Respiratory muscle endurance training: effect on normoxic and hypoxic exercise performance. 2010

Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
Department of Automation, Biocybernetics and Robotics, Jozef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia. mkeram@phed.uoa.gr

The aim of this study was to investigate the effect of respiratory muscle endurance training on endurance exercise performance in normoxic and hypoxic conditions. Eighteen healthy males were stratified for age and aerobic capacity; and randomly assigned either to the respiratory muscle endurance training (RMT = 9) or to the control training group (CON = 9). Both groups trained on a cycle-ergometer 1 h day(-1), 5 days per week for a period of 4 weeks at an intensity corresponding to 50% of peak power output. Additionally, the RMT group performed a 30-min specific endurance training of respiratory muscles (isocapnic hyperpnea) prior to the cycle ergometry. Pre, Mid, Post and 10 days after the end of training period, subjects conducted pulmonary function tests (PFTs), maximal aerobic tests in normoxia (VO(2max)NOR), and in hypoxia (VO(2max)HYPO; F(I)O(2) = 0.12); and constant-load tests at 80% of VO(2max)NOR in normoxia (CLT(NOR)), and in hypoxia (CLTHYPO). Both groups enhanced VO(2max)NOR (CON: +13.5%; RMT: +13.4%), but only the RMT group improved VO(2max)HYPO Post training (CON: -6.5%; RMT: +14.2%). Post training, the CON group increased peak power output, whereas the RMT group had higher values of maximum ventilation. Both groups increased CLT(NOR) duration (CON: +79.9%; RMT: +116.6%), but only the RMT group maintained a significantly higher CLT(NOR) 10 days after training (CON: +56.7%; RMT: +91.3%). CLT(HYPO) remained unchanged in both groups. Therefore, the respiratory muscle endurance training combined with cycle ergometer training enhanced aerobic capacity in hypoxia above the control values, but did not in normoxia. Moreover, no additional effect was obtained during constant-load exercise.

UI MeSH Term Description Entries
D008297 Male Males
D010101 Oxygen Consumption The rate at which oxygen is used by a tissue; microliters of oxygen STPD used per milligram of tissue per hour; the rate at which oxygen enters the blood from alveolar gas, equal in the steady state to the consumption of oxygen by tissue metabolism throughout the body. (Stedman, 25th ed, p346) Consumption, Oxygen,Consumptions, Oxygen,Oxygen Consumptions
D010807 Physical Endurance The time span between the beginning of physical activity by an individual and the termination because of exhaustion. Endurance, Physical,Physical Stamina,Stamina, Physical
D012129 Respiratory Function Tests Measurement of the various processes involved in the act of respiration: inspiration, expiration, oxygen and carbon dioxide exchange, lung volume and compliance, etc. Lung Function Tests,Pulmonary Function Tests,Function Test, Pulmonary,Function Tests, Pulmonary,Pulmonary Function Test,Test, Pulmonary Function,Tests, Pulmonary Function,Function Test, Lung,Function Test, Respiratory,Function Tests, Lung,Function Tests, Respiratory,Lung Function Test,Respiratory Function Test,Test, Lung Function,Test, Respiratory Function,Tests, Lung Function,Tests, Respiratory Function
D001945 Breathing Exercises Therapeutic exercises aimed to deepen inspiration or expiration or even to alter the rate and rhythm of respiration. Respiratory Muscle Training,Exercise, Breathing,Muscle Training, Respiratory,Training, Respiratory Muscle
D005080 Exercise Test Controlled physical activity which is performed in order to allow assessment of physiological functions, particularly cardiovascular and pulmonary, but also aerobic capacity. Maximal (most intense) exercise is usually required but submaximal exercise is also used. Arm Ergometry Test,Bicycle Ergometry Test,Cardiopulmonary Exercise Testing,Exercise Testing,Step Test,Stress Test,Treadmill Test,Cardiopulmonary Exercise Test,EuroFit Tests,Eurofit Test Battery,European Fitness Testing Battery,Fitness Testing,Physical Fitness Testing,Arm Ergometry Tests,Bicycle Ergometry Tests,Cardiopulmonary Exercise Tests,Ergometry Test, Arm,Ergometry Test, Bicycle,Ergometry Tests, Arm,Ergometry Tests, Bicycle,EuroFit Test,Eurofit Test Batteries,Exercise Test, Cardiopulmonary,Exercise Testing, Cardiopulmonary,Exercise Tests,Exercise Tests, Cardiopulmonary,Fitness Testing, Physical,Fitness Testings,Step Tests,Stress Tests,Test Battery, Eurofit,Test, Arm Ergometry,Test, Bicycle Ergometry,Test, Cardiopulmonary Exercise,Test, EuroFit,Test, Exercise,Test, Step,Test, Stress,Test, Treadmill,Testing, Cardiopulmonary Exercise,Testing, Exercise,Testing, Fitness,Testing, Physical Fitness,Tests, Arm Ergometry,Tests, Bicycle Ergometry,Tests, Cardiopulmonary Exercise,Tests, EuroFit,Tests, Exercise,Tests, Step,Tests, Stress,Tests, Treadmill,Treadmill Tests
D006339 Heart Rate The number of times the HEART VENTRICLES contract per unit of time, usually per minute. Cardiac Rate,Chronotropism, Cardiac,Heart Rate Control,Heartbeat,Pulse Rate,Cardiac Chronotropy,Cardiac Chronotropism,Cardiac Rates,Chronotropy, Cardiac,Control, Heart Rate,Heart Rates,Heartbeats,Pulse Rates,Rate Control, Heart,Rate, Cardiac,Rate, Heart,Rate, Pulse
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D000465 Algorithms A procedure consisting of a sequence of algebraic formulas and/or logical steps to calculate or determine a given task. Algorithm

Related Publications

Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
July 1992, Medicine and science in sports and exercise,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
September 2001, Respiration physiology,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
March 2008, Respiratory physiology & neurobiology,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
December 2017, Journal of sports science & medicine,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
December 2000, Medicine and science in sports and exercise,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
January 2007, Wilderness & environmental medicine,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
August 2016, Aerospace medicine and human performance,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
October 2020, Aerospace medicine and human performance,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
October 2005, Acta physiologica Scandinavica,
Michail E Keramidas, and Tadej Debevec, and Mojca Amon, and Stylianos N Kounalakis, and Bostjan Simunic, and Igor B Mekjavic
October 2011, European journal of applied physiology,
Copied contents to your clipboard!