Estimation of the full shape of the crystalline lens in-vivo from OCT images using eigenlenses is a research paper published in Biomedical Optics Express (2022). On theSindex it has a DataRank of 0. It has been cited 30 times.
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HORIZON EUROPE European Research Council
Grant: IMCUSTOMEYE H2020-ICT-2017 Ref. 779960;
European Research Council
Grant: SILKEYE H2020-ERC-571 2018-ADG Ref.833106
Ministerio de Ciencia e InnovaciĂłn
Grant: PID2020-115191RB-I00
Narodowa Agencja Wymiany Akademickiej
Grant: ULAM 2020/1/00176
Fundacja na rzecz Nauki Polskiej
Grant: MAB/2019/12
Ministerio de Ciencia, InnovaciĂłn y Universidades
Grant: IJC2018-037508-I
Ministerio de Ciencia, InnovaciĂłn y Universidades
Grant: Juan de la Cierva-Incorporation
Research to Prevent Blindness
Grant: Bascom Palmer Eye Institute
Research to Prevent Blindness
Grant: Flaum Eye Institute
National Institutes of Health
Grant: NIE P30EY 001319
National Institutes of Health
Grant: R01EY021834
National Institutes of Health
Grant: P30EY014801
National Institutes of Health
Grant: 5P30EY014801-03
Miami Center for Vision Research
European Commission
Grant: 779960
IMaging-based CUSTOMised EYE diagnostics
National Institutes of Health
Grant: 5P30EY001319-24
CORE--ADMINISTRATIVE
National Institutes of Health
Grant: 5R01EY021834-03
Optics of the Growing Crystalline Lens
European Commission
Grant: 833106
Silk-based ocular implants: treating eye conditions at the interface of photonics and biology
Fields of Study
Sustainable Development Goals
Additional file 1 of Age-related changes in geometry and transparency of human crystalline lens revealed by optical signal discontinuity zones in swept-source OCT images
Additional file 1 of Age-related changes in geometry and transparency of human crystalline lens revealed by optical signal discontinuity zones in swept-source OCT images
Additional file 2 of Age-related changes in geometry and transparency of human crystalline lens revealed by optical signal discontinuity zones in swept-source OCT images
Additional file 2 of Age-related changes in geometry and transparency of human crystalline lens revealed by optical signal discontinuity zones in swept-source OCT images
Estimation of the full shape of the crystalline lens in-vivo from optical coherence tomography images using eigenlenses.
Estimation of the full shape of the crystalline lens in-vivo from optical coherence tomography images using eigenlenses.
Estimation of the full shape of the crystalline lens in-vivo from optical coherence tomography images using eigenlenses.
Estimation of the full shape of the crystalline lens in-vivo from optical coherence tomography images using eigenlenses.