Long-range frequency-domain optical delay line based on a spinning tilted mirror for low-cost ocular biometry

Author:

Urizar María Pilar12ORCID,Gambra Enrique1,de Castro Alberto2ORCID,de la Peña Álvaro2,Pascual Daniel2,Cetinkaya Onur3,Marcos Susana24ORCID,Curatolo Andrea23ORCID

Affiliation:

1. 2EyesVision S.L.

2. Instituto de Óptica ‘Daza de Valdés’

3. Institute of Physical Chemistry, Polish Academy of Sciences (IPC-PAS)

4. University of Rochester

Abstract

Optical biometers are routinely used to measure intraocular distances in ophthalmic applications such as cataract surgery planning or myopia monitoring. However, due to their high cost and reduced transportability, access to them for screening and surgical planning is still limited in low-resource and remote settings. To increase patients’ access to optical biometry we propose a novel low-cost frequency-domain optical delay line (FD-ODL) based on an inexpensive stepper motor spinning a tilted mirror, for integration into a time-domain (TD)-biometer, amenable to a compact footprint. In the proposed FD-ODL, the axial scan range and the A-scan rate are decoupled from one another, as the former only depends on the spinning mirror tilt angle, while the A-scan rate only depends on the motor shaft rotational speed. We characterized the scanning performance and specifications for two spinning mirror tilt angles, and compared them to those of the standard, more expensive FD-ODL implementation, employing a galvanometric scanner for group delay generation. A prototype of the low-cost FD-ODL with a 1.5 deg tilt angle, resulting in an axial scan range of 6.61 mm and an A-scan rate of 10 Hz was experimentally implemented and integrated in a dual sample beam optical low-coherence reflectometry (OLCR) setup with a detour unit to replicate the measurement window around the anterior segment and the retina. The intraocular distances of a model eye were measured with the proposed low-cost biometer and found to be in good agreement with those acquired by a custom swept-source optical coherence tomography (SS-OCT) system and two commercial biometers, validating our novel design.

Funder

Comunidad de Madrid

Ministerio de Ciencia e Innovación

Fundacja na rzecz Nauki Polskiej

National Eye Institute

Research to Prevent Blindness

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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