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Until now all these models have been designed and used with an average fibre diameter.
An average fibre diameter of 1.5, 0.75 and 1.2 μm was found for PCL, PLA and PLGA, respectively.
Mean main fibre direction was 87±18°, relative to the deflection axis, while fibre alignment had only a minor effect on the average fibre diameter.
Scanning electron microscopy analysis shows that the fibre morphologies varied across PLA-drug and PLA-collagen-drug samples − the addition of collagen caused a decrease in average fibre diameter by nearly half, and produced nanofibres.
Afterwards, the pNSR32/PCL/Gt tubular scaffold (inner diameter = 3 mm) showed high porosity of 86.2 ± 2.9%, pore size of 2423 ± 979 nm and average fibre diameter of 166 ± 85 nm.
The average fibre diameter was determined from 30 measurements of the random fibres taken from different areas of the scanned images.
Similar(50)
Average fibre diameters of printed constructs using different printing directions and their variability reveal particular differences.
The fabricated SiC web is having average fibre diameters of approximately 1.5 μm.
As the PLCL loading in PHB blends increased, the average fibre diameters in the electrospun scaffolds decreased significantly.
In comparison to PLCL scaffolds, PLCL blends with PHB exhibited more irregular fibre diameter distributions and higher average fibre diameters but there were no significant differences in pore size.
Finally, a subset of 44 rex and 54 normal coat G2 rabbits were further analyzed for mean fibre diameter, fibre distribution and content of coarse fibres.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com