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Pre-radiographic MRI findings are associated with onset of knee symptoms: the most study
M K Javaid1, J A Lynch, I Tolstykh
1Department of Epidemiology and Biostatistics, University of California, San Francisco, San Francisco, CA, USA. Kassim.Javaid@ndos.ox.ac.uk
Objective:
Magnetic resonance imaging (MRI) has greater sensitivity to detect osteoarthritis (OA) damage than radiographs but it is uncertain which MRI findings in early OA are clinically important. We examined MRI abnormalities detected in knees without radiographic OA and their association with incident knee symptoms.
Method:
Participants from the Multicenter Osteoarthritis Study (MOST) without frequent knee symptoms (FKS) at baseline were eligible if they also lacked radiographic features of OA at baseline. At 15 months, knees that developed FKS were defined as cases while control knees were drawn from those that remained without FKS. Baseline MRIs were scored at each subregion for cartilage lesions (CARTs); osteophytes (OST); bone marrow lesions (BML) and cysts. We compared cases and controls using marginal logistic regression models, adjusting for age, gender, race, body mass index (BMI), previous injury and clinic site.
Results:
36 case knees and 128 control knees were analyzed. MRI damage was common in both cases and controls. The presence of a severe CART (P=0.03), BML (P=0.02) or OST (P=0.02) in the whole knee joint was more common in cases while subchondral cysts did not differ significantly between cases and controls (P>0.1). Case status at 15 months was predicted by baseline damage at only two locations; a BML in the lateral patella (P=0.047) and at the tibial subspinous subregions (P=0.01).
Conclusion:
In knees without significant symptoms or radiographic features of OA, MRI lesions of OA in only a few specific locations preceded onset of clinical symptoms and suggest that changes in bone play a role in the early development of knee pain. Confirmation of these findings in other prospective studies of knee OA is warranted.
Insights
Magnetic resonance imaging (MRI) can detect early osteoarthritis (OA) damage. Bone marrow lesions (BML) and osteophytes in specific knee locations predict future knee pain, suggesting bone changes are key in early OA development.
Area of Science:
- Orthopedics
- Radiology
- Rheumatology
Background:
- Radiographs have limited sensitivity for early osteoarthritis (OA) detection compared to magnetic resonance imaging (MRI).
- Identifying clinically significant MRI findings in early OA is crucial for understanding disease progression.
Purpose of the Study:
- To investigate the association between MRI-detected abnormalities in knees without radiographic OA and the development of incident knee symptoms.
- To determine which specific MRI findings predict the onset of knee pain in early OA.
Main Methods:
- A cohort of participants from the Multicenter Osteoarthritis Study (MOST) without radiographic OA or frequent knee symptoms at baseline were analyzed.
- Baseline MRIs were scored for cartilage lesions (CARTs), osteophytes (OST), bone marrow lesions (BML), and cysts.
- Marginal logistic regression models were used to compare knees that developed symptoms (cases) versus those that did not (controls) at 15 months, adjusting for covariates.
Main Results:
- MRI-detected damage was prevalent in both case and control knees.
- Severe cartilage lesions, bone marrow lesions, and osteophytes in the whole joint were more common in knees that developed symptoms.
- Baseline bone marrow lesions in the lateral patella and tibial subspinous regions significantly predicted the development of knee symptoms.
Conclusions:
- In knees without significant radiographic OA, specific MRI-detected lesions, particularly bone marrow lesions in certain locations, precede the onset of clinical knee pain.
- These findings suggest that changes in bone are important in the early development of knee OA and associated pain.
- Further prospective studies are needed to confirm these results in knee OA.
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