Extended measuring depth dual-wavelength Fourier domain optical coherence tomography

Author:

Al-Mohamedi Haroun1,Kelly-Pérez Ismael12,Oltrup Theo3,Cayless Alan4,Bende Thomas3

Affiliation:

1. Sektion für Experimentelle Ophthalmochirurgie , Universitätsklinikum Tübingen , Tübingen , Germany

2. Department of Mechanical and Electrical Engineering , Universidad Veracruzana , Xalapa , Veracruz , Mexico

3. Stiftungslabor für Grundlagen-forschung , Universitäts-Augenklinik Tübingen , Tübingen , Germany

4. Department of Physical Sciences , Open University , Milton Keynes , UK

Abstract

Abstract In this work an enhanced wide range dual band spectral domain optical coherence tomography technique (SD-OCT) is presented to increase the depth and accuracy of the measurement of optical A-scan biometry. The setup uses a Michelson interferometer with two wide-spectrum Superluminescent Diodes (SLD). The emissions of the SLDs are filtered by a long-pass filter (900 nm) in front of the reference mirror. The light is spectrally decomposed using a single reflective diffraction grating (1,800 lines/mm) and the whole spectrum captured with two CCD line sensors. The capabilities of the system have been validated using a self-made human model eye.

Publisher

Walter de Gruyter GmbH

Subject

Biomedical Engineering

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