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Time Course Of Changes In Torque And Neuromuscular Parameters During A Sustained Isometric Forearm Flexion Task To Fatigue Anchored To A Constant Rating Of Perceived Exertion, Robert W. Smith, Terry J. Housh, John Paul V. Anders, Tyler J. Neltner, Jocelyn E. Arnett, Richard Schmidt, Glen O. Johnson
Time Course Of Changes In Torque And Neuromuscular Parameters During A Sustained Isometric Forearm Flexion Task To Fatigue Anchored To A Constant Rating Of Perceived Exertion, Robert W. Smith, Terry J. Housh, John Paul V. Anders, Tyler J. Neltner, Jocelyn E. Arnett, Richard Schmidt, Glen O. Johnson
Department of Nutrition and Health Sciences: Faculty Publications
Objective: This study examined the time course of changes in torque and electromyographic (EMG) and mechanomyographic (MMG) responses during a sustained isometric task anchored to a constant perception of exertion (RPE). Methods: Twelve college-aged men performed an isometric forearm flexion task to failure anchored to RPE=7 (OMNI-RES scale). The amplitude (AMP) and frequency (MPF) of the EMG and MMG signals from the biceps brachii were recorded. Repeated measures ANOVAs were used to examine differences for the normalized (%MVIC) torque and neuromuscular parameters. Results: The time to task failure (TTF) was 678.0±468.1s. Torque decreased significantly (p<0.001, ηp 2=0.774) …0.001,>