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Comparison Between High- and Low-Intensity Static Stretching Training Program on Active and Passive Properties of Plantar Flexors

Masatoshi Nakamura, Riku Yoshida, Shigeru Sato, Kaoru Yahata, Yuta Murakami, Kazuki Kasahara, Taizan Fukaya, Kosuke Takeuchi, João Pedro Nunes, Andreas Konrad

2021Frontiers in Physiology59 citationsDOIOpen Access PDF

Abstract

The purpose of this study was to compare two static stretching (SS) training programs at high-intensity (HI-SS) and low-intensity (LI-SS) on passive and active properties of the plantar flexor muscles. Forty healthy young men were randomly allocated into three groups: HI-SS intervention group ( n = 14), LI-SS intervention group ( n = 13), and non-intervention control group ( n = 13). An 11-point numerical scale (0–10; none to very painful stretching) was used to determine SS intensity. HI-SS and LI-SS stretched at 6–7 and 0–1 intensities, respectively, both in 3 sets of 60 s, 3×/week, for 4 weeks. Dorsiflexion range of motion (ROM), gastrocnemius muscle stiffness, muscle strength, drop jump height, and muscle architecture were assessed before and after SS training program. The HI-SS group improved more than LI-SS in ROM (40 vs. 15%) and decreased muscle stiffness (−57 vs. −24%), while no significant change was observed for muscle strength, drop jump height, and muscle architecture in both groups. The control group presented no significant change in any variable. Performing HI-SS is more effective than LI-SS for increasing ROM and decreasing muscle stiffness of plantar flexor muscles following a 4-week training period in young men. However, SS may not increase muscle strength or hypertrophy, regardless of the stretching discomfort intensity.

Topics & Concepts

Static stretchingIntensity (physics)MedicineMuscle stiffnessPhysical therapyRange of motionMuscle architecturePlantar flexionMuscle hypertrophyPhysical medicine and rehabilitationPassive stretchingStrength trainingStiffnessMaterials scienceAnatomyInternal medicineAnklePhysicsComposite materialQuantum mechanicsSports injuries and preventionMusculoskeletal pain and rehabilitationShoulder Injury and Treatment
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