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AURIN GWURSTEREITGEB1,
Center for MedicaChristian Doppler Corresponding au
INTRODUCTISupplementarhow a second suomain OCT usingRESULTS Fig. S1 shows aecond healthy vohotoreceptors ca
g. S1, (a) showvea, from a horrected image uhe second subpplicability of thhe different pha
GINNER,1,
R,1 MATT2
l Physics and BiomLaboratory for In
uthor: laurin.ginne
ION ry material whiubject for the impg DAC. an aberrated imaolunteer. A clearan be observed.
ws the original ihealthy volunteusing the respectbject is showhe methods desase maps compa
(a)
,2* ABHISHIAS SAL
medical Engineernnovative Optical er@meduniwien.
ich is containedplementation ofage of the photorr increase in vis
mage obtained eer. (b) showstive phase map iwn to demonstscribed in the oaring Fig. S1 and
HEK KUMLAS,1 MIC
ring, Medical UniImaging and its ac.at
d in the documef line field spectrreceptor layer osibility of the co
7° nasally of ths the aberratioin the center. trate a broadriginal documend Fig. 3 show th
(b)
MAR,1 DACHAEL PI
versity of Vienna,Translation to Me
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ANIEL FECRCHER,1
a, Austria edicine, Medical
tem does no onlg system itself, b
CHTIG,1 LRAINER
University of Vien
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LARA M. A.
nna, Austria
systematic aberrect aberrations irations of the individually.
Noniterative digital aberration correction for cellular resolution retinal optical coherence tomography in vivo: supplementary material
Published 1 August 2017
This document provides supplementary information to "Noniterative digital aberration correction for cellular resolution retinal optical coherence tomography in vivo," https://doi.org/10.1364/optica.4.000924. It contains a secondary subject for the implementation of digital aberration correction (DAC). © 2017 Optical Society of America
https://doi.org/10.6084/m9.figshare.5197972