Search Results - Martin, J. C.
- Showing 1 - 20 results of 20
-
1
-
2
-
3
-
4
Simulated work loops predict maximal human cycling power
Martin, J. C., Nichols, J. A.Published in The Journal of Experimental Biology (2018)“…Martin, J. C.…”
-
5
Noncircular chainrings do not Influence maximum cycling power
Leong, C. H., Elmer, S. J., Martin, J. C.Published in Journal of Applied Biomechanics (2017)“…Martin, J. C.…”
-
6
-
7
-
8
-
9
Joint-specific power production during submaximal and maximal cycling
Elmer, S. J., Barratt, P. R., Korff, T., Martin, J. C.Published in Medicine & Science in Sports & Exercise (2011)“…Martin, J. C.…”
-
10
Effect of crank length on joint-specific power during maximal cycling
Barratt, P. R., Korff, T., Elmer, S. J., Martin, J. C.Published in Medicine & Science in Sports & Exercise (2011)“…Martin, J. C.…”
-
11
-
12
-
13
Joint-specific power loss after eccentric exercise
Elmer, S. J., Martin, J. C.Published in Medicine & Science in Sports & Exercise (2010)“…Martin, J. C.…”
-
14
Fatigue during maximal sprint cycling: Unique role of cumulative contraction cycles
Tomas, A., Ross, E. Z., Martin, J. C.Published in Medicine & Science in Sports & Exercise (2010)“…Martin, J. C.…”
-
15
Joint-specific power absorption during eccentric cycling
Elmer, S. J., Madigan, M. L., LaStayo, P. C., Martin, J. C.Published in Clinical Biomechanics (2009)“…Martin, J. C.…”
-
16
-
17
-
18
Pedal trajectory alters maximal single-leg cycling power
Martin, J. C., Lamb, S. M., Brown, N. A.Published in Medicine & Science in Sports & Exercise (2002)“…Martin, J. C.…”
-
19
-
20
Validation of a mathematical model for road cycling power
Martin, J. C., Milliken, D. L., Cobb, J. E., McFaddenPublished in Journal of Applied Biomechanics (1998)“…Martin, J. C.…”


