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Updated: Jun 17, 2026

Induction and Assessment of Exertional Skeletal Muscle Damage in Humans
Published on: December 11, 2016
The impact of damaging exercise on electromechanical delay in biceps brachii
1School of Psychology and Sport Sciences, Northumbria University, Newcastle, UK. glyn.howatson@northumbria.ac.uk
Abstract:
Electromechanical delay (EMD) can be a useful tool in providing information on muscle function changes following a number of exercise interventions. The purpose of this investigation was to examine the effect of damaging exercise on EMD. Twelve volunteers completed 45 maximal lengthening contractions of the elbow flexors. Indices of muscle damage (maximum voluntary isometric torque and isokinetic torque (60s(-1) and 210 s(-1)), creatine kinase (CK), muscle soreness (DOMS)) were recorded pre-exercise, 48 h and 96 h post-exercise; electromyography was recorded from the belly of biceps brachii and EMD was determined during each contraction condition. Significant time effects were observed for all damage indices (P<0.05). Whilst muscle function was close to full recovery at 96 h, both CK and DOMS were significantly (P<0.001) elevated above baseline. EMD was significantly greater at 96 h for all contraction conditions (P0
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