Abe D., Yanagawa K., Yamanobe K., Tamura K. (1998) Assessment of middle-distance running performance in sub-elite young runners using energy cost of running. European Journal of Applied Physiology 77, 320-325. |
Abe D., Sakaguchi Y., Tsuchimochi H., Endo M., Miyake K., Miyahiro S., Kanamaru K., Niihata S. (1999) Assessment of long-distance running performance in elite male runners using onset of blood lactate accumulation. Applied Human Science 18, 25-29. |
Bulburian R., Jeong J.W., Murphy M. (1996) Comparison of anaerobic components of the Wingate and critical power tests in males and females. Medicine and Science in Sports and Exercise 28, 1336-1341. |
Chollet D., Seifert L., Leblanc H., Boulesteix L., Carter M. (2004) Evaluation of arm-leg coordination in flat breaststroke. International Journal of Sports Medicine 25, 486-495. |
Dekerle J., Sidney M., Hespel J.M., Pelayo P. (2002) Validity and reliability of critical speed, critical stroke rate, and anaerobic capacity in relation to front crawl swimming performances. International Journal of Sports Medicine 23, 93-98. |
Florence S., Weir J.P. (1997) Relationship of critical velocity to marathon running performance. European Journal of Applied Physiology 75, 274-278. |
Fukuba Y., Yanagawa K., Kan A., Usui S., Koga S., Fukuoka Y. (1996) Fatigue threshold (θ¸F): its physiological implication as the index of endurance capacity. Bulletin of Physical Fitness and Research Institute 91, 89-100. |
Fukuba Y., Miura A., Endo E., Kan A., Yanagawa K., Whipp B.J. (2003) The curvature constant parameter of the power-duration curve for varied-power exercise. Medicine and Science in Sports and Exercise 35, 1413-1418. |
Hill D.W. (1993) The critical power concept. Sports Medicine 16, 237-254. |
Holmer I., Hollander A.P., Huijing P.A., Groot G.D. (1983) In: Biomechanics and medicine in swimming. Energetics and mechanical work in swimming. Champaign III. Human Kinetics Publishers. |
Housh D.J., Housh T.J., Bauge S.M. (1989) The accuracy of the critical power test for predicting time to exhaustion during cycle ergometry. Ergonomics 32, 997-1004. |
Hughson R.L., Orok C.J., Staudt L E. (1984) A high velocity treadmill running test to assess endurance running potential. International Journal of Sports Medicine 5, 23-25. |
Kolbe T., Dennis S.C., Selley E., Noakes T.D., Lambert M.I. (1995) The relationship between critical power and running performance. Journal of Sports Science 13, 265-269. |
Leblanc H., Seifert L., Baudry L., Chollet D. (2005) Arm-leg coordination in flat breaststroke: a comparative study between elite and non-elite swimmers. International Journal of Sports Medicine 26, 787-797. |
Martin L., Whyte G.P. (2000) Comparison of critical swimming velocity and velocity at lactate threshold in elite triathletes. International Journal of Sports Medicine 21, 366-368. |
McCartney N., Heigenhauser G.J., Sargent A.J., Jones N.L. (1983) A constant-velocity cycle ergometer for the study of dynamic muscle function. Journal of Applied Physiology 55, 212-217. |
Miura A., Kino F., Kajitani S., Sato H., Fukuba F. (1999) The effect of oral creatine supplementation on the curvature constant parameter of the power-duration curve for cycle ergometry in humans. Japanese Journal of Physiology 49, 169-174. |
Miura A., Sato H., Sato H., Whipp B.J., Fukuba Y. (2000) The effect of glycogen depletion on the curvature constant parameter of the power-duration curve for cycle ergometry. Ergonomics 43, 133-141. |
Miura A., Endo M., Sato H., Sato H., Barstow T.J., Fukuba Y. (2002) Relationship between the curvature constant parameter of the power-duration curve and muscle cross-sectional area of the thigh for cycle ergometry in humans. European Journal of Applied Physiology 87, 238-244. |
Monod H., Scherrer J. (1965) The work capacity of synergic muscle group. Ergonomics 8, 329-338. |
Nakamura Y., Mutoh Y., Miyashita M. (1984) A method for determining maximal anaerobic power using a bicycle ergometer. Japanese Journal of Sports Science 4, 834-839. |
Seifert L., Chollet D. (2005) A new index of flat breaststroke propulsion: a comparison of elite men and women. Journal of Sports Science 23, 309-320. |
Smith J.C., Dangelmaier B.S., Hill D.W. (1997) Critical power is related to cycling time trial performance. International Journal of Sports Medicine 20, 374-378. |
Takagi H., Sugimoto S., Nishijima N., Wilson B. (2004) Differences in stroke phases, arm-leg coordination and velocity fluctuation due to event, gender and performance level in breaststroke. Sports Biomechanics 3, 15-27. |
Toussaint H.M., Wakayoshi K., Hollander A.P., Ogita F. (1998) Simulated front crawl swimming performance related to critical speed and critical power. Medicine and Science in Sports and Exercise 30, 144-151. |
Wakayoshi K., Yoshida T., Udo M., Kasai T., Moritani T., Mutoh Y., Miyashita M. (1992a) A simple method for determining critical speed as swimming fatigue threshold in competitive swimming. International Journal of Sports Medicine 13, 367-371. |
Wakayoshi K., Yoshida T., Kasai T., Moritani T., Mutoh Y., Miyashita M. (1992b) Validity of critical velocity as swimming fatigue threshold in the competitive swimmer. Annals of Physiological Anthropology 11, 301-307. |
Wakayoshi K., Ikuta K., Yoshida T., Udo M., Moritani T., Mutoh Y., Miyashita M. (1992c) Determination and validity of critical velocity as an index of swimming performance in the competitive swimmer. European Journal of Applied Physiology 64, 153-157. |
Wakayoshi K., Yoshida T., Udo M., Harada T., Moritani T., Mutoh Y., Miyashita M. (1993) Does critical swimming velocity represent exercise intensity at maximal lactate steady state?. European Journal of Applied Physiology 66, 90-95. |
|