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Applied Physiology, Nutrition, and Metabolism = Physiologie Appliquee, Nutrition Et Metabolisme|May 5, 2018
The role of the nervous system in neuromuscular fatigue induced by ultra-endurance exerciseGuillaume Y Millet, Vincent Martin, John TemesiJournal of the Neurological Sciences|March 22, 2017
Reliability of single- and paired-pulse transcranial magnetic stimulation for the assessment of knee extensor muscle functionJohn Temesi, Sandy N Ly, Guillaume Y MilletEuropean Journal of Applied Physiology|September 18, 2009
Effect of carbohydrate ingestion on exercise performance and carbohydrate metabolism in persons with spinal cord injuryJohn Temesi, Kieron Rooney, Jacqui Raymond, et al.Experimental Brain Research|November 3, 2020
Use of transcranial magnetic stimulation to assess relaxation rates in unfatigued and fatigued knee-extensor musclesGianluca Vernillo, Arash Khassetarash, Guillaume Y Millet, et al.Medicine and Science in Sports and Exercise|October 10, 2017
Mechanisms of Fatigue and Recovery in Upper versus Lower Limbs in MenGianluca Vernillo, John Temesi, Matthieu Martin, et al.Journal of Sports Sciences|August 4, 2018
Do aerobic characteristics explain isometric exercise-induced neuromuscular fatigue and recovery in upper and lower limbs?Gianluca Vernillo, John Temesi, Matthieu Martin, et al.Journal of Neuroengineering and Rehabilitation|March 25, 2014
Resting and active motor thresholds versus stimulus-response curves to determine transcranial magnetic stimulation intensity in quadriceps femorisJohn Temesi, Mathieu Gruet, Thomas Rupp, et al.Muscle & Nerve|July 16, 2013
Effect of different approaches to target force on transcranial magnetic stimulation responsesMathieu Gruet, John Temesi, Thomas Rupp, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|September 13, 2019
Neurophysiological responses and adaptation following repeated bouts of maximal lengthening contractions in young and older adultsJakob Škarabot, Paul Ansdell, John Temesi, et al.Neuroscience Letters|June 15, 2016
Anticipation of magnetic and electrical stimuli does not impair maximal voluntary force productionArthur Peyrard, Paul Sawh, Selina Fan, et al.Pageof 5