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- 7Sex differences
- 4Sympatholysis
- 4Vasoconstriction
- 3Exercise
- 3Exercise training
- 3Sympathetic nervous system
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Author / Creator / Contributor
- 1Bartlett, Nathan T
- 1Collison, Breanne
- 1Cooper, Ian R
- 1Frieser, Emma CG
- 1Just, Timothy P
- 1Kruger, Calvin P
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Departments
- 3Physical Education and Recreation
- 2Centre for Neuroscience
- 2Department of Psychology
- 2Faculty of Kinesiology, Sport, and Recreation
- 1Department of Educational Administration
- 1Department of Human Ecology
Supervisors
- 1DeLorey, Darren (Physical Education and Recreation)
- 1DeLorey, Darren Faculty of Kinesiology, Sport, and Recreation
- 1DeLorey, Darren S (Physical Education and Recreation)
- 1DeLorey, Darren S. (Physical Education and Recreation)
- 1Dixon, Roger (Psychology)
- 1Dr. Darren DeLorey (Faculty of Physical Education and Recreation)
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Spring 2022
Background: Carbon monoxide alters cardiovascular function through its actions as a signaling molecule and by limiting oxygen delivery in the blood, favouring pro-dilatory and anti-constrictor effects within the vasculature. The impacts of mild carbon monoxide exposure on vascular responses to...
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Βeta-adrenergic receptors and opposition of evoked sympathetic vasoconstriction: Effects of sex and exercise training
DownloadFall 2016
Stimulation of the sympathetic nervous system evokes the release of neurotransmitters and produces vasoconstriction that is primarily mediated by the binding of norepinephrine (NE) to alpha-adrenergic receptors. However, NE may also bind to beta (β)-adrenergic receptors and produce vasodilation...
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