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Published in: Sport Sciences for Health 3/2018

01-12-2018 | Original Article

Effects of a prophylactic knee bracing on patellofemoral loading during cycling

Authors: Jonathan Sinclair, Bobbie Butters, Darrell Brooks, Philip Stainton

Published in: Sport Sciences for Health | Issue 3/2018

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Abstract

Purpose

The aim of the current investigation was to utilize a musculoskeletal simulation approach to examine the effects of prophylactic knee bracing on patellofemoral joint loading during the pedal cycle.

Methods

Twenty-four (12 male and 12 female) healthy recreational cyclists rode a stationary cycle ergometer at fixed cadences of 70, 80 and 90 RPM in two different conditions (brace and no-brace). Patellofemoral loading was explored using a musculoskeletal simulation approach and participants were also asked to subjectively rate their perceived stability and comfort whilst wearing the brace.

Results

The results showed that the integral of the patellofemoral joint stress was significantly lower in the brace condition (male: 70 RPM = 8.89, 80 RPM = 9.76, and 90 RPM = 12.30 KPa/kg s and female: 70 RPM = 11.59, 80 RPM = 13.07 and 90 RPM = 14.14 KPa/kg s) compared to no-brace (male: 70 RPM = 10.23, 80 RPM = 10.96 and 90 RPM = 13.20 and female: 70 RPM = 12.43, 80 RPM = 14.04 and 90 RPM = 15.45 KPa/kg s). In addition, it was also revealed that participants rated that the knee brace significantly improved perceived knee joint stability.

Conclusions

The findings from the current investigation, therefore, indicate that prophylactic knee bracing may have the potential to attenuate the risk from the biomechanical parameters linked to the aetiology of patellofemoral pain in cyclists. Future, longitudinal analyses are required to confirm the efficacy of prophylactic knee braces for the attenuation of patellofemoral pain symptoms in cyclists.
Literature
13.
go back to reference Martin TJ (2001) Technical report: knee brace use in the young athlete. Pediatrics 108: 503–507CrossRef Martin TJ (2001) Technical report: knee brace use in the young athlete. Pediatrics 108: 503–507CrossRef
16.
go back to reference Theobald G, Parry S, Richards J, Thewlis D, Tootill I, Selfe J (2012) Biomechanical effects of different treatment modalities used in knee pain during cycling. Physiother Pract Res 33:16–21 Theobald G, Parry S, Richards J, Thewlis D, Tootill I, Selfe J (2012) Biomechanical effects of different treatment modalities used in knee pain during cycling. Physiother Pract Res 33:16–21
17.
33.
go back to reference Hannaford DR, Moran GT, Hlavac HF (1986) Video analysis and treatment of overuse knee injury in cycling: a limited clinical study. Clin Podiatr Med Surg 3:671–678PubMed Hannaford DR, Moran GT, Hlavac HF (1986) Video analysis and treatment of overuse knee injury in cycling: a limited clinical study. Clin Podiatr Med Surg 3:671–678PubMed
34.
go back to reference Bailey M, Messenger N (1995) Coronal plane kinematics of cycling and their relationship to injury. J Sport Sci 14:3–4 Bailey M, Messenger N (1995) Coronal plane kinematics of cycling and their relationship to injury. J Sport Sci 14:3–4
Metadata
Title
Effects of a prophylactic knee bracing on patellofemoral loading during cycling
Authors
Jonathan Sinclair
Bobbie Butters
Darrell Brooks
Philip Stainton
Publication date
01-12-2018
Publisher
Springer Milan
Published in
Sport Sciences for Health / Issue 3/2018
Print ISSN: 1824-7490
Electronic ISSN: 1825-1234
DOI
https://doi.org/10.1007/s11332-018-0482-x

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