A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation

MV Swain, J Nohava, P Eberwein - Acta biomaterialia, 2017 - Elsevier
This paper presents a simple analysis based upon Darcy's Law and indentation contact
mechanics to determine the effective hydraulic conductivity and elastic modulus of fluid filled …

A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation.

MV Swain, J Nohava, P Eberwein - Acta biomaterialia, 2017 - folia.unifr.ch
English This paper presents a simple analysis based upon Darcy's Law and indentation
contact mechanics to determine the effective hydraulic conductivity and elastic modulus of …

A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation

MV Swain, J Nohava, P Eberwein - Acta Biomaterialia, 2017 - hero.epa.gov
This paper presents a simple analysis based upon Darcy's Law and indentation contact
mechanics to determine the effective hydraulic conductivity and elastic modulus of fluid filled …

A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation.

MV Swain, J Nohava, P Eberwein - Acta Biomaterialia, 2016 - europepmc.org
This paper presents a simple analysis based upon Darcy's Law and indentation contact
mechanics to determine the effective hydraulic conductivity and elastic modulus of fluid filled …

A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation.

MV Swain, J Nohava, P Eberwein - Acta biomaterialia, 2017 - sonar.ch
English This paper presents a simple analysis based upon Darcy's Law and indentation
contact mechanics to determine the effective hydraulic conductivity and elastic modulus of …

A simple basis for determination of the modulus and hydraulic conductivity of human ocular surface using nano-indentation

MV Swain, J Nohava, P Eberwein - Acta biomaterialia, 2017 - pubmed.ncbi.nlm.nih.gov
This paper presents a simple analysis based upon Darcy's Law and indentation contact
mechanics to determine the effective hydraulic conductivity and elastic modulus of fluid filled …