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Junichi Suzuki

Showing results (1-10 of 85) with videos related to

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Experimental Physiology|November 21, 2018
Effects of intermittent hyperbaric exposure on endurance and interval exercise performance in well-trained miceJunichi Suzuki
The Japanese Journal of Physiology|January 21, 2003
Microvascular remodelling after endurance training with Co2+ treatment in the rat diaphragm and hind-leg musclesJunichi Suzuki
Physiological Reports|July 23, 2019
Effects of exercise training with short-duration intermittent hypoxia on endurance performance and muscle metabolism in well-trained miceJunichi Suzuki
Physiological Reports|December 14, 2022
Endurance exercise under short-duration intermittent hypoxia promotes endurance performance via improving muscle metabolic properties in miceJunichi Suzuki
Physiological Reports|April 22, 2025
Exercise performance in well-trained male mice is promoted by intermittent hyperoxia via improving metabolic properties and capillary profilesJunichi Suzuki
Physiological Reports|August 6, 2017
Endurance performance is enhanced by intermittent hyperbaric exposure via up-regulation of proteins involved in mitochondrial biogenesis in miceJunichi Suzuki
Physiological Reports|June 19, 2024
Effects of exercise training with intermittent hyperoxic intervention on endurance performance and muscle metabolic properties in male miceJunichi Suzuki
Physiological Reports|April 6, 2016
Short-duration intermittent hypoxia enhances endurance capacity by improving muscle fatty acid metabolism in miceJunichi Suzuki
Physiological Reports|March 2, 2021
Effects of hyperbaric environment on endurance and metabolism are exposure time-dependent in well-trained miceJunichi Suzuki
The Journal of Physiological Sciences : JPS|June 20, 2006
L-arginine supplementation causes additional effects on exercise-induced angiogenesis and VEGF expression in the heart and hind-leg muscles of middle-aged ratsJunichi Suzuki
Pageof 9

Showing results (1-10 of 85) with videos related to

Sort By:
Pageof 9
Experimental Physiology|November 21, 2018
Effects of intermittent hyperbaric exposure on endurance and interval exercise performance in well-trained miceJunichi Suzuki
The Japanese Journal of Physiology|January 21, 2003
Microvascular remodelling after endurance training with Co2+ treatment in the rat diaphragm and hind-leg musclesJunichi Suzuki
Physiological Reports|July 23, 2019
Effects of exercise training with short-duration intermittent hypoxia on endurance performance and muscle metabolism in well-trained miceJunichi Suzuki
Physiological Reports|December 14, 2022
Endurance exercise under short-duration intermittent hypoxia promotes endurance performance via improving muscle metabolic properties in miceJunichi Suzuki
Physiological Reports|April 22, 2025
Exercise performance in well-trained male mice is promoted by intermittent hyperoxia via improving metabolic properties and capillary profilesJunichi Suzuki
Physiological Reports|August 6, 2017
Endurance performance is enhanced by intermittent hyperbaric exposure via up-regulation of proteins involved in mitochondrial biogenesis in miceJunichi Suzuki
Physiological Reports|June 19, 2024
Effects of exercise training with intermittent hyperoxic intervention on endurance performance and muscle metabolic properties in male miceJunichi Suzuki
Physiological Reports|April 6, 2016
Short-duration intermittent hypoxia enhances endurance capacity by improving muscle fatty acid metabolism in miceJunichi Suzuki
Physiological Reports|March 2, 2021
Effects of hyperbaric environment on endurance and metabolism are exposure time-dependent in well-trained miceJunichi Suzuki
The Journal of Physiological Sciences : JPS|June 20, 2006
L-arginine supplementation causes additional effects on exercise-induced angiogenesis and VEGF expression in the heart and hind-leg muscles of middle-aged ratsJunichi Suzuki
Pageof 9