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Published on: April 18, 2011
Constant-Torque Stretching in Ankle Contractures Results in Greater Changes in Range of Motion Than Constant-Angle or
Guido Geusebroek1, Jacek Buczny2, Han Houdijk3
1Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, The Netherlands.
Objectives:
To investigate the acute (directly poststretching) and long-term (≥1 week of treatment) effects of stretching type, duration, and intensity on joint range of motion (ROM) and stiffness in ankle contractures.
Data Sources:
PubMed, Embase.com, Clarivate Analytics/Web of Science Core Collection, EBSCO/SPORTDiscus, and EBSCO/CINAHL were searched for studies published in English from inception until September 12, 2023.
Study Selection:
Fifty-five studies that met the inclusion criteria were included, covering observational, controlled and noncontrolled studies.
Data Extraction:
Pre- and post-treatment ankle ROM and stiffness, and stretching duration, intensity, and type were extracted from each eligible treatment group by 1 reviewer.
Data Synthesis:
Most studies did not quantify stretching intensity and its effect was not tested. For the acute effects on ROM, 15 effect sizes were obtained from 11 studies. ROM increased more after constant-torque (95% confidence interval [CI] [1.35, 2.15]) than after constant-angle (95% CI [0.44, 1.40] or dynamic stretching (95% CI [0.50, 1.01]), F=11.99, P=.004, I2=0%, and increased with duration (95% CI [0.00, 0.05]), F=5.12, P=.011, I2=55%. Acute effects on joint stiffness could not be assessed. For the long-term effects, 54 and 12 effect sizes were estimated from 44 and 10 studies, for ROM and stiffness, respectively. No effect of stretching duration on either outcome was found (F=0.32, P=.57, I2=78% and F=0.74, P=.409, I2=5%, respectively). No effect of stretching type on stiffness was found (F=0.02, P=.888, I2=0%). Not enough information was available to assess the long-term effects of stretch type.
Conclusions:
We conclude that constant-torque stretching acutely increases ROM more than constant-angle and dynamic stretching. To assess if these superior acute effects result in more substantial adaptations over time, future long-term studies should define stretching type more clearly. Also, torque and angle during stretching should be recorded as measures of intensity in future studies.
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