In vivo cartilage deformation after different types of activity and its dependence on physical training status
Open Access
- 1 February 2005
- journal article
- other
- Published by Elsevier in Annals of the Rheumatic Diseases
- Vol. 64 (2) , 291-295
- https://doi.org/10.1136/ard.2004.022400
Abstract
Background: Knowledge of the deformational behaviour of articular cartilage in vivo is required to understand the pathogenesis of osteoarthritis and the mechanical target environment of prospective cartilage transplant recipients. Objectives: To study the in vivo deformational behaviour of patellar and femorotibial cartilage for different types of physiological activities; and to test the hypothesis that in vivo deformation of cartilage is modified by intense physical exercise. Methods: Magnetic resonance imaging and 3D digital image analysis were used to determine cartilage volume before and after physical activity in the patella of 12 volunteers (knee bends, squatting, normal gait, running, cycling). Deformation of femorotibial cartilage was investigated in 10 subjects (knee bends, static compression, high impact loading). Patellar cartilage deformation after knee bends was compared in seven professional weight lifters, seven sprinters, and 14 untrained volunteers. Results: Patellar cartilage deformation was −5.9% after knee bends, −4.7% after squatting, −2.8% after normal walking, −5.0% after running, and −4.5% after cycling. The pattern of patellar cartilage deformation corresponded to the range of motion involved in the particular activity. Tibial cartilage deformation was greatest under high impact loading (−7%), but small for other activities. No significant difference was found between athletes and non-athletic controls. Conclusions: Patellar cartilage deformation shows a “dose dependent” response, where more intense loading leads to greater deformation. Relatively little deformation was observed in the femorotibial joint, except during high impact activities. The findings provide no evidence that adult human cartilage properties are amendable to training effects in vivo.Keywords
This publication has 29 references indexed in Scilit:
- Knee cartilage of spinal cord–injured patients displays progressive thinning in the absence of normal joint loading and movementArthritis & Rheumatism, 2002
- The effects of immobilization on the characteristics of articular cartilage: current concepts and future directionsOsteoarthritis and Cartilage, 2002
- Age-related changes in the morphology and deformational behavior of knee joint cartilageArthritis & Rheumatism, 2001
- Magnetic resonance imaging-based assessment of cartilage loss in severe osteoarthritis: Accuracy, precision, and diagnostic valueArthritis & Rheumatism, 2001
- In vivo morphometry and functional analysis of human articular cartilage with quantitative magnetic resonance imaging - from image to data, from data to theoryBrain Structure and Function, 2001
- Elastic registration of 3D cartilage surfaces from MR image data for detecting local changes in cartilage thicknessMagnetic Resonance in Medicine, 2000
- MRI Techniques in Early Stages of Cartilage DiseaseInvestigative Radiology, 2000
- Patellar cartilage deformation in vivo after static versus dynamic loadingJournal of Biomechanics, 2000
- Diurnal variation in the femoral articular cartilage of the knee in young adult humansMagnetic Resonance in Medicine, 2000
- Interobserver reproducibility of quantitative cartilage measurements: comparison of B-spline snakes and manual segmentationMagnetic Resonance Imaging, 1999