Search Results - Martin, J. C.
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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.…”
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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.…”
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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.…”
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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.…”
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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.…”
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The power profile predicts road cycling MMP
Quod, M. J., Martin, D. T., Martin, J. C., Laursen, P. B.Published in International Journal of Sports Medicine (2010)“…Martin, J. C.…”
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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.…”
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Velocity-specific fatigue: Quantifying fatigue during variable velocity cycling
Gardner, A. S., Martin, D. T., Jenkins, D. G., Dyer, I., van Eiden, J., Barras, M., Martin, J. C.Published in Medicine & Science in Sports & Exercise (2009)“…Martin, J. C.…”
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Aerodynamic drag area of cyclists determined with field-based measures
Martin, J. C., Gardner, A. S., Barras, M., Martin, D. T.Published in Sportscience (2006)“…Martin, J. C.…”
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cycling
performance
biomechanics
strength
muscle
fatigue
load
muscle physiology
sports equipment
joint
maximum
road cycling
velocity
high performance sport
investigation method
load intensity
relation
resistance
sprint
test
theory
track cycling
O2-uptake
analysis
carbohydrate
competition
contraction
elite sport
endurance
ergometry