The double‐hyperbolic force‐velocity relationship in humans
Author:
Affiliation:
1. GENUD Toledo Research Group Universidad de Castilla‐La Mancha Toledo Spain
2. CIBER of Frailty and Healthy Aging (CIBERFES) Madrid Spain
Publisher
Wiley
Subject
Physiology
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/apha.13165
Reference12 articles.
1. Effects of manipulating tetanic calcium on the curvature of the force-velocity relationship in isolated rat soleus muscles
2. Force-velocity properties of human skeletal muscle fibres: myosin heavy chain isoform and temperature dependence.
3. Changes in the force-velocity relationship of fatigued muscle: implications for power production and possible causes
4. The heat of shortening and the dynamic constants of muscle
5. Non-Hyperbolic Force-Velocity Relationship in Single Muscle Fibres1
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2. Effectiveness of individualized training based on force–velocity profiling on physical function in older men;Scandinavian Journal of Medicine & Science in Sports;2022-03-22
3. Dose–Response Relationship Between Velocity Loss During Resistance Training and Changes in the Squat Force–Velocity Relationship;International Journal of Sports Physiology and Performance;2021-12-01
4. Comparison of linear, hyperbolic and double-hyperbolic models to assess the force–velocity relationship in multi-joint exercises;European Journal of Sport Science;2020-05-04
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