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Completely acellular cornea scaffolds were subjected to uniaxial tensiletesting and reseeding assay.
2
However, mechanical characterization of bioprosthetic leaflet materials has been done primarily through planar tensiletesting.
3
A carefully designed tensiletesting technique for the MWCNTs is developed, which allows us to obtain more accurate and reliable measured values.
4
The scaffolds were characterized for their structural, mechanical, and biological properties by scanning electron microscopy, Raman spectroscopy, tensiletesting, and cell-scaffold interaction study.
5
Using the FEA-informed design, a new DN structure was printed and the FEA predicted tensile test results agreed with tensiletesting of the printed structure.
1
A tensiletest therefore gives four properties of great usefulness: The yield point, the ultimate strength, the elongation and the contraction.
2
A tensiletest on the meshes showed that an increase in DMF ratio induces an increase in elasticity of the mesh.
3
Using the FEA-informed design, a new DN structure was printed and the FEA predicted tensiletest results agreed with tensile testing of the printed structure.
4
This alternative approach provided values between 19.9 and 30.0 GPa, demonstrating differences between 2% and 13% to the values provided by the initial tensiletest.
5
In both of the latter instances, however, the figures deduced from tensiletests of both good and bad specimens were substantially the same.