Optical strain measurement for the modeling of surgical meshes and their porosity. Horbach, A., J. & Staat, M. Current Directions in Biomedical Engineering, 4(1):181-184, 9, 2018.
Optical strain measurement for the modeling of surgical meshes and their porosity [link]Website  doi  abstract   bibtex   
The porosity of surgical meshes makes them flexible for large elastic deformation and establishes the healing conditions of good tissue ingrowth. The biomechanic modeling of orthotropic and compressible materials requires new materials models and simulstaneoaus fit of deformation in the load direction as well as trannsversely to to load. This nonlinear modeling can be achieved by an optical deformation measurement. At the same time the full field deformation measurement allows the dermination of the change of porosity with deformation. Also the socalled effective porosity, which has been defined to asses the tisssue interatcion with the mesh implants, can be determined from the global deformation of the surgical meshes.
@article{
 title = {Optical strain measurement for the modeling of surgical meshes and their porosity},
 type = {article},
 year = {2018},
 keywords = {Digital image correlation,Orthotropy,Porosity,Surgical mesh},
 pages = {181-184},
 volume = {4},
 websites = {http://www.degruyter.com/view/j/cdbme.2018.4.issue-1/cdbme-2018-0045/cdbme-2018-0045.xml},
 month = {9},
 day = {1},
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 created = {2018-09-22T14:15:23.834Z},
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 abstract = {The porosity of surgical meshes makes them flexible for large elastic deformation and establishes the healing conditions of good tissue ingrowth. The biomechanic modeling of orthotropic and compressible materials requires new materials models and simulstaneoaus fit of deformation in the load direction as well as trannsversely to to load. This nonlinear modeling can be achieved by an optical deformation measurement. At the same time the full field deformation measurement allows the dermination of the change of porosity with deformation. Also the socalled effective porosity, which has been defined to asses the tisssue interatcion with the mesh implants, can be determined from the global deformation of the surgical meshes.},
 bibtype = {article},
 author = {Horbach, Andreas J. and Staat, Manfred},
 doi = {10.1515/cdbme-2018-0045},
 journal = {Current Directions in Biomedical Engineering},
 number = {1}
}

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