descargar 106.54 Kb.
|
Kram, R., and Taylor, C.R. (1990). Energetics of running: a new perspective. Nature 346: 265-267. Kyle, C.R. (1979). Reduction of wind resistance an power output of racing cyclists and runners travelling in groups. Ergonomics 22(4): 387-397. Kyle, C.R., and Caiozzo, V.J. (1986). The effect of athletic clothing aerodynamics upon running speed. Med. Sci. Sports Exerc. 18(5): 509-15. Kyröläinen, H., Belli, A., and Komi, P.V. (2001). Biomechanical factors affecting running economy. Med. Sci. Sports and Exerc. 33(8): 1330-1337. Kyröläinen, H., Kivela, R., Koskinen, S., McBride, J. Andersen, J.L., Takala, T., Sipilä, S., and Komi, P.V. (2003). Interrelation between muscle structure, muscle strength, and running economy. Med. Sci. Sports and Exerc. 35(1): 45-49. Léger, L., and Boucher, R. (1980). An indirect continuous running multistage field test: Université de Montréal track test. Canadian Journal of Applied Sports and Science 5(2): 77-84. Lejeune, T.M., Willems, P.A., and Heglund, N.C. (1998). Mechanics and energetics of human locomotion on sand. J. Exp. Biol. 201: 2071-2080. Maldonado, S., Mújica, I., Padilla, S. (2002). Influence of body mass and height on the energy cost of running in highly trained middle- and long-distance runners. International Journal of Sports Medicine 23(4): 268-272. Martin, P.E., and Morgan, D.W. (1992). Biomechanical considerations for economical walking and running. Med. Sci. Sports Exerc. 24(4): 467-474. McCann, D.J., and Adams, W.C. (2003). The size-Independent Oxygen Cost of Running. Medicine & Science in Sports & Exercise 35(6): 1049-1056. McMahon, T.A., and Cheng, C.G. (1990). The mechanics of running: how does stiffness couple with speed? J. Biomech. 23: 65-78. Millet, G.P., Borrani, J.F., and Candau, R. (2002). Effects of concurrent endurance and strength training on running economy and ![]() Morgan, D.W., Baldini, F.D., Martin, P.E., and Kohrt, W.M. (1989). Ten kilometer performance and predicted velocity at ![]() Morgan, D.W., and Craib, M. (1992). Physiological aspects of running economy. Medicine & Science in Sports & Exercise 24(2): 456-461. Morgan, D., Martin, P., Craib, M., Caruso, C., Clifton, R., and Hopewell, R. (1994). Effect of step length optimisation on the aerobic demand of running. J. Appl. Physiol. 77(1): 245-251. Morgan, D.W., Miller, T.A., Mitchell, V.A., and Craib, M.W. (1996). Aerobic demand of running shoes designed to exploit energy storage and return. R.Q.E.S. 67(1): 102-105. Noakes, T.D. (1988). Implications of exercise testing for prediction of athletic performance: a contemporary perspective. Medicine & Science in Sports & Exercise, 20 (4): 319-330. Noakes, T.D. (2000). Physiological capacity of the elite runner. En Bangsbo J. y Larsen, H.B. (Eds.) Running and Science. An interdisciplinary Perspective (19-48). Copenhagen: University of Copenhagen. Noakes, T.D., Myburgh, K.H., and Schall, R. (1990). Peak treadmill running velocity during the ![]() Novacheck, T.F. (1998). The biomechanics of running. Gait and Posture 7: 77-95. Paavolainen, L., Nummela, A., Rusko H., and Häkkinen, K. (1999a). Neuromuscular characteristics and fatigue during 10km running. Int. J. Sports Med., 20: 516-21. Paavolainen, L., Häkkinen, K., Hämäläinen, I., Nummela, A., and Rusko, H. (1999b). Explosive-strength training improves 5-km running time by improving running economy and muscle power. J. Appl. Physiol., 86 (5): 1527-1533. Padilla, S., Bourdin, M., Barthélémy, J.C., and Lacour, J.R. (1992). Physiological correlates of middle-distance running performance. A comparative study between men and women. Eur. J. Applied Physiol. 65: 561-566. Péronnet, F., Thibault, G., and Cousineau, D-L. (1991). A theoretical analysis of the effect of altitude on running performance. J. Appl. Physiol., 67: 453-465. Pinnington, H.C.; Dawson, B. (2001). Running economy on elite surf iron men and male runners, on soft dry beach sand and grass. Eur. J. Appl. Phisiol. 86: 62-70. Prampero Di, P.E. (1981). Energetics of muscular exercise. Rev. Physiol. Pharmacol. 89: 143-222. Prampero Di, P.E. (1986). The Energy cost of Human Locomotion on Land and in Water. Int. J. Sports Med. 7: 55-72. Prampero Di, P.E. (1992). The energetics of running. En Shephard R.J. y Åstrand, P.O. (Eds.) Endurance in Sports (542-549). Oxford: Blackwell Scientific Publications. Prampero Di, P.E.; Capelli, C.; Pagliaro, P.; Antonutto, G.; Girardis, M.; Zamparo, P.; Soule, R.G. (1993). Energetics of best performances in middle-distance running. J. Appl. Physiol. 74(5): 2318-24. Pugh, L.G.C.E. (1970). Oxygen intake in track and treadmill running with observations on the effect of air resistance. Journal of Physiology (Lond) 207: 823-835. Pugh, L.G.C.E. (1971). The influence of wind resistance in running and walking and the mechanical efficiency of work against horizontal or vertical forces. Journal of Physiology (Lond) 213: 255-276. Roberts, T.J.; Chen, M.S.; Taylor, C.R. (1998a). Energetics of bipedal running. II. Limb design and running mechanics. Journal of Exp. Biol. 201: 2753-2762. Roberts, T.J.; Kram, R.; Weyand, P.G.; Taylor, C.R. (1998b). Energetics of bipedal running. I. Metabolic cost of generating force. Journal of Exp. Biol. 201: 2745-2751. Saibene, F.; Minetti, A.E. (2003). Biomechanical and physiological aspects of legged locomotion in humans. Eur. J. Appl. Physiol. 88: 297-316. Spurrs, R.W.; Murphy, A.J.; Watsford, M.L. (2003). The effect of plyometric training on distance running performance. Eur. J. Appl. Physiol. 89: 1-7. Staab, J.S.; Agnew, J.W.; Siconolfi, S.F. (1992). Metabolic and performance responses to uphill and downhill running in distance runners. Med. Sci. Sports Exerc. 24(1): 124-127. Svedenhag, J. (2000). Running Economy. En Bangsbo J. y Larsen, H.B. (Eds.) Running and Science. An interdisciplinary Perspective (85-108). Copenhagen: University of Copenhagen. Tuimil, J.L.; Fernández del Olmo, M.; Martín Acero, R.; Iglesias, X.; Rodríguez, F. (2001). Running efficiency parameters during a track test for the determination of the maximum aerobic speed. En Proceedings of the 6th Annual Congress of the European College of Sport Science: Colonia. Tuimil, J.L.; Rodríguez, F.A. (2003). La velocidad aeróbica máxima de carrera (VAM). Concepto, evaluación y entrenamiento. R.E.D., XVII (1): 31-35. Turner, A.M.; Owings, M.; Schwane, J.A. (2003). Improvements in running economy after 6 weeks of plyometric training. J. Strength and Conditioning Research 17(1): 60-67. Williams, K.R. (1990). Relationship between distance running biomechanics and running economy. En Cavanagh, P. (Ed.). Biomechanics of distance running. (271-305). Champaign: Human Kinetics Books. Williams, K.R.; Cavanagh, P.R. (1987). Relationship between distance running mechanics, running economy and performance. J. Appl. Physiol. 63(3): 1236-45. Williams, T.J.; Krahenbuhl, G.S. (1997). Menstrual cycle phase and running economy. Med. Sci. Sports Exerc. 29(12): 1609-1618. Williams, T.J.; Krahembuhl, G.S.; Morgan, D.W. (1991). Mood state and running economy in moderately trained male runners. Med. Sci. Sports Exerc. 23(6): 727-731 Wright, S.; Weyand, P.G. (2001). The application of ground force explains the energetic cost of running backward and forward . J. Exp. Biol. 204: 1805-1815. Zamparo, P.; Perini, R.; Orizio, C.; Sacher, M.; Ferretti, G. (1992). The energy cost of walking or running on sand. Eur. J. Appl. Physiol. 65: 183-187. |