PurposeTo evaluate the magnetic susceptibility properties of different anatomical structures within the knee joint using quantitative susceptibility mapping (QSM).MethodsA collagen tissue model was simulated and ex vivo animal cartilage experiments were conducted at 9.4 Tesla (T) to evaluate the B0 orientation-dependent magnetic susceptibility contrast observed in cartilage. Furthermore, nine volunteers (six healthy subjects without knee pain history and three patients with known knee injury, between 29 and 58 years old) were scanned using gradient-echo acquisitions on a high-field 7T MR scanner. Susceptibility values of different tissues were quantified and diseased cartilage and meniscus were compared against that of healthy volunteers.Re...
Conventional magnetic resonance imaging (MRI) is not capable of detecting signal from the deep carti...
SummaryObjectiveThe aim of the study was to investigate the association of T2 relaxation times of th...
SummaryMagnetic resonance imaging (MRI) provides a sensitive tool for examining all the structures i...
BackgroundQuantitative susceptibility mapping (QSM) has recently been applied in humans to quantify ...
PurposeTo investigate the B0 orientation-dependent magnetic susceptibility of collagen fibrils withi...
Purpose: We investigated the feasibility of quantitative susceptibility mapping (QSM) for assessing ...
Abstract Purpose: We investigated the feasibility of quantitative susceptibility mapping (QSM) for ...
Introduction: Osteoarthritis (OA) is a debilitating disease caused by abnormal joint mechanics. Ther...
Magnetic resonance imaging (MRI) has revolutionized the evaluation of musculoskeletal soft tissue di...
Objective This study compares the performance and the reproducibility of quantitative T2, T2* and th...
PURPOSE: Biochemical imaging of glycosaminoglycan chemical exchange saturation transfer (gagCEST) co...
Purpose: 3-Tesla magnetic resonance imaging (MRI) T1 and T2 mapping to detect and quantify cartilage...
Quantitative magnetization transfer (QMT) imaging is a quantitative magnetic resonance imaging techn...
Degenerative articular cartilage damage, such as osteoarthritis, is one of the most common causes of...
Purpose: To investigate whether magnetic field–related anisotropies of collagen may be correlated wi...
Conventional magnetic resonance imaging (MRI) is not capable of detecting signal from the deep carti...
SummaryObjectiveThe aim of the study was to investigate the association of T2 relaxation times of th...
SummaryMagnetic resonance imaging (MRI) provides a sensitive tool for examining all the structures i...
BackgroundQuantitative susceptibility mapping (QSM) has recently been applied in humans to quantify ...
PurposeTo investigate the B0 orientation-dependent magnetic susceptibility of collagen fibrils withi...
Purpose: We investigated the feasibility of quantitative susceptibility mapping (QSM) for assessing ...
Abstract Purpose: We investigated the feasibility of quantitative susceptibility mapping (QSM) for ...
Introduction: Osteoarthritis (OA) is a debilitating disease caused by abnormal joint mechanics. Ther...
Magnetic resonance imaging (MRI) has revolutionized the evaluation of musculoskeletal soft tissue di...
Objective This study compares the performance and the reproducibility of quantitative T2, T2* and th...
PURPOSE: Biochemical imaging of glycosaminoglycan chemical exchange saturation transfer (gagCEST) co...
Purpose: 3-Tesla magnetic resonance imaging (MRI) T1 and T2 mapping to detect and quantify cartilage...
Quantitative magnetization transfer (QMT) imaging is a quantitative magnetic resonance imaging techn...
Degenerative articular cartilage damage, such as osteoarthritis, is one of the most common causes of...
Purpose: To investigate whether magnetic field–related anisotropies of collagen may be correlated wi...
Conventional magnetic resonance imaging (MRI) is not capable of detecting signal from the deep carti...
SummaryObjectiveThe aim of the study was to investigate the association of T2 relaxation times of th...
SummaryMagnetic resonance imaging (MRI) provides a sensitive tool for examining all the structures i...