AbstractEven though mechanical properties depend strongly on the arrangement of collagen fibers in mineralized tissues, it is not yet well resolved. Only a few semi-quantitative evaluations of the fiber arrangement in bone, like spectroscopic techniques or circularly polarized light microscopy methods are available. In this study the out-of-plane collagen arrangement angle was calibrated to the linear birefringence of a longitudinally fibered mineralized turkey leg tendon cut at variety of angles to the main axis. The calibration curve was applied to human cortical bone osteons to quantify the out-of-plane collagen fibers arrangement. The proposed calibration curve is normalized to sample thickness and wavelength of the probing light to ena...
The structural and supraorganizational arrangement of the chordae tendineae components is very impor...
<p>A) Light microscopy images showing the scan area (bar = 200 μm). B) Corresponding spectroscopic m...
AbstractChemical composition and fibrillar organization are the major determinants of osteonal bone ...
Even though mechanical properties depend strongly on the arrangement of collagen fibers in mineraliz...
SummaryObjectiveTo investigate a novel optical method to determine the three dimensional (3-D) struc...
Quantitative polarized light microscopy (qPLM) is a popular tool for the investigation of birefringe...
Mineralized turkey leg tendon (MTLT) is an attractive model of mineralized collagen fibers, which ar...
AbstractMineralized turkey leg tendon (MTLT) is an attractive model of mineralized collagen fibers, ...
The percentage of dark, light, and intermediate osteons and their fragments, as seen in polarized li...
Bone continuously adapts to its mechanical environment by structural reorganization to maintain mech...
SummaryObjectiveThe orientation of collagen molecules is an important determinant of their functiona...
Starting from a previous personal investigation (Portigliatti Barbos et al., 1983) indicating that t...
Objective: To investigate a novel optical method to determine the three dimensional (3-D) structure ...
Birefringence can reveal much of the morphology, molecular order, heterogeneity of fiber orientation...
AbstractAttachment of dissimilar materials is a major challenge because high levels of localized str...
The structural and supraorganizational arrangement of the chordae tendineae components is very impor...
<p>A) Light microscopy images showing the scan area (bar = 200 μm). B) Corresponding spectroscopic m...
AbstractChemical composition and fibrillar organization are the major determinants of osteonal bone ...
Even though mechanical properties depend strongly on the arrangement of collagen fibers in mineraliz...
SummaryObjectiveTo investigate a novel optical method to determine the three dimensional (3-D) struc...
Quantitative polarized light microscopy (qPLM) is a popular tool for the investigation of birefringe...
Mineralized turkey leg tendon (MTLT) is an attractive model of mineralized collagen fibers, which ar...
AbstractMineralized turkey leg tendon (MTLT) is an attractive model of mineralized collagen fibers, ...
The percentage of dark, light, and intermediate osteons and their fragments, as seen in polarized li...
Bone continuously adapts to its mechanical environment by structural reorganization to maintain mech...
SummaryObjectiveThe orientation of collagen molecules is an important determinant of their functiona...
Starting from a previous personal investigation (Portigliatti Barbos et al., 1983) indicating that t...
Objective: To investigate a novel optical method to determine the three dimensional (3-D) structure ...
Birefringence can reveal much of the morphology, molecular order, heterogeneity of fiber orientation...
AbstractAttachment of dissimilar materials is a major challenge because high levels of localized str...
The structural and supraorganizational arrangement of the chordae tendineae components is very impor...
<p>A) Light microscopy images showing the scan area (bar = 200 μm). B) Corresponding spectroscopic m...
AbstractChemical composition and fibrillar organization are the major determinants of osteonal bone ...