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Conditioned pain modulation does not differ between people with lower-limb tendinopathy and non-tendinopathy controls: a systematic review with individual participant data meta-analysis

  • Myles C. Murphy
  • , Nonhlanhla Mkumbuzi
  • , Jordan Keightley
  • , William Gibson
  • , Patrick Vallance
  • , Henrik Riel
  • , Melanie Plinsinga
  • , Ebonie K. Rio
  • Edith Cowan University
  • The University of Notre Dame Australia
  • Northumbria University, Newcastle
  • Midlands State University
  • Nelson Mandela University
  • NtombiSport
  • Monash University
  • Aalborg Universitet
  • Center for Almen Medicin ved Aalborg Universitet
  • Griffith University
  • University of the Sunshine Coast
  • The Australian Ballet
  • Victorian Institute of Sport
  • La Trobe University

Publikation: Bidrag til tidsskriftReviewpeer review

Abstract

OBJECTIVE: To explore whether people with lower-limb tendinopathy have reduced relative conditioned pain modulation (CPM) when compared to nontendinopathy controls.

DESIGN: Systematic review with individual participant data (IPD) meta-analysis.

LITERATURE SEARCH: Eight databases were searched until August 29, 2022.

STUDY SELECTION CRITERIA: Cross-sectional studies comparing the magnitude of the CPM effect in people with lower-limb tendinopathy to nontendinopathy controls in a case-control design.

DATA SYNTHESIS: Included studies provided IPD, which was reported using descriptive statistics. Generalized estimating equations (GEEs) determined between-group differences in the relative CPM effect, when adjusting for co-variables. Study quality was assessed using a Joanna Briggs Institute checklist, and certainty of the evidence was assessed using the Grading of Recommendations Assessment, Development, and Evaluations.

RESULTS: Five records were included, IPD were provided for 4 studies (n = 219 with tendinopathy, n = 226 controls). The principal GEE (model 1) found no significant relative CPM effects for tendinopathy versus controls (B = −1.73, P = .481). Sex (B = 4.11, P = .160), age (B = −0.20, P = .109), and body mass index (B = 0.28, P = .442) did not influence relative CPM effect. The Achilles region had a reduced CPM effect (B = −22.01, P = .009). In model 2 (adjusting for temperature), temperature (B = −2.86, P = .035) and female sex (B = 21.01, P = .047) were associated with the size of the relative CPM effect. All studies were low-quality, and the certainty of the evidence was moderate.

CONCLUSION: There were no between-group differences in the magnitude of the CPM effect, suggesting clinicians should manage lower-limb tendinopathy using interventions appropriate for peripherally dominant pain (eg, tendon loading exercises such as heavy slow resistance). Based on the “moderate”-certainty evidence, future studies are unlikely to substantially change these findings. J Orthop Sports Phys Ther 2024;54(1):50-59. Epub 19 October 2023. doi:10.2519/jospt.2023.11940
OriginalsprogEngelsk
TidsskriftJournal of Orthopaedic and Sports Physical Therapy
Vol/bind54
Udgave nummer1
Sider (fra-til)50-59
Antal sider10
ISSN0190-6011
StatusUdgivet - 2024
Udgivet eksterntJa

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