Search Results - Barras, M.
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1
The contribution of haemoglobin mass to altitude induced increases in 4 minute cycling power
Garvican, L., Pottgiesser, T., Martin, D. T., Barras, M., Fallon, K., Schumacher, Y. O., Hore, C. J.congress proceedings“…Barras, M.…”
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2
The contribution of haemoglobin mass to increases in cycling performance induced by simulated LHTL
Garvican, L. A., Pottgiesser, T., Martin, D. T., Schumacher, Y. O., Barras, M., Gore, C. J.Published in European Journal of Applied Physiology (2011)article“…Barras, M.…”
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3
Maximal torque- and power-pedaling rate relationships for elite sprint cyclists in laboratory and field tests
Gardner, A. S., Martin, J. C., Martin, D. T., Barras, M., Jenkins, D. G.Published in European Journal of Applied Physiology (2007)article“…Barras, M.…”
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4
Is long slow distance (LSD) required for the elite endurance athlete?
Martin, D., Barras, M.Published in 14th annual Congress of the European College of Sport Science, Oslo/Norway, June 24-27, 2009, Book of Abstracts (2009)congress proceedings“…Barras, M.…”
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5
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)article“…Barras, M.…”
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6
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)electronical journal“…Barras, M.…”
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7
Modeling sprint cycling using field-derived parameters and forward integration
Martin, J. C., Gardner, A. S., Barras, M., Martin, D. T.Published in Medicine & Science in Sports & Exercise (2005)article“…Barras, M.…”
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8
Power output demands of elite track sprint cycling
Gardner, A., Martin, D., Barras, M., Jenkins, D., Hahn, A.Published in Journal of Science and Medicine in Sport (2003)congress proceedings“…Barras, M.…”
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cycling
elite sport
high performance sport
performance
sprint
O2-uptake
aerodynamics
endurance events
high-altitude training
maximum
relation
technique
track cycling
velocity
aerobic
biomechanics
blood
brain
competition
fatigue
female
field test
investigation method
load
load intensity
load volume
long-term endurance
modelling
moment
motor skill