Search Results - Brughelli, M.
- Showing 1 - 10 results of 10
-
1
Sprint acceleration mechanics in fatigue conditions: Compensatory role of gluteal muscles in horizontal force production and potential protection of hamstring muscles
Edouard, P., Mediguchia, J., Lahti, J., Arnal, P. J., Gimemez, P., Jiménez-Reyes, P., Brughelli, M., Samozino, P., Morin, J.-B.Published in Frontiers in Physiology (2018)“…Brughelli, M.…”
-
2
Effects of vest loading on sprint biomechanics
Brughelli, M., Cross, M., Zouhal, H., Chaouachi, A.Published in ISBS Proceedings Archive (Michigan) (2018)“…Brughelli, M.…”
-
3
Acceleration capability in elite sprinters and ground impulse: push more, brake less?
Morin, J.-B., Slawinski, J., Dorel, S., Saez de Villarreal, E., Couturier, A., Samozino, P., Brughelli, M., Rabita, G.Published in Journal of Biomechanics (2015)“…Brughelli, M.…”
-
4
Sprint acceleration mechanics: The major role of hamstrings in horizontal force production
Morin, J.-B., Gimenez, P., Edouard, P., Arnal, P., Jimenéz-Reyes, P., Samozino, P., Brughelli, M., Mendiguchia, J.Published in Frontiers in Physiology (2015)“…Brughelli, M.…”
-
5
-
6
Optimal loading for maximizing power during sled-resisted sprinting
Cross, M. R., Brughelli, M., Samozino, P., Brown, S. R., Morin, J.-B.Published in International Journal of Sports Physiology and Performance (2017)“…Brughelli, M.…”
-
7
Methods of power-force-velocity profiling during sprint running: A narrative review
Cross, M. R., Brughelli, M., Samozino, P., Morin, J.-B.Published in Sports Medicine (2017)“…Brughelli, M.…”
-
8
-
9
-
10
Does increasing maximal strength improve sprint running performance?
Cronin, J., Ogden, T., Lawton, T., Brughelli, M.Published in Strength and Conditioning Journal (2007)“…Brughelli, M.…”
Search Tools:
Related Subjects
short-distance running
strength
track and field
sprint
velocity
muscle
training
acceleration
biomechanics
leg
performance
injury
maximal strength
relation
sports medicine
adaptation
analysis
auxiliary device
ergometry
explosive strength
fatigue
foot
ground reaction force
hip
impulse
investigation method
jump
knee
load
measuring procedure