2 Fundamentals of Retinal Optical Coherence Tomography
37
28. B. Cense, W.H. Gao, J.M. Brown, S.M. Jones, R.S. Jonnal, M. Mujat, B.H. Park, J.F. de Boer,
D.T. Miller, Retinal imaging with polarization-sensitive optical coherence tomography and
adaptive optics. Opt. Express 17, 21634–21651 (2009)
29. A. Dubois, L. Vabre, A.-C. Boccara, E. Beaurepaire, High-resolution full-field optical coherence tomography with a Linnik microscope. Appl. Opt. 41(04), 805–812 (2002)
30. A. Dubois, K. Grieve, G. Moneron, R. Lecaque, L. Vabre, C. Boccara, Ultrahigh-resolution
full-field optical coherence tomography. Appl. Opt. 43(14), 2874–2883 (2004)
31. L. Li, K. Maslov, G. Ku, L.V. Wang, Three-dimensional combined photoacoustic and optical
coherence microscopy for in vivo microcirculation studies. Opt. Express 17(19), 16450–16455
(2009)
32. S. Jiao, M. Jiang, J. Hu, A. Fawzi, Q. Zhou, K.K. Shung, H.F. Zhang, Photoacoustic ophthalmoscopy for in vivo retinal imaging. Opt. Express 18(4), 3967–3972 (2010)
33. J. Yi, Q. Wei, W. Liu, V. Backman, H.F. Zhang, Visible-light optical coherence tomography
for retinal oximetry. Opt. Lett. 38(11), 1796 (2013)
34. R.A. Linsenmeier, H.F. Zhang, Retinal oxygen: from animals to humans. Prog. Retinal Eye
Res. 58, 115–151 (2017)
35. D. Cabrera DeBuc, The role of retinal imaging and portable screening devices in teleophthalmology applications for diabetic retinopathy management. Curr. Diab. Rep. 16(12),
132 (2016)
36. D. Cabrera DeBuc, G.M. Somfai, A. Koller, Retinal microvascular network alterations: potential biomarkers of cerebrovascular and neural diseases. Am. J. Physiol. Heart Circulatory Physiol. (2016). https://doi.org/10.1152/ajpheart.00201
37. G. Savini, M. Carbonelli, V. Parisi, P. Barboni, Repeatability of optic nerve head parameters
measured by spectral-domain OCT in healthy eyes. Ophthalmic Surg. Lasers Imaging Retina
42(3), 209–215 (2011)
37
28. B. Cense, W.H. Gao, J.M. Brown, S.M. Jones, R.S. Jonnal, M. Mujat, B.H. Park, J.F. de Boer,
D.T. Miller, Retinal imaging with polarization-sensitive optical coherence tomography and
adaptive optics. Opt. Express 17, 21634–21651 (2009)
29. A. Dubois, L. Vabre, A.-C. Boccara, E. Beaurepaire, High-resolution full-field optical coherence tomography with a Linnik microscope. Appl. Opt. 41(04), 805–812 (2002)
30. A. Dubois, K. Grieve, G. Moneron, R. Lecaque, L. Vabre, C. Boccara, Ultrahigh-resolution
full-field optical coherence tomography. Appl. Opt. 43(14), 2874–2883 (2004)
31. L. Li, K. Maslov, G. Ku, L.V. Wang, Three-dimensional combined photoacoustic and optical
coherence microscopy for in vivo microcirculation studies. Opt. Express 17(19), 16450–16455
(2009)
32. S. Jiao, M. Jiang, J. Hu, A. Fawzi, Q. Zhou, K.K. Shung, H.F. Zhang, Photoacoustic ophthalmoscopy for in vivo retinal imaging. Opt. Express 18(4), 3967–3972 (2010)
33. J. Yi, Q. Wei, W. Liu, V. Backman, H.F. Zhang, Visible-light optical coherence tomography
for retinal oximetry. Opt. Lett. 38(11), 1796 (2013)
34. R.A. Linsenmeier, H.F. Zhang, Retinal oxygen: from animals to humans. Prog. Retinal Eye
Res. 58, 115–151 (2017)
35. D. Cabrera DeBuc, The role of retinal imaging and portable screening devices in teleophthalmology applications for diabetic retinopathy management. Curr. Diab. Rep. 16(12),
132 (2016)
36. D. Cabrera DeBuc, G.M. Somfai, A. Koller, Retinal microvascular network alterations: potential biomarkers of cerebrovascular and neural diseases. Am. J. Physiol. Heart Circulatory Physiol. (2016). https://doi.org/10.1152/ajpheart.00201
37. G. Savini, M. Carbonelli, V. Parisi, P. Barboni, Repeatability of optic nerve head parameters
measured by spectral-domain OCT in healthy eyes. Ophthalmic Surg. Lasers Imaging Retina
42(3), 209–215 (2011)
