T-2 mapping of the meniscus is a biomarker for early osteoarthritis
Autor: | Susanne M. Eijgenraam, Kazem Nasserinejad, Marinus A. Wesdorp, Duncan E. Meuffels, Yvonne M. Bastiaansen-Jenniskens, Edwin H.G. Oei, Max Reijman, Frans A. T. Bovendeert, Joost Verschueren, Jasper van Tiel, Stefan Klein, Jamal Guenoun |
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Přispěvatelé: | Orthopedics and Sports Medicine, Radiology & Nuclear Medicine, Hematology, Medical Informatics |
Rok vydání: | 2019 |
Předmět: |
medicine.medical_specialty
medicine.diagnostic_test business.industry Radiography Ultrasound Magnetic resonance imaging Histology General Medicine Osteoarthritis Meniscus (anatomy) medicine.disease 030218 nuclear medicine & medical imaging 03 medical and health sciences 0302 clinical medicine medicine.anatomical_structure 030220 oncology & carcinogenesis Medicine Biomarker (medicine) Radiology Nuclear Medicine and imaging Radiology business Neuroradiology |
Zdroj: | European Radiology, 29(10), 5664-5672. Springer-Verlag |
ISSN: | 1432-1084 0938-7994 |
Popis: | To evaluate in vivo T2 mapping as quantitative, imaging-based biomarker for meniscal degeneration in humans, by studying the correlation between T2 relaxation time and degree of histological degeneration as reference standard. In this prospective validation study, 13 menisci from seven patients with radiographic knee osteoarthritis (median age 67 years, three males) were included. Menisci were obtained during total knee replacement surgery. All patients underwent pre-operative magnetic resonance imaging using a 3-T MR scanner which included a T2 mapping pulse sequence with multiple echoes. Histological analysis of the collected menisci was performed using the Pauli score, involving surface integrity, cellularity, matrix organization, and staining intensity. Mean T2 relaxation times were calculated in meniscal regions of interest corresponding with the areas scored histologically, using a multi-slice multi-echo postprocessing algorithm. Correlation between T2 mapping and histology was assessed using a generalized least squares model fit by maximum likelihood. The mean T2 relaxation time was 22.4 ± 2.7 ms (range 18.5–27). The median histological score was 10, IQR 7–11 (range 4–13). A strong correlation between T2 relaxation time and histological score was found (rs = 0.84, CI 95% 0.64–0.93). In vivo T2 mapping of the human meniscus correlates strongly with histological degeneration, suggesting that T2 mapping enables the detection and quantification of early compositional changes of the meniscus in knee OA. • Prospective histology-based study showed that in vivo T 2 mapping of the human meniscus correlates strongly with histological degeneration. • Meniscal T 2 mapping allows detection and quantifying of compositional changes, without need for contrast or special MRI hardware. • Meniscal T 2 mapping provides a biomarker for early OA, potentially allowing early treatment strategies and prevention of OA progression. |
Databáze: | OpenAIRE |
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