David Copithorne
Affiliations: | Kinesiology | Memorial University of Newfoundland, St. John's, Newfoundland and Labrador, Canada |
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Publications
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Copithorne DB, Hali K, Rice CL. (2020) The effect of blood flow on tibialis anterior motor unit firing rates during sustained low-intensity isometric contractions. Applied Physiology, Nutrition, and Metabolism = Physiologie Appliquee, Nutrition Et Metabolisme |
Copithorne DB, Rice CL, McNeil CJ. (2020) The effect of blood flow occlusion on corticospinal excitability during sustained low-intensity isometric elbow flexion. Journal of Neurophysiology |
Hodgson MD, Keir DA, Copithorne DB, et al. (2018) Power reserve following ramp-incremental cycling to exhaustion: implications for muscle fatigue and function. Journal of Applied Physiology (Bethesda, Md. : 1985) |
Keir DA, Copithorne DB, Hodgson MD, et al. (2016) The slow component of pulmonary O2 uptake accompanies peripheral muscle fatigue during high intensity exercise. Journal of Applied Physiology (Bethesda, Md. : 1985). jap.00249.2016 |
Cowling BL, Harwood B, Copithorne DB, et al. (2016) Rate modulation of human anconeus motor units during high-intensity dynamic elbow extensions. Journal of Applied Physiology (Bethesda, Md. : 1985). jap.00131.2016 |
Aboodarda SJ, Copithorne DB, Pearcey GE, et al. (2015) Changes in supraspinal and spinal excitability of the biceps brachii following brief, non-fatiguing submaximal contractions of the elbow flexors in resistance-trained males. Neuroscience Letters. 607: 66-71 |
Aboodarda SJ, Copithorne DB, Power KE, et al. (2015) Elbow flexor fatigue modulates central excitability of the knee extensors. Applied Physiology, Nutrition, and Metabolism = Physiologie AppliquéE, Nutrition Et MéTabolisme. 40: 924-30 |
Copithorne DB, Forman DA, Power KE. (2014) Premovement Changes in Corticospinal Excitability of the Biceps Brachii are not Different Between Arm Cycling and an Intensity-Matched Tonic Contraction. Motor Control |
Halperin I, Copithorne D, Behm DG. (2014) Unilateral isometric muscle fatigue decreases force production and activation of contralateral knee extensors but not elbow flexors. Applied Physiology, Nutrition, and Metabolism = Physiologie AppliquéE, Nutrition Et MéTabolisme. 39: 1338-44 |
Aboodarda SJ, Power K, Copithorne D, et al. (2014) Upper Body Fatiguing Protocols Decreased Voluntary Activation And Increased Motoneurone Excitability Of Non-Fatigued Knee Extensors. Medicine & Science in Sports & Exercise. 46: 857-858 |