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Development and validation of a severity-focused score for the assessment of lateral epicondylitis using enhanced
Seunghun Lee1, Woo Sung Jung2, Keong Yoon Kim3
1Department of Radiology, Hanyang University College of Medicine, Seoul, Republic of Korea.
Background:
Magnetic resonance imaging (MRI) does not sufficiently reflect the severity of lateral epicondylitis. Although some authors have reported meaningful findings on conventional MRI, it is not widely accepted that MRI is useful for evaluating lateral epicondylitis. The aim of this study is to evaluate the relationship between the lateral epicondylitis severity score (LESS) using contrast-enhanced T1-weighted MRI and patients' perceptive pain and clinical courses.
Methods:
This retrospective study included 80 patients diagnosed with lateral epicondylitis and who also went contrast-enhanced 3.0-T MRI. The study cohort was split into a development (n = 50) and a validation cohort (n = 30). The patient's pain was assessed using a visual analog scale (VAS), and the involvement of the common extension tendon (CET) origin, radial collateral ligament, lateral ulnar collateral ligament, and plica were evaluated using T2-weighted images. The enhancement of CET and subcutaneous tissue was scored using a novel classification in the contrast-enhanced T1-weighted MRI. LESS was calculated from MRI findings to determine the severity of lateral epicondylitis. Pearson's correlation analysis was performed to evaluate the relationship between patients' VAS scores and MRI findings. Receiver operating characteristic curve was constructed to determine cut-off value of LESS for the surgical treatment of lateral epicondylitis.
Results:
The average age of the development cohort (n = 50) and the validation cohort (n = 30) were 49.8 (31-66) years and 52.3 (37-67) years, and the average VAS score were 7.3 (4-9) and 7.2 (5-10) respectively. In T2-weighted image evaluation, the correlation of VAS and grade of CET, radial collateral ligament, lateral ulnar collateral ligament, and plica were -0.03 (P = .87), -0.03 (P = .87), -0.14 (P = .39), and 0.36 (P = .02). Discordant contrast enhancement in T1-weighted images compared to nonspecific T2-weighted images was observed in 46 of 50 cases (92%). A statistically significant correlation was observed between the patients' VAS and LESS scores (r = 0.67, P < .01). Area under curve was 0.76 (P < .01) and the optimal cut-off value of LESS for the surgical treatment of lateral epicondylitis was 5.5 (sensitivity 72.7%, specificity 70.6%). When the cut-off value was used to predict surgical treatment in the validation cohort, the sensitivity was 100% and the specificity was 75%.
Conclusion:
Contrast-enhanced T1-weighted images provided more detail than conventional T2-weighted images in evaluation of structural or unobserved abnormalities to assess the severity of the lateral epicondylitis, and had excellent inter- and intraobserver reliability. LESS showed significant positive correlation with pain severity. If the LESS is 5.5 or more, surgical treatment of lateral epicondylitis may need to be considered.
Insights
Contrast-enhanced MRI effectively assesses lateral epicondylitis severity. The developed Lateral Epicondylitis Severity Score (LESS) correlates with pain, guiding surgical consideration when LESS is 5.5 or higher.
Area of Science:
- Orthopedics
- Radiology
- Sports Medicine
Background:
- Conventional MRI lacks sufficient sensitivity for assessing lateral epicondylitis severity.
- Limited acceptance of MRI in routine evaluation of lateral epicondylitis.
- Need for improved imaging biomarkers to correlate with clinical presentation.
Purpose of the Study:
- To evaluate the relationship between the Lateral Epicondylitis Severity Score (LESS) derived from contrast-enhanced T1-weighted MRI and patient-reported pain.
- To assess the correlation of LESS with clinical outcomes in lateral epicondylitis.
- To determine the utility of contrast-enhanced MRI in grading lateral epicondylitis severity.
Main Methods:
- Retrospective analysis of 80 patients with lateral epicondylitis undergoing contrast-enhanced 3.0-T MRI.
- Development and validation cohorts (n=50, n=30) utilized.
- Pain assessed via Visual Analog Scale (VAS); tendon and ligament involvement evaluated with T2-weighted images.
- Novel scoring system for contrast enhancement in T1-weighted images developed to calculate LESS.
- Pearson's correlation and ROC curve analysis performed.
Main Results:
- Contrast enhancement in T1-weighted MRI showed higher diagnostic value than T2-weighted images (92% concordance).
- A significant positive correlation found between patient VAS scores and LESS (r=0.67, P<.01).
- Optimal LESS cut-off value of 5.5 identified for surgical treatment consideration (sensitivity 72.7%, specificity 70.6% in development cohort; 100% sensitivity, 75% specificity in validation cohort).
Conclusions:
- Contrast-enhanced T1-weighted MRI offers superior detail for evaluating lateral epicondylitis severity compared to conventional T2-weighted MRI.
- The LESS demonstrates strong correlation with pain severity and excellent reliability.
- A LESS of 5.5 or greater suggests potential candidacy for surgical intervention in lateral epicondylitis.
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