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The Effects of Physical Fitness and Body Composition on Oxygen Consumption and Heart Rate Recovery After High-Intensity Exercise
(Georg Thieme Verlag KgStuttgartAlemanha, 2012)
Increased reliance on carbohydrates for aerobic exercise in highland andean leaf-eared mice, but not in highland lima leaf-eared mice
(MDPI, 2021)
Exercise is an important performance trait in mammals and variation in aerobic capacity and/or substrate allocation during submaximal exercise may be important for survival at high altitude. Comparisons between lowland and ...
Upward Shift and Steepening of the Blood Pressure Response to Exercise in Hypertensive Subjects at High Altitude
(Wiley, 2018)
BACKGROUND: Acute exposure to high-altitude hypobaric hypoxia induces a blood pressure rise in hypertensive humans, both at rest and during exercise. It is unclear whether this phenomenon reflects specific blood pressure ...
The relationship between body temperature, heart rate, breathing rate, and rate of oxygen consumption, in the tegu lizard (Tupinambis merianae) at various levels of activity
(Springer, 2015-12-01)
The present study determined whether EEG and/or EMG recordings could be used to reliably define activity states in the Brazilian black and white tegu lizard (Tupinambis merianae) and then examined the interactive effects ...
Sildenafil improves microvascular O-2 delivery-to-utilization matching and accelerates exercise O-2 uptake kinetics in chronic heart failure
(Amer Physiological Soc, 2012-12-01)
Nitric oxide (NO) can temporally and spatially match microvascular oxygen (O-2) delivery (QO(2mv)) to O-2 uptake (VO2) in the skeletal muscle, a crucial adjustment-to-exercise tolerance that is impaired in chronic heart ...
Capsaicin Supplementation during High-intensity Continuous Exercise: A Double-blind Study
(2020-12-01)
To investigate the effect of acute capsaicin (CAP) supplementation on time to exhaustion, physiological responses and energy systems contribution during continuous high-intensity exercise session in runners. Fifteen ...
Methylmalonate inhibits succinate-supported oxygen consumption by interfering with mitochondrial succinate uptake
(SpringerDordrechtHolanda, 2008)