4.5 Article

In vivo hip joint loads and pedal forces during ergometer cycling

Journal

JOURNAL OF BIOMECHANICS
Volume 60, Issue -, Pages 197-202

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jbiomech.2017.06.047

Keywords

In vivo load measurement; Bicycle ergometer; Cycling; Hip joint loads; Pedal forces; Sattle height

Funding

  1. Deutsche Forschungsgemeinschaft - Germany [Be 804/19-1]
  2. German Federal Ministry of Education and Research [BMBF 01EC1408A]
  3. Deutsche Arthrose-Hilfe
  4. OrthoLoadClub
  5. German Federal Ministry of Education and Research (Overload-PrevOP)
  6. German Federal Ministry of Education and Research (SPO3)

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The rising prevalence of osteoarthritis and an increase in total hip replacements calls for attention to potential therapeutic activities. Cycling is considered as a low impact exercise for the hip joint and hence recommended. However, there are limited data about hip joint loading to support this claim. The aim of this study was to measure synchronously the in vivo hip joint loads and pedal forces during cycling. The in vivo hip joint loads were measured in 5 patients with instrumented hip implants. Data were collected at several combinations of power and cadence, at two saddle heights. Joint loads and pedal forces showed strong linear correlation with power. So the relationship between the external pedal forces and internal joint forces was shown. While cycling at different cadences the minimum joint loads were acquired at 60 RPM. The lower saddle height configuration results in an approximately 15% increase compared to normal saddle height. The results offered new insights into the actual effects of cycling on the hip joint and can serve as useful tools while developing an optimum cycling regimen for individuals with coxarthrosis or following total hip arthroplasty. Due to the relatively low contact forces, cycling at a moderate power level of 90 W at a normal saddle height is suitable for patients. (C) 2017 Elsevier Ltd. All rights reserved.

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