Abstract
Sena Çinarli, Betül Akyol, Fatih Karakurt, Koray Mutlu, Muammer Tutar, Fahri Safa Cinarli, Monira Ibrahim Aldhahi
Abstract
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Amateur boxing: physical and physiological attributes.
10.1007/s40279-014-0274-7 · 2015
Comparison of mental toughness and power test performances in high-level kickboxers by competitive success.
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Effects of high-intensity interval training on olympic combat sports athletes’ performance and physiological adaptation: a systematic review.
10.1519/jsc.0000000000002957 · 2019
Weight loss in combat sports: physiological, psychological and performance effects.
10.1186/1550-2783-9-52 · 2012
High-intensity interval training, solutions to the programming puzzle: part I: cardiopulmonary emphasis.
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Physiological adaptations to interval training and the role of exercise intensity.
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Energy system interaction and relative contribution during maximal exercise.
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Maximal strength, sprint and jump performance in elite kumite karatekas.
10.1186/s13102-024-01051-9 · 2025
A systematic review on heart-rate recovery to monitor changes in training status in athletes.
10.1123/ijspp.7.3.251 · 2012
The effects of high intensity interval training vs steady state training on aerobic and anaerobic capacity.
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Training for recovery: impact of sprint interval training on recovery dynamics and aerobic performance in kickboxing athletes.
10.1007/s42978-023-00273-6 · 2024
Influence of the breathing pattern on the pulmonary function of endurance-trained athletes.
10.1038/s41598-024-51758-5 · 2024
Aerobic high-intensity intervals improve VO2max more than moderate training.
10.1249/mss.0b013e3180304570 · 2007
Effects of high-intensity interval training in combat sports: a systematic review with meta-analysis.
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High-intensity interval training performed by young athletes: a systematic review and meta-analysis.
10.3389/fphys.2018.01012 · 2018
High-intensity intermittent training positively affects aerobic and anaerobic performance in judo athletes independently of exercise mode.
10.3389/fphys.2016.00268 · 2016
A Comparative analysis of high-intensity technique-specific intervals and short sprint interval training in taekwondo athletes: effects on cardiorespiratory fitness and anaerobic power.
10.52082/jssm.2024.672 · 2024
Standardization of spirometry 2019 update. an official American Thoracic Society and European Respiratory Society Technical Statement.
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The Yo-Yo intermittent recovery test: a useful tool for evaluation of physical performance in intermittent sports.
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Heart rate recovery normality data recorded in response to a maximal exercise test in physically active men.
10.1007/s00421-014-2847-4 · 2014
Effect of a Short HIIT program with specific techniques on physical condition and activity during simulated combat in national-level boxers.
10.3390/su13168746 · 2021
Inspiratory muscle training enhances pulmonary O2 uptake kinetics and high-intensity exercise tolerance in humans.
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Inspiratory muscle training improves thoracic expansion and six-minute walking distance in female subjects with inspiratory muscle weakness.
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10.1002/jmri.28322 · 2022
Effects of high-intensity interval training on pulmonary function.
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Effects of low-volume high-intensity interval training (HIT) on fitness in adults: a meta-analysis of controlled and non-controlled trials.
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Effects of a low-volume aerobic-type interval exercise on VO2max and cardiac mass.
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Effect of high intensity interval training on cardiopulmonary function in Taekwon-do ITF athletes.
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The effects of high-intensity intermittent exercise training on cardiovascular response to mental and physical challenge.
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High-intensity intermittent exercise and fat loss.
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Cardiac parasympathetic reactivation following exercise: implications for training prescription.
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Influence of repeated sprint training on pulmonary O2 uptake and muscle deoxygenation kinetics in humans.
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High-intensity intermittent exercise: methodological and physiological aspects.
10.1123/ijspp.8.6.600 · 2013
High intensity interval training (HIIT) improves resting blood pressure, metabolic (MET) capacity and heart rate reserve without compromising cardiac function in sedentary aging men.
10.1016/j.exger.2017.05.010 · 2018
A meta-analysis of the effects of high-intensity interval training on circulatory system-related indicators in sedentary populations.
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Effects of sleep deprivation on cardiorespiratory functions of the runners and volleyball players during rest and exercise.
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Sleep and nutrition interactions: implications for athletes.
10.3390/nu11040822 · 2019
Sleep and nutrition interactions: implications for athletes.
10.3390/nu11040822 · doi-reference
Effects of sleep deprivation on cardiorespiratory functions of the runners and volleyball players during rest and exercise.
10.1556/aphysiol.96.2009.1.3 · doi-reference
A meta-analysis of the effects of high-intensity interval training on circulatory system-related indicators in sedentary populations.
10.3389/fphys.2025.1702247 · doi-reference
High intensity interval training (HIIT) improves resting blood pressure, metabolic (MET) capacity and heart rate reserve without compromising cardiac function in sedentary aging men.
10.1016/j.exger.2017.05.010 · doi-reference
High-intensity intermittent exercise: methodological and physiological aspects.
10.1123/ijspp.8.6.600 · doi-reference
Influence of repeated sprint training on pulmonary O2 uptake and muscle deoxygenation kinetics in humans.
10.1152/japplphysiol.00144.2009 · doi-reference
Parasympathetic reactivation after repeated sprint exercise.
10.1152/ajpheart.00062.2007 · doi-reference
Cardiac parasympathetic reactivation following exercise: implications for training prescription.
10.1007/s40279-013-0083-4 · doi-reference
High-intensity intermittent exercise and fat loss.
10.1155/2011/868305 · doi-reference
The effects of high-intensity intermittent exercise training on cardiovascular response to mental and physical challenge.
10.1016/j.ijpsycho.2012.11.013 · doi-reference
Effect of high intensity interval training on cardiopulmonary function in Taekwon-do ITF athletes.
10.5604/20815735.1225636 · doi-reference
Effects of a low-volume aerobic-type interval exercise on VO2max and cardiac mass.
10.1249/mss.0b013e3182a38da8 · doi-reference
Effects of low-volume high-intensity interval training (HIT) on fitness in adults: a meta-analysis of controlled and non-controlled trials.
10.1007/s40279-014-0180-z · doi-reference
Effects of high-intensity interval training on pulmonary function.
10.1007/s00421-011-2285-5 · doi-reference
The effects of respiratory muscle training on resting‐state brain activity and thoracic mobility in healthy subjects: a randomized controlled trial.
10.1002/jmri.28322 · doi-reference
The effect of high-intensity aerobic exercise on the pulmonary function among inactive male individuals.
10.13005/bpj/1427 · doi-reference
Inspiratory muscle training enhances pulmonary O2 uptake kinetics and high-intensity exercise tolerance in humans.
10.1152/japplphysiol.00077.2010 · doi-reference
Effect of a Short HIIT program with specific techniques on physical condition and activity during simulated combat in national-level boxers.
10.3390/su13168746 · doi-reference
Heart rate recovery normality data recorded in response to a maximal exercise test in physically active men.
10.1007/s00421-014-2847-4 · doi-reference
The Yo-Yo intermittent recovery test: a useful tool for evaluation of physical performance in intermittent sports.
10.2165/00007256-200838010-00004 · doi-reference
Standardization of spirometry 2019 update. an official American Thoracic Society and European Respiratory Society Technical Statement.
10.1164/rccm.201908-1590st · doi-reference
A Comparative analysis of high-intensity technique-specific intervals and short sprint interval training in taekwondo athletes: effects on cardiorespiratory fitness and anaerobic power.
10.52082/jssm.2024.672 · doi-reference
High-intensity intermittent training positively affects aerobic and anaerobic performance in judo athletes independently of exercise mode.
10.3389/fphys.2016.00268 · doi-reference
High-intensity interval training performed by young athletes: a systematic review and meta-analysis.
10.3389/fphys.2018.01012 · doi-reference
Effects of high-intensity interval training in combat sports: a systematic review with meta-analysis.
10.1519/jsc.0000000000003255 · doi-reference
Aerobic high-intensity intervals improve VO2max more than moderate training.
10.1249/mss.0b013e3180304570 · doi-reference
Influence of the breathing pattern on the pulmonary function of endurance-trained athletes.
10.1038/s41598-024-51758-5 · doi-reference
Training for recovery: impact of sprint interval training on recovery dynamics and aerobic performance in kickboxing athletes.
10.1007/s42978-023-00273-6 · doi-reference
A systematic review on heart-rate recovery to monitor changes in training status in athletes.
10.1123/ijspp.7.3.251 · doi-reference
Maximal strength, sprint and jump performance in elite kumite karatekas.
10.1186/s13102-024-01051-9 · doi-reference
Energy system interaction and relative contribution during maximal exercise.
10.2165/00007256-200131100-00003 · doi-reference
Physiological adaptations to interval training and the role of exercise intensity.
10.1113/jp273196 · doi-reference
The scientific basis for high-intensity interval training.
10.2165/00007256-200232010-00003 · doi-reference
High-intensity interval training, solutions to the programming puzzle: part I: cardiopulmonary emphasis.
10.1007/s40279-013-0029-x · doi-reference
Weight loss in combat sports: physiological, psychological and performance effects.
10.1186/1550-2783-9-52 · doi-reference
Effects of high-intensity interval training on olympic combat sports athletes’ performance and physiological adaptation: a systematic review.
10.1519/jsc.0000000000002957 · doi-reference
Amateur boxing: physical and physiological attributes.
10.1007/s40279-014-0274-7 · doi-reference