828 kHz retinal imaging with an 840 nm Fourier domain mode locked laser

Author:

Klufts Marie,Jiménez Alejandro Martínez1,Lotz Simon,Bashir Muhammad Asim,Pfeiffer Tom2,Mlynek Alexander2,Wieser Wolfgang2,Chamorovskiy Alexander3,Bradu Adrian1ORCID,Podoleanu Adrian1ORCID,Huber RobertORCID

Affiliation:

1. University of Kent

2. Optores GmbH

3. Superlum Diodes Ltd.

Abstract

This paper presents a Fourier domain mode locked (FDML) laser centered around 840 nm. It features a bidirectional sweep repetition rate of 828 kHz and a spectral bandwidth of 40 nm. An axial resolution of ∼9.9 µm in water and a 1.4 cm sensitivity roll-off are achieved. Utilizing a complex master-slave (CMS) recalibration method and due to a sufficiently high sensitivity of 84.6 dB, retinal layers of the human eye in-vivo can be resolved during optical coherence tomography (OCT) examination. The developed FDML laser enables acquisition rates of 3D-volumes with a size of 200 × 100 × 256 voxels in under 100 milliseconds. Detailed information on the FDML implementation, its challenging design tasks, and OCT images obtained with the laser are presented in this paper.

Funder

H2020 Marie Skłodowska-Curie Actions

Deutsche Forschungsgemeinschaft

Excellence Chair Program by the universities of Kiel and Luebeck

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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