BOCANEGRA, C. A.; CIFUENTES, A. A.;
SUAREZ, E. L.;
ZVIETCOVICH, J. F.(2026).
Comparing the Time-Dependent Biomechanical Behavior of Ex-vivo Porcine Corneas under Cross-linking Treatment using Wave-Based Optical Coherence Elastography. En
SPIE Photonics West. (pp. 13853 - 13853). WASHINGTON D. C.. SPIE.
LUJAN, E. A.; SEGURA, D. F.; BOCANEGRA, C. A.;
ROMERO, S. E.;
ZVIETCOVICH, J. F.(2026).
Performance assessment of wave speed estimators based on spatial-frequency analysis in quasi-harmonic optical coherence elastography. En
SPIE Photonics West. (pp. 13853 - 13853). WASHINGTON D. C.. SPIE.
SUAREZ, E. L.; CIGARAN, A. M.; BOCANEGRA, C. A.;
ZVIETCOVICH, J. F.(2026).
Understanding corneal biomechanical influence in intraocular pressure estimations using optical coherence elastography with a multi-excitation probe. En
SPIE Photonics West. (pp. 13853 - 13853). WASHINGTON D. C.. SPIE.
ZVIETCOVICH, J. F.; Varea, A.;
PLESHCHEVA, V.; Curatolo, A.; Birkenfeld, J.; Marcos, S.(2026).
Air-coupled ultrasonic optical coherence elastography reveals riboflavin-dependent corneal stiffening in Dresden and accelerated crosslinking protocols. En
SPIE Photonics West. (pp. 1385306 - 1385306). WASHINGTON D. C.. SPIE.
TECSE, A. F. A.; Noll, A.; Endres, J.; Germann, J.; Fernandez , D.;
ZVIETCOVICH, J. F.; Urizar, P.; Buckley, M.; Telias, M.; Marcos, S.(2025).
Exogenous all-trans retinoic acid induces myopia and alters scleral ultrastructure in mice. En
ARVO Annual Meeting. (pp. 3703 - 3703). MARYLAND. The Association for Research in Vision and Ophthalmology.
Noll, A.; TECSE, A. F. A.; Endres, J.; Germann, J.; Fernandez , D.;
ZVIETCOVICH, J. F.; Urizar, P.; Buckley, M.; Telias, M.; Marcos, S.(2025).
Impaired scleral growth and myopia development in a retinal degeneration mouse model. En
ARVO Annual Meeting. (pp. 952 - 952). MARYLAND. The Association for Research in Vision and Ophthalmology.
SUAREZ, E. L.; BOCANEGRA, C. A.; CIFUENTES, A. A.;
ZVIETCOVICH, J. F.(2025).
Interrogating the influence of corneal biomechanics on intraocular pressure estimation accuracy using optical coherence elastography. En
SPIE Photonics West. (pp. 13321 - 13321). WASHINGTON D. C.. SPIE.