HIT
Behavioral3-minute intervals at 40% and 80%VO 2max
NCT Number: NCT02802462
Exercise training improves endothelium-dependent vasodilation, whereas hypoxic stress causes vascular endothelial dysfunction. Monocyte- derived endothelial progenitor cells (Mon-EPCs) contribute to vascular repair process by differentiating into endothelial cells. This study investigates how high-intensity interval (HIT) and moderate intensity-continuous (MCT) exercise training affect circulating Mon-EPC levels and EPC functionality under hypoxic condition. Sixty healthy sedentary males were randomized to engage either HIT (3-minute intervals at 40% and 80%VO2max , n=20) or MCT (sustained 60%VO2max , n=20) for 30 minutes/day, 5 days/week for 6 weeks, or to a control group that did not received exercise intervention (n=20). Mon-EPC characteristics and EPC functionality under hypoxic exercise (HE, 100W under 12%O 2 ) were determined before and after various interventions.
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Notify Me20 year–28 year
Male
Interventional
Not applicable
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
3-minute intervals at 40% and 80%VO 2max
sustained 60%VO 2max
Time frame: 6 weeks
by flow cytometry before and after rehabilitation circulating progenitor cells conten before and after hypoxic exercise test
Time frame: 6 weeks
Time frame: 6 weeks
evaluate cardiac hemodynamic response to exercise by noninvasive continuous cardiac output monitoring system
Time frame: 6 weeks
Two pairs of near infrared probes were attached to each subject to monitor the absorption of near infrared light across left frontal cortex during graded exercise test
Time frame: 6 weeks
Two pairs of near infrared probes were attached to each subject to monitor the absorption of near infrared light across left vastus lateralis muscle during graded exercise test
Chang Gung Memorial Hospital
Other
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