Understanding corneal biomechanics is important for applications regarding refractive surgery prediction outcomes and the study of pathologies affecting the cornea itself. In this regard, non-contact tonometry (NCT) is gaining interest as a non-invasive diagnostic tool in ophthalmology, and is becoming an alternative method to characterize corneal biomechanics in vivo. In general, identification of material parameters of the cornea from a NCT test relies on the inverse finite element method, for which an accurate and reliable modelization of the test is required. This study explores four different modeling strategies ranging from pure structural analysis up to a fluid–structure interaction model considering the air–cornea and humor–cornea i...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
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 the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
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...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diag- nostic test...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...
Understanding corneal biomechanics is important for applications regarding refractive surgery predic...
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 the corneal mechanical properties has great importance in the study of corneal patholo...
Understanding the corneal mechanical properties has great importance in the study of corneal patholo...
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...
The mechanical response of the cornea subjected to a non-contact air-jet tonometry diag- nostic test...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
Purpose: To improve numerical simulation of the non-contact tonometry test by using arbitrary Lagran...
Purpose: To improve numerical simulation of the non-contact tonometry test by using Arbitrary Euleri...