AbstractObjective To investigate the topographical variations among the morphological and physical properties of articular cartilage over a canine humeral head.Design Nine side-by-side specimens from a canine humeral head were used in the combined polarized light microscopy (PLM) and microscopic magnetic resonance imaging (μMRI). Sixteen images were acquired from each specimen in μMRI. Subsequently, ten to fourteen histological slices were prepared at the location of the μMRI slice from each specimen. Four optical images were acquired from each histological slice. Using these images, the images of the T2 relaxation, the optical retardation, and the collagen-fiber orientation were constructed in two dimensions.Results Along the medial/latera...
SummaryObjectiveUnderstanding of articular cartilage physiology, remodelling mechanisms, and evaluat...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
SummaryObjectivesTo detect structural adaptations of collagen fiber matrix in compressed articular c...
AbstractObjective: The objective of this study was to find a correlation between magnetic resonance ...
SummaryObjectiveTo noninvasively assay the mechanical and structural characteristics of articular ca...
To understand the influence of topographical variations in collagen fibril orientation of articular ...
Articular cartilage (AC) is a soft connective tissue that lines the ends of synovial bones in joints...
Journal ArticleOBJECTIVE: To investigate the relationships between the unique mechanical and structu...
Investigations into the distribution of subchondral bone density in the human elbow have suggested t...
Background: Little is known about the cartilage thickness of the distal humerus and how it affects t...
SummaryObjectiveTo determine regional differences in the orientation of collagen in the articular ca...
SummaryObjectiveUnderstanding of articular cartilage physiology, remodelling mechanisms, and evaluat...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
SummaryObjectivesTo detect structural adaptations of collagen fiber matrix in compressed articular c...
AbstractObjective: The objective of this study was to find a correlation between magnetic resonance ...
SummaryObjectiveTo noninvasively assay the mechanical and structural characteristics of articular ca...
To understand the influence of topographical variations in collagen fibril orientation of articular ...
Articular cartilage (AC) is a soft connective tissue that lines the ends of synovial bones in joints...
Journal ArticleOBJECTIVE: To investigate the relationships between the unique mechanical and structu...
Investigations into the distribution of subchondral bone density in the human elbow have suggested t...
Background: Little is known about the cartilage thickness of the distal humerus and how it affects t...
SummaryObjectiveTo determine regional differences in the orientation of collagen in the articular ca...
SummaryObjectiveUnderstanding of articular cartilage physiology, remodelling mechanisms, and evaluat...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...