Is the force-length relationship a useful indicator of contractile element damage following eccentric exercise?
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference23 articles.
1. Intracellular calcium and force in single mouse muscle fibres following repeated contractions with stretch;Balnave;Journal of Physiology,1995
2. Damage to different motor units from active lengthening of the medial gastrocnemius muscle of the cat;Brockett;Journal of Applied Physiology,2002
3. Human hamstring muscles adapt to eccentric exercise by changing optimum length;Brockett;Medicine and Science in Sports and Exercise,2001
4. Impact of muscle length during stretch-shortening contractions on real-time and temporal muscle performance measures in rats in vivo;Cutlip;Journal of Applied Physiology,2004
5. Stretch-induced increase in activation of skinned muscle fibres by calcium;Endo;Nature-New Biology,1972
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3. PORTABLE FIXED DYNAMOMETRY TO QUANTIFY ANKLE DORSIFLEXION FORCE;Muscle & Nerve;2019-04-07
4. Effectiveness of a Home-Based Eccentric-Exercise Program on the Torque-Angle Relationship of the Shoulder External Rotators: A Pilot Study;Journal of Sport Rehabilitation;2017-03
5. Muscle force loss and soreness subsequent to maximal eccentric contractions depend on the amount of fascicle strainin vivo;Acta Physiologica;2016-02-02
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