Search Results - Pelarigo, J.
- Showing 1 - 9 results of 9
-
1
Do traditional and reverse swimming training periodizations lead to similar aerobic performance improvements?
Clemente-Suarez, V. J., Fernandes, R. J., de Jesus, K., Pelarigo, J. G., Arroyo-Toledo, J. J., Vilas-Boas, J. P.Published in The Journal of Sports Medicine and Physical Fitness (2018)“…Pelarigo, J. G.…”
-
2
Oxygen uptake kinetics and energy system`s contribution around maximal lactate steady state swimming intensity
Pelarigo, J. G., Machado, L., Fernandes, R. J., Coelho Greco, C., Vilas-Boas, J. P.Published in PLOS ONE (2017)“…Pelarigo, J. G.…”
-
3
Effects of short-interval and long-interval swimming protocols on performance, aerobic adaptations, and technical parameters: A training study
Dalamitros, A. A., Zafeiridis, A. S., Toubekis, A. G., Tsalis, G. A., Pelarigo, J. G., Manou, V., Kellis, S.Published in The Journal of Strength and Conditioning Research (2016)“…Pelarigo, J. G.…”
-
4
-
5
Are different methods for the aerobic capacity evaluation providing coherent biomechanical parameters
Pelarigo, J. G., Fernandes, R. J., Pimenta, R. A., Leao, H. F. P., Greco, C. C., Vilas-Boas, J. P.Published in XIIth International Symposium for Biomechanics and Medicine in Swimming (2014)“…Pelarigo, J. G.…”
-
6
-
7
Biophysics of the elite endurance swimmer: A case study during aerobic capacity evaluation using different methods
Pelarigo, J. G., Denadai, B. S., Ribeiro, J., Fernandes, R. J., Greco, C. C., Vilas-Boas, J. P.Published in XIIth International Symposium for Biomechanics and Medicine in Swimming (2014)“…Pelarigo, J. G.…”
-
8
Energy characterization of 100m maximal front crawl
Ribeiro, J., Sousa, A., Figueiredo, P., Clemente, V., Pelarigo, J., Monteiro, J., Vilas-Boas, J. P., Fernandes, R. J.Published in Journal of Sports Science & Medicine (2012)“…Pelarigo, J.…”
-
9
Search Tools:
Related Subjects
swimming
aerobic
relation
O2-uptake
load intensity
load organization
performance
performance diagnostics
test
energy metobolism
freestyle swimming
lactate
load
maximum
metabolism
performance capacity
training
velocity
adaptation
anaerobic
biomechanics
blood
elite sport
energy
female
high performance sport
intermittent
interval method
investigation method
long distance