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Sunghwan Kyun

Showing results (1-10 of 16) with videos related to

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Metabolites|August 26, 2021
Acute Administration of Exogenous Lactate Increases Carbohydrate Metabolism during Exercise in MiceInkwon Jang, Jisu Kim, Sunghwan Kyun, et al.
International Journal of Environmental Research and Public Health|October 29, 2020
The Effects of Exogenous Lactate Administration on the IGF1/Akt/mTOR Pathway in Rat Skeletal MuscleSunghwan Kyun, Choongsung Yoo, Hun-Young Park, et al.
Physical Activity and Nutrition|February 12, 2023
Synergic effect of exogenous lactate and caffeine on fat oxidation and hepatic glycogen concentration in resting ratsChoongsung Yoo, Jisu Kim, Sunghwan Kyun, et al.
Physiological Reports|February 21, 2024
Lactate administration induces skeletal muscle synthesis by influencing Akt/mTOR and MuRF1 in non-trained mice but not in trained miceSunghwan Kyun, Jisu Kim, Deunsol Hwang, et al.
Physical Activity and Nutrition|July 23, 2020
Effects of exogenous lactate administration on fat metabolism and glycogen synthesis factors in ratsSunghwan Kyun, Choongsung Yoo, Takeshi Hashimoto, et al.
Scientific Reports|April 10, 2023
Exogenous lactate augments exercise-induced improvement in memory but not in hippocampal neurogenesisDeunsol Hwang, Jisu Kim, Sunghwan Kyun, et al.
Physical Activity and Nutrition|October 15, 2025
Establishing VO2peak-based exercise intensity classification and physiological validation in ICR miceDeunsol Hwang, Sunghwan Kyun, Inkwon Jang, et al.
Physical Activity and Nutrition|May 8, 2024
Effects of public transportation use on non-exercise activity thermogenesis and health promotion: a mini-reviewSung-Woo Kim, Deunsol Hwang, Sunghwan Kyun, et al.
Molecular Neurobiology|May 8, 2025
Exercise-Induced Hippocampal Neurogenesis Is Attenuated by Inhibition of Monocarboxylate Transporter 2Deunsol Hwang, Taeho Kim, Sunghwan Kyun, et al.
Metabolites|April 26, 2024
Chronic Administration of Exogenous Lactate Increases Energy Expenditure during Exercise through Activation of Skeletal Muscle Energy Utilization Capacity in MiceInkwon Jang, Sunghwan Kyun, Deunsol Hwang, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Metabolites|August 26, 2021
Acute Administration of Exogenous Lactate Increases Carbohydrate Metabolism during Exercise in MiceInkwon Jang, Jisu Kim, Sunghwan Kyun, et al.
International Journal of Environmental Research and Public Health|October 29, 2020
The Effects of Exogenous Lactate Administration on the IGF1/Akt/mTOR Pathway in Rat Skeletal MuscleSunghwan Kyun, Choongsung Yoo, Hun-Young Park, et al.
Physical Activity and Nutrition|February 12, 2023
Synergic effect of exogenous lactate and caffeine on fat oxidation and hepatic glycogen concentration in resting ratsChoongsung Yoo, Jisu Kim, Sunghwan Kyun, et al.
Physiological Reports|February 21, 2024
Lactate administration induces skeletal muscle synthesis by influencing Akt/mTOR and MuRF1 in non-trained mice but not in trained miceSunghwan Kyun, Jisu Kim, Deunsol Hwang, et al.
Physical Activity and Nutrition|July 23, 2020
Effects of exogenous lactate administration on fat metabolism and glycogen synthesis factors in ratsSunghwan Kyun, Choongsung Yoo, Takeshi Hashimoto, et al.
Scientific Reports|April 10, 2023
Exogenous lactate augments exercise-induced improvement in memory but not in hippocampal neurogenesisDeunsol Hwang, Jisu Kim, Sunghwan Kyun, et al.
Physical Activity and Nutrition|October 15, 2025
Establishing VO2peak-based exercise intensity classification and physiological validation in ICR miceDeunsol Hwang, Sunghwan Kyun, Inkwon Jang, et al.
Physical Activity and Nutrition|May 8, 2024
Effects of public transportation use on non-exercise activity thermogenesis and health promotion: a mini-reviewSung-Woo Kim, Deunsol Hwang, Sunghwan Kyun, et al.
Molecular Neurobiology|May 8, 2025
Exercise-Induced Hippocampal Neurogenesis Is Attenuated by Inhibition of Monocarboxylate Transporter 2Deunsol Hwang, Taeho Kim, Sunghwan Kyun, et al.
Metabolites|April 26, 2024
Chronic Administration of Exogenous Lactate Increases Energy Expenditure during Exercise through Activation of Skeletal Muscle Energy Utilization Capacity in MiceInkwon Jang, Sunghwan Kyun, Deunsol Hwang, et al.
Pageof 2