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Sports Medicine (Auckland, N.Z.)
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August 1, 1996
Significance of the velocity at VO2max and time to exhaustion at this velocity
L V Billat, J P Koralsztein
The Journal of Sports Medicine and Physical Fitness
|
October 18, 2000
Time limit and time at VO2max' during a continuous and an intermittent run
S Demarie, J P Koralsztein, V Billat
Archives of Physiology and Biochemistry
|
May 20, 1998
Biomechanical events in the time to exhaustion at maximum aerobic speed
F Gazeau, J P Koralsztein, V Billat
Archives of Physiology and Biochemistry
|
January 18, 2003
The influence of exercise duration at VO2 max on the off-transient pulmonary oxygen uptake phase during high intensity running activity
V L Billat, L Hamard, J P Koralsztein
Sports Medicine (Auckland, N.Z.)
|
July 27, 1999
Time in human endurance models. From empirical models to physiological models
L V Billat, J P Koralsztein, R H Morton
Archives of Physiology and Biochemistry
|
January 10, 2002
Effect of supra-lactate threshold training on the relationship between mechanical stride descriptors and aerobic energy cost in trained runners
J Slawinski, A Demarle, J P Koralsztein, et al.
International Journal of Sports Medicine
|
August 8, 2002
Effect of training on the physiological factors of performance in elite marathon runners (males and females)
V Billat, A Demarle, M Paiva, et al.
Archives of Physiology and Biochemistry
|
October 23, 1998
High level runners are able to maintain a VO2 steady-state below VO2max in an all-out run over their critical velocity
V Billat, V Binsse, B Petit, et al.
International Journal of Sports Medicine
|
September 21, 2007
Fatigue responses in exercise under control of VO2
P-M Lepretre, P Lopes, J-P Koralsztein, et al.
Medicine and Science in Sports and Exercise
|
December 12, 2001
Effect of free versus constant pace on performance and oxygen kinetics in running
V L Billat, J Slawinski, M Danel, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 36) with videos related to
Sort By:
Page
of 4
Sports Medicine (Auckland, N.Z.)
|
August 1, 1996
Significance of the velocity at VO2max and time to exhaustion at this velocity
L V Billat, J P Koralsztein
The Journal of Sports Medicine and Physical Fitness
|
October 18, 2000
Time limit and time at VO2max' during a continuous and an intermittent run
S Demarie, J P Koralsztein, V Billat
Archives of Physiology and Biochemistry
|
May 20, 1998
Biomechanical events in the time to exhaustion at maximum aerobic speed
F Gazeau, J P Koralsztein, V Billat
Archives of Physiology and Biochemistry
|
January 18, 2003
The influence of exercise duration at VO2 max on the off-transient pulmonary oxygen uptake phase during high intensity running activity
V L Billat, L Hamard, J P Koralsztein
Sports Medicine (Auckland, N.Z.)
|
July 27, 1999
Time in human endurance models. From empirical models to physiological models
L V Billat, J P Koralsztein, R H Morton
Archives of Physiology and Biochemistry
|
January 10, 2002
Effect of supra-lactate threshold training on the relationship between mechanical stride descriptors and aerobic energy cost in trained runners
J Slawinski, A Demarle, J P Koralsztein, et al.
International Journal of Sports Medicine
|
August 8, 2002
Effect of training on the physiological factors of performance in elite marathon runners (males and females)
V Billat, A Demarle, M Paiva, et al.
Archives of Physiology and Biochemistry
|
October 23, 1998
High level runners are able to maintain a VO2 steady-state below VO2max in an all-out run over their critical velocity
V Billat, V Binsse, B Petit, et al.
International Journal of Sports Medicine
|
September 21, 2007
Fatigue responses in exercise under control of VO2
P-M Lepretre, P Lopes, J-P Koralsztein, et al.
Medicine and Science in Sports and Exercise
|
December 12, 2001
Effect of free versus constant pace on performance and oxygen kinetics in running
V L Billat, J Slawinski, M Danel, et al.
Page
of 4