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Comprehensive Physiology|January 31, 2017
Modulation of Skeletal Muscle Contraction by Myosin PhosphorylationRene Vandenboom
Canadian Journal of Applied Physiology = Revue Canadienne De Physiologie Appliquee|June 17, 2004
The myofibrillar complex and fatigue: a reviewRene Vandenboom
Physiological Reports|December 3, 2022
Posttetanic potentiation improves neuromuscular efficiency of mouse muscle in vitroRyan Laidlaw, Rene Vandenboom
Journal of Muscle Research and Cell Motility|June 30, 2022
The effect of muscle length on post-tetanic potentiation of C57BL/6 and skMLCK-/- mouse EDL musclesAngelos Angelidis, Rene Vandenboom
Molecular Interventions|March 3, 2004
A "wringing" endorsement for myosin phosphorylation in the heartRene Vandenboom, Joseph M Metzger
Pflugers Archiv : European Journal of Physiology|November 30, 2016
Myosin light chain phosphorylation is required for peak power output of mouse fast skeletal muscle in vitroJoshua Bowslaugh, William Gittings, Rene Vandenboom
Journal of Muscle Research and Cell Motility|March 3, 2017
Shortening speed dependent force potentiation is attenuated but not eliminated in skeletal muscles without myosin phosphorylationWilliam Gittings, Jordan Bunda, Rene Vandenboom
The Journal of Experimental Biology|January 24, 2018
Myosin phosphorylation improves contractile economy of mouse fast skeletal muscle during staircase potentiationJordan Bunda, William Gittings, Rene Vandenboom
Journal of Muscle Research and Cell Motility|October 12, 2012
Tetanic force potentiation of mouse fast muscle is shortening speed dependentWilliam Gittings, Jian Huang, Rene Vandenboom
American Journal of Physiology. Cell Physiology|December 25, 2023
Potentiation of force by extracellular potassium is not dependent on muscle length in mouse EDL muscleAngelos Angelidis, Kristian Overgaard, Rene Vandenboom
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