Effect of fixational eye movements in corneal topography measurements with optical coherence tomography

Author:

de Castro Alberto1ORCID,Martínez-Enríquez Eduardo1ORCID,Marcos Susana12ORCID

Affiliation:

1. Consejo Superior de Investigaciones Científicas

2. The Institute of Optics, Flaum Eye Institute, University of Rochester

Abstract

There is an increasing interest in applying optical coherence tomography (OCT) to quantify the topography of ocular structures. However, in its most usual configuration, OCT data is acquired sequentially while a beam is scanned through the region of interest, and the presence of fixational eye movements can affect the accuracy of the technique. Several scan patterns and motion correction algorithms have been proposed to minimize this effect, but there is no consensus on the ideal parameters to obtain a correct topography. We have acquired corneal OCT images with raster and radial patterns, and modeled the data acquisition in the presence of eye movements. The simulations replicate the experimental variability in shape (radius of curvature and Zernike polynomials), corneal power, astigmatism, and calculated wavefront aberrations. The variability of the Zernike modes is highly dependent on the scan pattern, with higher variability in the direction of the slow scan axis. The model can be a useful tool to design motion correction algorithms and to determine the variability with different scan patterns.

Funder

Agencia Estatal de Investigación

European Research Council

National Institutes of Health

Research to Prevent Blindness

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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