the cortical cerebrovascular system.

Authors:  Sven Hirsch; Johannes Reichold; Matthias Schneider; Gábor Székely; Bruno Weber
Journal:  J Cereb Blood Flow Metab       Date:  2012-04-04       Impact factor: 6.200

Review 10.  Why is the neural control of cerebral autoregulation so controversial?

Authors:  Philip N Ainslie; Patrice Brassard
Journal:  F1000Prime Rep       Date:  2014-03-03
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  20 in total

1.  Exercise intensity and middle cerebral artery dynamics in humans.

Authors:  Emily Witte; Yumei Liu; Jaimie L Ward; Katie S Kempf; Alicen Whitaker; Eric D Vidoni; Jesse C Craig; David C Poole; Sandra A Billinger
Journal:  Respir Physiol Neurobiol       Date:  2019-01-30       Impact factor: 1.931

2.  The Effect of Stroke on Middle Cerebral Artery Blood Flow Velocity Dynamics During Exercise.

Authors:  Katie S Kempf; Alicen A Whitaker; Yumei Lui; Emily Witte; Sophy J Perdomo; Jaimie L Ward; Sarah Eickmeyer; Luke Ledbetter; Michael Abraham; Sandra A Billinger
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3.  Cerebrovascular response to an acute bout of low-volume high-intensity interval exercise and recovery in young healthy adults.

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5.  Secondary Analysis of Walking Activities during the Acute Stroke Hospital Stay and Cerebrovascular Health.

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6.  Influence of cardiac output response to the onset of exercise on cerebral blood flow.

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Journal:  Eur J Appl Physiol       Date:  2022-06-04       Impact factor: 3.346

7.  TCD Cerebral Hemodynamic Changes during Moderate-Intensity Exercise in Older Adults.

Authors:  Mohammed R Alwatban; Yumei Liu; Sophy J Perdomo; Jaimie L Ward; Eric D Vidoni; Jeffrey M Burns; Sandra A Billinger
Journal:  J Neuroimaging       Date:  2019-11-21       Impact factor: 2.486

8.  Apolipoprotein E4 Moderates the Association Between Vascular Risk Factors and Brain Pathology.

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9.  Effects of age and sex on middle cerebral artery blood velocity and flow pulsatility index across the adult lifespan.

Authors:  Mohammed R Alwatban; Stacey E Aaron; Carolyn S Kaufman; Jill N Barnes; Patrice Brassard; Jaimie L Ward; Kathleen B Miller; Anna J Howery; Lawrence Labrecque; Sandra A Billinger
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10.  Sex Differences in the Oxygenation of the Left and Right Prefrontal Cortex during Moderate-Intensity Exercise.

Authors:  Yuta Inagaki; Reo Sato; Takashi Uchiyama; Sho Kojima; Shinichiro Morishita; Weixiang Qin; Atsuhiro Tsubaki
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