Non-contact acoustic micro-tapping optical coherence elastography for quantification of corneal anisotropic elasticity: in vivo rabbit study
Mitchell A Kirby, Gabriel Regnault, Ivan Pelivanov, Matthew O'Donnell,, Ruikang Wang, Tueng T. Shen

TL;DR
This study demonstrates a non-contact optical coherence elastography technique to accurately measure the anisotropic elastic properties of rabbit corneas in vivo, showing strong correlation with traditional mechanical tests and highlighting clinical potential.
Contribution
The paper introduces AuT-OCE, a non-invasive method for in vivo measurement of corneal anisotropic elasticity, validated against ex vivo mechanical tests.
Findings
Corneal elasticity is highly anisotropic in rabbits.
AuT-OCE measurements strongly correlate with traditional mechanical tests.
The method shows potential for clinical translation in ophthalmology.
Abstract
Purpose. To demonstrate accurate measurement of corneal elastic moduli in vivo with non-contact and non-invasive optical coherence elastography. Methods. Elastic properties (in-plane Young's modulus E and both in-plane, u, and out-of-plane, G, shear moduli) of rabbit cornea were quantified in vivo using non-contact dynamic Acoustic micro-Tapping Optical Coherence Elastography (AuT-OCE). The IOP-dependence of measured mechanical properties was explored in extracted whole globes following in vivo measurement. A nearly-incompressible transverse isotropic (NITI) model was used to reconstruct moduli from AuT-OCE data. Independently, cornea elastic moduli were also measured ex vivo with traditional, destructive mechanical tests (tensile extensometry and shear rheometry). Results. Our study demonstrates strong anisotropy of corneal elasticity in rabbits. The in-plane Young's modulus, computer…
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Taxonomy
TopicsCorneal surgery and disorders · Ultrasound Imaging and Elastography · Optical Coherence Tomography Applications
