Effects of daily static stretch training over 6 weeks on maximal strength, muscle thickness, contraction properties, and flexibility
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Title
Effects of daily static stretch training over 6 weeks on maximal strength, muscle thickness, contraction properties, and flexibility
Authors
Keywords
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Journal
Frontiers in Sports and Active Living
Volume 5, Issue -, Pages -
Publisher
Frontiers Media SA
Online
2023-04-17
DOI
10.3389/fspor.2023.1139065
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Related references
Note: Only part of the references are listed.- Influence of Long-Lasting Static Stretching on Maximal Strength, Muscle Thickness and Flexibility
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- (2020) Shigeru Sato et al. PLoS One
- An Anabolic Signaling Response of Rat Soleus Muscle to Eccentric Contractions Following Hindlimb Unloading: A Potential Role of Stretch-Activated Ion Channels
- (2019) Sergey Tyganov et al. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
- Repeated stimulation, inter-stimulus interval and inter-electrode distance alters muscle contractile properties as measured by Tensiomyography
- (2018) Hannah V. Wilson et al. PLoS One
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- Stretch training induces unequal adaptation in muscle fascicles and thickness in medial and lateral gastrocnemii
- (2017) C. L. Simpson et al. SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS
- Can chronic stretching change the muscle-tendon mechanical properties? A review
- (2017) S. R. Freitas et al. SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS
- Muscle mechanical properties of strength and endurance athletes and changes after one week of intensive training
- (2016) Rauno Álvaro de Paula Simola et al. JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY
- The effects of a 4-week static stretching programme on the individual muscles comprising the hamstrings
- (2016) Noriaki Ichihashi et al. JOURNAL OF SPORTS SCIENCES
- Test-retest reliability of seven common clinical tests for assessing lower extremity muscle flexibility in futsal and handball players
- (2015) Antonio Cejudo et al. PHYSICAL THERAPY IN SPORT
- Increased range of motion after static stretching is not due to changes in muscle and tendon structures
- (2014) Andreas Konrad et al. CLINICAL BIOMECHANICS
- Range of motion, neuromechanical, and architectural adaptations to plantar flexor stretch training in humans
- (2014) A. J. Blazevich et al. JOURNAL OF APPLIED PHYSIOLOGY
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- (2012) Kelly M. M. e Lima et al. CLINICAL PHYSIOLOGY AND FUNCTIONAL IMAGING
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- (2011) K. L. Flann et al. JOURNAL OF EXPERIMENTAL BIOLOGY
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