Quantification of T2 relaxation changes in articular cartilage with in situ mechanical loading of the knee
Author:
Publisher
Wiley
Subject
Radiology Nuclear Medicine and imaging
Reference18 articles.
1. Accuracy of T2-weighted fast spin-echo MR imaging with fat saturation in detecting cartilage defects in the knee: comparison with arthroscopy in 130 patients.
2. Mapping the Physiological Parameters of Articular Cartilage with Magnetic Resonance Imaging
3. Human Articular Cartilage: Influence of Aging and Early Symptomatic Degeneration on the Spatial Variation of T2—Preliminary Findings at 3 T
4. Fat-suppressed three-dimensional spoiled gradient-echo MR imaging of hyaline cartilage defects in the knee: comparison with standard MR imaging and arthroscopy.
5. Comparison of MR sequences in quantifying in vitro cartilage degeneration in osteoarthritis of the knee.
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1. Baseline‐to‐loaded changes in regional tibial cartilage thickness, T1ρ and T2: Utilization of an MRI compatible loading device;Journal of Orthopaedic Research;2024-08-23
2. T1ρ relaxation mapping in osteochondral lesions of the talus: a non-invasive biomarker for altered biomechanical properties of hyaline cartilage?;European Radiology Experimental;2024-07-24
3. Rapid Whole-Knee Quantification of Cartilage Using $T_{1}$, $T_{2}^*$, and $T_{RAFF2}$ Mapping With Magnetic Resonance Fingerprinting;IEEE Transactions on Biomedical Engineering;2023-11
4. Time‐Resolved Quantification of Patellofemoral Cartilage Deformation in Response to Loading and Unloading via Dynamic MRI With Prospective Motion Correction;Journal of Magnetic Resonance Imaging;2023-09-05
5. Immediate and Delayed Effects of Joint Loading Activities on Knee and Hip Cartilage: A Systematic Review and Meta-analysis;Sports Medicine - Open;2023-07-14
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