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Calf muscle stretching is ineffective in increasing ankle range of motion or reducing plantar pressures in people with diabetes and ankle equinus: A randomised controlled trial

  • A. Searle
  • , M.J. Spink
  • , C. Oldmeadow
  • , S. Chiu
  • , V.H. Chuter

Research output: Contribution to journalArticlepeer-review

14 Citations (Scopus)

Abstract

Background: Limited ankle dorsiflexion, or equinus, is associated with elevated plantar pressures, which have been implicated in the development and non-healing of foot ulcer. A stretching intervention may increase ankle dorsiflexion and reduce plantar pressures in people with diabetes. Methods: Two arm parallel randomised controlled trial from September 2016 to October 2017. Adults with diabetes and ankle equinus (≤5° dorsiflexion) were randomly allocated to receive an 8 week static calf stretching intervention or continue with their normal activities. Primary outcome measures were change in weight bearing and non-weight bearing ankle dorsiflexion and forefoot peak plantar pressure. Secondary outcome measures were forefoot pressure time integrals and adherence to the stretching intervention. Findings: 68 adults (mean (standard deviation) age and diabetes duration 67.4 (10.9) years and 14.0 (10.8) years, 64.7% male) were randomised to stretch (n = 34) or usual activity (n = 34). At follow up, no significant differences were seen between groups (adjusted mean difference) for non-weight (+1.3°, 95% CI:−0.3 to 2.9, p = 0.101) and weight bearing ankle dorsiflexion (+0.5°, 95% CI:−2.6 to 3.6, p = 0.743) or forefoot in-shoe (+1.5 kPa, 95% CI:−10.0 to 12.9, p = 0.803) or barefoot peak pressures (−19.1 kPa, 95% CI:−96.4 to 58.1, p = 0.628). Seven of the intervention group and two of the control group were lost to follow up. Interpretation: Our data failed to show a statistically significant or clinically meaningful effect of static calf muscle stretching on ankle range of motion, or plantar pressures, in people with diabetes and ankle equinus.
Original languageEnglish
Pages (from-to)52-57
Number of pages6
JournalClinical Biomechanics
Volume69
DOIs
Publication statusPublished - 2019

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This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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