Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
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Mechanisms of Attenuation of Pulmonary V'O2 Slow Component in Humans after Prolonged Endurance Training.Each-step activation of oxidative phosphorylation is necessary to explain muscle metabolic kinetic responses to exercise and recovery in humans.Oxygen Uptake Kinetics Is Slower in Swimming Than Arm Cranking and Cycling during Heavy Intensity.A comparison of methods to estimate anaerobic capacity: Accumulated oxygen deficit and W' during constant and all-out work-rate profiles.Lactate recovery kinetics in response to high-intensity exercises.Blood lactate accumulation decreases during the slow component of oxygen uptake without a decrease in muscular efficiency.The slow component of pulmonary O2 uptake accompanies peripheral muscle fatigue during high-intensity exercise.Regulation of oxidative phosphorylation is different in electrically- and cortically-stimulated skeletal muscle.Muscle V˙O2-power output nonlinearity in constant-power, step-incremental, and ramp-incremental exercise: magnitude and underlying mechanisms
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Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
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2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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name
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@en
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@nl
type
label
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@en
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@nl
prefLabel
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@en
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@nl
P2860
P1476
Possible mechanisms underlying slow component of V̇O2 on-kinetics in skeletal muscle.
@en
P2093
Jerzy A Zoladz
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P304
P356
10.1152/JAPPLPHYSIOL.00027.2015
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P577
2015-03-12T00:00:00Z