Critical evaluation of oxygen-uptake assessment in swimming.
暂无分享,去创建一个
Pedro Figueiredo | Ana Sousa | Ricardo J Fernandes | Per-Ludvik Kjendlie | João P Vilas-Boas | D. Pendergast | J. Vilas-Boas | R. Fernandes | P. Figueiredo | P. Kjendlie | David Pendergast | A. Sousa
[1] Tiago M. Barbosa,et al. Energy cost and intracyclic variation of the velocity of the centre of mass in butterfly stroke , 2005, European Journal of Applied Physiology.
[2] Carlo Capelli,et al. Energetics of swimming at maximal speeds in humans , 1998, European Journal of Applied Physiology and Occupational Physiology.
[3] R. Fernandes,et al. Has gender any effect on the relationship between time limit at VO(2)max velocity and swimming economy , 2005 .
[4] D. Costill,et al. Metabolic responses to submaximal exercise in three water temperatures. , 1967, Journal of applied physiology.
[5] J. Paulo Vilas-Boas,et al. Comparison of Swimming Economy in Three Breaststroke Techniques , 1994 .
[6] G. Millet,et al. Responses to Intermittent Swimming Sets at Velocity Associated With max , 2005 .
[7] K. Keskinen,et al. Respiratory snorkel and valve system for breath‐by‐breath gas analysis in swimming , 2003, Scandinavian Journal of Medicine & Science in Sports.
[8] J. Helgerud,et al. Combined strength and endurance training in competitive swimmers. , 2009, Journal of sports science & medicine.
[9] R. Montpetit,et al. Energetics of backstroke swimming in males and females. , 1992, Medicine and science in sports and exercise.
[10] L Seifert,et al. Swim specialty affects energy cost and motor organization. , 2010, International journal of sports medicine.
[11] A. W. Schreurs,et al. Respiratory valve for oxygen uptake measurements during swimming , 2004, European Journal of Applied Physiology and Occupational Physiology.
[12] D. Marinho,et al. Physiological determinants of performance in Breaststroke swimming events. , 2010 .
[13] P E Di Prampero,et al. Quantitative analysis of the front crawl in men and women. , 1977, Journal of applied physiology: respiratory, environmental and exercise physiology.
[14] Joan D. Werner,et al. Swimming Medicine IV , 1979 .
[15] K. Keskinen,et al. Relationships between energetic, stroke determinants, and velocity in butterfly. , 2005, International journal of sports medicine.
[16] H. Perrault,et al. The aerobic demand of backstroke swimming, and its relation to body size, stroke technique, and performance , 2004, European Journal of Applied Physiology and Occupational Physiology.
[17] P Zamparo,et al. How fins affect the economy and efficiency of human swimming. , 2002, The Journal of experimental biology.
[18] R. M. Glaser,et al. Metabolic and cardiorespiratory response during free swimming and treadmill walking. , 1971, Journal of applied physiology.
[19] J. Chatard,et al. Biomechanics and medicine in swimming IX , 2003 .
[20] A. P. Hollander,et al. Biomechanics and Medicine in Swimming VII , 1996 .
[21] P. Figueiredo,et al. V˙O2 Kinetics in 200-m Race-Pace Front Crawl Swimming , 2011, International journal of sports medicine.
[22] L. Léger,et al. Backward extrapolation of VO2max values from the O2 recovery curve. , 1980, Medicine and science in sports and exercise.
[23] D R Bassett,et al. Validity of inspiratory and expiratory methods of measuring gas exchange with a computerized system. , 2001, Journal of applied physiology.
[24] J. Lavoie,et al. A Maximal Multistage Swim Test to Determine the Functional and Maximal Aerobic Power of Competitive Swinlnlers , 1985 .
[25] I Holmér,et al. Physiology of swimming man. , 1974, Acta physiologica Scandinavica. Supplementum.
[26] I. Holmér,et al. Body composition, sinking force, and oxygen uptake of man treading water. , 1974, Journal of applied physiology.
[27] P. Åstrand,et al. Swimming training and maximal oxygen uptake. , 1972, Journal of applied physiology.
[28] Thomas Kirk Cureton,et al. Relationship of Selected Tests with Energy Metabolism and Swimming Performance , 1955 .
[29] F. Sardella,et al. The V˙O2 slow component in swimming , 2001, European Journal of Applied Physiology.
[30] Per-Ludvik Kjendlie,et al. Factors affecting swimming economy in children and adults , 2004, European Journal of Applied Physiology.
[31] G Cortili,et al. Energy cost of speec skating and efficiency of work against air resistance. , 1976, Journal of applied physiology.
[32] C Capelli,et al. Bioenergetics and biomechanics of front crawl swimming. , 1995, Journal of applied physiology.
[33] B. Fernhall,et al. Aerobic cost in elite female adolescent swimmers. , 2009, International journal of sports medicine.
[34] A. Ascensão,et al. Time Limit and V·O2 Slow Component at Intensities Corresponding to V·O2max in Swimmers , 2003, International journal of sports medicine.
[35] J. Ribeiro,et al. Metabolic predictors of middle-distance swimming performance. , 1990, British journal of sports medicine.
[36] P E Di Prampero,et al. Energetics of swimming in man. , 1974, Journal of applied physiology.
[37] Veronica Vleck,et al. Effects of aerobic fitness on oxygen uptake kinetics in heavy intensity swimming , 2011, European Journal of Applied Physiology.
[38] F. Sardella,et al. A new respiratory valve system for measuring oxygen uptake during swimming , 2004, European Journal of Applied Physiology and Occupational Physiology.
[39] R. Fernandes,et al. Changes in physiological and stroke parameters during a maximal 400-m free swimming test in elite swimmers. , 2004, Canadian journal of applied physiology = Revue canadienne de physiologie appliquee.
[40] H M Toussaint,et al. Differences in propelling efficiency between competitive and triathlon swimmers. , 1990, Medicine and science in sports and exercise.
[41] C Baldari,et al. Examining the accumulated oxygen deficit method in front crawl swimming. , 2010, International journal of sports medicine.
[42] P. Zamparo,et al. The influence of drag on human locomotion in water. , 2005, Undersea & hyperbaric medicine : journal of the Undersea and Hyperbaric Medical Society, Inc.
[43] K. Andersen,et al. Energy cost of swimming. , 1960 .
[44] K. Keskinen,et al. Assessment of time limit at lowest speed corresponding to maximal oxygen consumption in the four competitive swimming strokes , 2006 .
[45] J. Lavoie,et al. $$\dot VO_2 $$ peak during free swimming using the backward extrapolation of the O2 recovery curve , 2006, European Journal of Applied Physiology and Occupational Physiology.
[46] H M Toussaint,et al. Propelling efficiency of front-crawl swimming. , 1988, Journal of applied physiology.
[47] B. A. Wilson,et al. Maximal oxygen uptake during free, tethered, and flume swimming. , 1980, Journal of applied physiology: respiratory, environmental and exercise physiology.
[48] S. McLean,et al. Oxygen uptake response to stroke rate manipulation in freestyle swimming. , 2010, Medicine and science in sports and exercise.
[49] I. Holmér,et al. Maximum oxygen uptake during swimming and running by elite swimmers. , 1974, Journal of applied physiology.
[50] W J Duey,et al. Metabolic responses to drafting during front crawl swimming. , 1991, Medicine and science in sports and exercise.
[51] D. Costill. Use of a swimming ergometer in physiological research. , 1966, Research quarterly.
[52] J R Magel,et al. Maximum oxygen uptakes of college swimmers. , 1967, Journal of applied physiology.
[53] I. Holmér. Propulsive efficiency of breaststroke and freestyle swimming , 2004, European Journal of Applied Physiology and Occupational Physiology.
[54] João Paulo Vilas-Boas,et al. Comparison Between Swimming VO2peak and VO2max at Different Time Intervals~!2009-07-05~!2009-12-12~!2010-04-15~! , 2010 .
[55] J. Vilas-Boas,et al. Does net energy cost of swimming affect time to exhaustion at the individual's maximal oxygen consumption velocity? , 2006, The Journal of sports medicine and physical fitness.
[56] J. Faulkner,et al. Cardiac outputs during maximum effort running and swimming. , 1971, Journal of applied physiology.
[57] P. Zamparo,et al. The interplay between propelling efficiency, hydrodynamic position and energy cost of front crawl in 8 to 19-year-old swimmers , 2008, European Journal of Applied Physiology.
[58] S. Colan,et al. Comparison of Maximal Oxygen Uptakes from the Tethered, the 183- and 457-Meter Unimpeded Supramaximal Freestyle Swims , 1991, International journal of sports medicine.
[59] B. Saltin,et al. Maximal oxygen uptake and heart rate in various types of muscular activity. , 1961, Journal of applied physiology.
[60] I. Tabata,et al. Anaerobic capacity and maximal oxygen uptake during arm stroke, leg kicking and whole body swimming. , 1996, Acta physiologica Scandinavica.
[61] T. Astorino,et al. Alterations in VO2max and the VO2 plateau with manipulation of sampling interval , 2009, Clinical physiology and functional imaging.
[62] K. Keskinen,et al. Evaluation of the Energy Expenditure in Competitive Swimming Strokes , 2006, International journal of sports medicine.
[63] Tiago M. Barbosa,et al. The influence of stroke mechanics into energy cost of elite swimmers , 2008, European Journal of Applied Physiology.
[64] P. Zamparo,et al. Energy cost of front-crawl swimming at supra-maximal speeds and underwater torque in young swimmers , 2000, European Journal of Applied Physiology.
[65] João Paulo Vilas-Boas,et al. An energy balance of the 200 m front crawl race , 2011, European Journal of Applied Physiology.
[66] R Fielding,et al. Energy Expenditure During Front Crawl Swimming: Predicting Success in Middle-Distance Events , 1985, International journal of sports medicine.
[67] K Wakayoshi,et al. Relationship between oxygen uptake, stroke rate and swimming velocity in competitive swimming. , 1995, International journal of sports medicine.
[68] K. Keskinen,et al. Time Limit at V·O2max Velocity in Elite Crawl Swimmers , 2007, International journal of sports medicine.
[69] E. Nadel,et al. Energy exchanges of swimming man. , 1974, Journal of applied physiology.
[70] Ricardo J Fernandes,et al. Is Time Limit at the Minimum Swimming Velocity of V̇O2 Max Influenced by Stroking Parameters? , 2006, Perceptual and motor skills.
[71] Alberto E. Minetti,et al. Economy and efficiency of swimming at the surface with fins of different size and stiffness , 2006, European Journal of Applied Physiology.
[72] I. Tabata,et al. Effect of hand paddles on anaerobic energy release during supramaximal swimming. , 1999, Medicine and science in sports and exercise.
[73] Paola Zamparo,et al. Underwater torque and energy cost of front crawl swimming , 1992 .
[74] S. Ratel,et al. Comparative analysis of the energy cost during front crawl swimming in children and adults , 2009, European Journal of Applied Physiology.
[75] C. Fauquet,et al. Physiological responses during submaximal interval swimming training: effects of interval duration. , 2005, Journal of science and medicine in sport.
[76] J. Chatard,et al. Analysis of determinants of swimming economy in front crawl , 2004, European Journal of Applied Physiology and Occupational Physiology.
[77] T. Hale. History of developments in sport and exercise physiology: A. V. Hill, maximal oxygen uptake, and oxygen debt , 2008, Journal of sports sciences.
[78] Pedro Figueiredo,et al. Comparison Between Swimming VO 2 peak and VO 2 max at Different Time Intervals , 2014 .
[79] Klaus Reischle,et al. Swimming science V , 1988 .
[80] D. Morgan,et al. Physiological responses of triathletes to maximal swimming, cycling, and running. , 1985, Medicine and science in sports and exercise.
[81] Futoshi Ogita,et al. The comparison of peak oxygen uptake between swim-bench exercise and arm stroke , 1995, European Journal of Applied Physiology and Occupational Physiology.
[82] F. DiMenna,et al. “Linear” Versus “Nonlinear” O2 Responses to Exercise: Reshaping Traditional Beliefs , 2009 .
[83] Peter V. Karpovich,et al. Energy expenditure in swimming. , 1944 .
[84] A. Rouard,et al. Determinants of the energy cost of front-crawl swimming in children , 2002, European Journal of Applied Physiology.
[85] P. Zamparo,et al. Effect of the underwater torque on the energy cost, drag and efficiency of front crawl swimming , 1996, European Journal of Applied Physiology and Occupational Physiology.
[86] K. Keskinen,et al. VO2 Off Transient Kinetics in Extreme Intensity Swimming. , 2011, Journal of sports science & medicine.
[87] K. Keskinen,et al. Physiological, biomechanical and anthropometrical predictors of sprint swimming performance in adolescent swimmers. , 2010, Journal of sports science & medicine.
[88] Ingauvar Holmér,et al. Energy cost of arm stroke, leg kick, and the whole stroke in competitive swimming styles , 2004, European Journal of Applied Physiology and Occupational Physiology.
[89] P V Karpovich,et al. Energy cost of leg kick, arm stroke, and whole crawl stroke. , 1966, Journal of applied physiology.
[90] Per-Ludvik Kjendlie,et al. Differences in the energy cost between children and adults during front crawl swimming , 2004, European Journal of Applied Physiology.
[91] M. Faina,et al. Energy cost of swimming of elite long-distance swimmers , 2005, European Journal of Applied Physiology.
[92] G. Liljestrand,et al. Über das Minutenvolumen des Herzens beim Schwimmen1 , 1920 .
[93] J. Lacour,et al. Coût énergétique du crawl chez les nageuses de compétition. Comparaison avec les garçons , 1991 .
[94] D R Pendergast,et al. Underwater fin swimming in women with reference to fin selection. , 2003, Undersea & hyperbaric medicine : journal of the Undersea and Hyperbaric Medical Society, Inc.