SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zone (SZ) of articular cartilage non-destructively by microscopic magnetic resonance imaging (μMRI) T2 anisotropy.MethodSix specimens of canine humeral cartilage were rotated in such a way that the normal axis of the articular surface of the cartilage specimen remained stationary and perpendicular to the static magnetic field, over a range of 180° and at a step of 15°. At each rotation angle, a quantitative T2 image was constructed at 13μm pixel resolution.ResultsA set of complex and depth-dependent patterns was found in the μMRI T2 anisotropy along the depth of the tissue. In the SZ, the T2 anisotropy is clearly periodic, which demonstrates tha...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
It has been proposed that the superficial tangential zone (STZ) of articular cartilage is essential ...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
PurposeTo investigate the B0 orientation-dependent magnetic susceptibility of collagen fibrils withi...
SummaryObjectivesTo detect structural adaptations of collagen fiber matrix in compressed articular c...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
Tion of the collagen fibres in the superficial zone, which is align predominantly in a spatial direc...
Tion of the collagen fibres in the superficial zone, which is align predominantly in a spatial direc...
AbstractObjective To investigate the topographical variations among the morphological and physical p...
AbstractThe highly inhomogeneous distribution of collagen fibrils may have important effects on the ...
Collagen fibres in the superficial zone are critical to the durability and stability of articular ca...
Objective To investigate the relationships between the unique mechanical and structural propertie...
SummaryObjectiveTo investigate the relationships between the unique mechanical and structural proper...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
It has been proposed that the superficial tangential zone (STZ) of articular cartilage is essential ...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...
SummaryObjectiveTo investigate the fibril architecture of the collagen matrix in the superficial zon...
AbstractObjective To establish the correlation between the non-invasive imaging by magnetic resonanc...
PurposeTo investigate the B0 orientation-dependent magnetic susceptibility of collagen fibrils withi...
SummaryObjectivesTo detect structural adaptations of collagen fiber matrix in compressed articular c...
SummaryObjectiveThe magnetic resonance imaging (MRI) parameter T2 relaxation time has been shown to ...
Tion of the collagen fibres in the superficial zone, which is align predominantly in a spatial direc...
Tion of the collagen fibres in the superficial zone, which is align predominantly in a spatial direc...
AbstractObjective To investigate the topographical variations among the morphological and physical p...
AbstractThe highly inhomogeneous distribution of collagen fibrils may have important effects on the ...
Collagen fibres in the superficial zone are critical to the durability and stability of articular ca...
Objective To investigate the relationships between the unique mechanical and structural propertie...
SummaryObjectiveTo investigate the relationships between the unique mechanical and structural proper...
SummaryObjectiveTo compare collagen fibre alignment angles obtained from polarised light microscopy ...
It has been proposed that the superficial tangential zone (STZ) of articular cartilage is essential ...
SummaryObjectiveArticular cartilage is roughly separated into three areas: the tangential, middle, a...