Understanding the corneal mechanical properties has great importance in the study of corneal pathologies and the prediction of refractive surgery outcomes. Non-Contact Tonometry (NCT) is a non-invasive diagnostic tool intended to characterize the corneal tissue response in vivo by applying a defined air-pulse. The biomarkers inferred from this test can only be considered as indicators of the global biomechanical behaviour rather than the intrinsic biomechanical properties of the corneal tissue. A possibility to isolate the mechanical response of the corneal tissue is the use of an inverse finite element method, which is based on accurate and reliable modelling. Since a detailed methodology is still missing in the literature, this paper aims...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diag- nostic test...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diagnostic test r...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diagnostic test r...
This chapter presents a novel multiphysics fluid–structure interaction model of the noncontact air p...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diag- nostic test...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diagnostic test r...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diagnostic test r...
This chapter presents a novel multiphysics fluid–structure interaction model of the noncontact air p...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diag- nostic test...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...