Simple approach for aberration-corrected OCT imaging of the human retina

Optics Letters
Helge SudkampGereon Hüttmann

Abstract

Aberration-corrected imaging of human photoreceptor cells, whether hardware or software based, presently requires a complex and expensive setup. Here we use a simple and inexpensive off-axis full-field time-domain optical coherence tomography (OCT) approach to acquire volumetric data of an in vivo human retina. Full volumetric data are recorded in 1.3 s. After computationally correcting for aberrations, single photoreceptor cells were visualized. In addition, the numerical correction of ametropia is demonstrated. Our implementation of full-field optical coherence tomography combines a low technical complexity with the possibility for computational image correction.

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Citations

Oct 6, 2020·Biomedical Optics Express·Pedro MecêClaude Boccara
Nov 6, 2020·Biomedical Optics Express·Denise ValenteRavi S Jonnal
Nov 11, 2020·Eye·Reena ChopraPearse A Keane
Dec 22, 2020·Graefe's Archive for Clinical and Experimental Ophthalmology = Albrecht Von Graefes Archiv Für Klinische Und Experimentelle Ophthalmologie·Claus von der BurchardJohann Roider
Nov 9, 2021·Biomedical Optics Express·Michael MünterHinnerk Schulz-Hildebrandt

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