SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to be sensitive to the collagen network architecture of articular cartilage. The aim of the study was to investigate the agreement of T2 relaxation time mapping and polarized light microscopy (PLM) for the determination of histological properties (i.e., zone and fibril organization) of articular cartilage.MethodsT2 relaxation time was determined at 9.4T field strength in healthy adult human, juvenile bovine and juvenile porcine patellar cartilage, and related to collagen anisotropy and fibril angle as measured by quantitative PLM.ResultsBoth T2 and PLM revealed a mutually consistent but varying number of collagen-associated laminae (3, 3–5 or 3–...
SummaryObjectiveA relationship between T1ρ relaxation time and glycosaminoglycan (GAG) content has b...
The aim of this study was to develop and assess a method of quantifying cartilage T2 relaxation time...
Abstract Quantitative magnetic resonance (MR) relaxation parameters demonstrate varying sensitivity...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
SummaryBackgroundMagnetic resonance imaging (MRI) is one of the most potential methods for non-invas...
INTRODUCTION T2 relaxation time is known to be sensitive to the orientation, organization and integr...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
T2* mapping is promising for the evaluation of articular cartilage collagen. In this work, a groove ...
SummaryObjectiveTo assess the normal topographical variation of T2 relaxation time of articular cart...
Knee osteoarthritis (OA) is a multifaceted diseases affecting many older adults. A main physiologic...
Objective: To compare collagen fibre alignment angles obtained from polarised light microscopy and d...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
IntroductionT2 mapping is an MR imaging technique that can evaluate the hydration and collagen fiber...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
Objective: To compare collagen fibre alignment angles obtained from polarised light microscopy and d...
SummaryObjectiveA relationship between T1ρ relaxation time and glycosaminoglycan (GAG) content has b...
The aim of this study was to develop and assess a method of quantifying cartilage T2 relaxation time...
Abstract Quantitative magnetic resonance (MR) relaxation parameters demonstrate varying sensitivity...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
SummaryBackgroundMagnetic resonance imaging (MRI) is one of the most potential methods for non-invas...
INTRODUCTION T2 relaxation time is known to be sensitive to the orientation, organization and integr...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
T2* mapping is promising for the evaluation of articular cartilage collagen. In this work, a groove ...
SummaryObjectiveTo assess the normal topographical variation of T2 relaxation time of articular cart...
Knee osteoarthritis (OA) is a multifaceted diseases affecting many older adults. A main physiologic...
Objective: To compare collagen fibre alignment angles obtained from polarised light microscopy and d...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
IntroductionT2 mapping is an MR imaging technique that can evaluate the hydration and collagen fiber...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
Objective: To compare collagen fibre alignment angles obtained from polarised light microscopy and d...
SummaryObjectiveA relationship between T1ρ relaxation time and glycosaminoglycan (GAG) content has b...
The aim of this study was to develop and assess a method of quantifying cartilage T2 relaxation time...
Abstract Quantitative magnetic resonance (MR) relaxation parameters demonstrate varying sensitivity...