36
D. Cabrera DeBuc et al.
6. M.E. Brezinski, G.J. Tearney, B.E. Bouma, J.A. Izatt, M.R. Hee, E.A. Swanson, J.F. Southern,
J.G. Fujimoto, Optical coherence tomography for optical biopsy: properties and demonstration
of vascular pathology. Circulation 93(6), 1206–1213 (1996)
7. C.A. Puliafito, M.R. Hee, J.S. Schuman, J.G. Fujimoto, Optical Coherence Tomography of
Ocular Diseases (Slack Inc., Thorofare, NJ, 1996)
8. A.A. Michelson, E.W. Morley, Philos. Mag. S.5 24(151), 449–463 (1887)
9. R. Leitgeb, C.K. Hitzenberger, A.F. Fercher, Performance of fourier domain versus time domain
optical coherence tomography. Opt. Express 11(08), 889–894 (2003)
10. A. Yasin Alibhai, C. Or, A.J. Witkin, Swept source optical coherence tomography: a review.
Curr. Ophthalmol. Rep. 6(1), 7–16 (2018)
11. R.A. Leitgeb, C.K. Hitzenberger, A.F. Fercher, T. Bajraszewski, Phase-shifting algorithm to
achieve high-speed long-depth-range probing by frequency-domain optical coherence tomography. Opt. Lett. 28, 2201–2203 (2003)
12. J. Zhang, J.S. Nelson, Z.P. Chen, Removal of a mirror image and enhancement of the signalto-noise ratio in Fourier-domain optical coherence tomography using an electro-optic phase
modulator. Opt. Lett. 30, 147–149 (2005)
13. M.V. Sarunic, B.E. Applegate, J.A. Izatt, Real-time quadrature projection complex conjugate
resolved Fourier domain optical coherence tomography. Opt. Lett. 31, 2426–2428 (2006)
14. M.A. Choma, M.V. Sarunic, C. Yang, J. Izatt, Sensitivity advantage of swept source and Fourier
domain optical coherence tomography. Opt. Express 11(18), 2183–2189 (2003)
15. J.F. de Boer, B. Cense, B.H. Park, M.C. Pierce, G.J. Tearney, B.E. Bouma, Improved signalto-noise ratio in spectral-domain compared with time-domain optical coherence tomography.
Opt. Lett. 28, 2067–2069 (2003)
16. Z.P. Chen, T.E. Milner, S. Srinivas, X.J. Wang, A. Malekafzali, M.J.C. vanGemert, M.J.C.
vanGemert, J.S. Nelson, Noninvasive imaging of in vivo blood flow velocity using optical
Doppler tomography. Opt. Lett. 22, 1119–1121 (1997)
17. J.A. Izatt, M.D. Kulkami, S. Yazdanfar, J.K. Barton, A.J. Welch, In vivo bidirectional color
Doppler flow imaging of picoliter blood volumes using optical coherence tomograghy. Opt.
Lett. 22, 1439–1441 (1997)
18. S. Makita, Y. Hong, M. Yamanari, T. Yatagai, Y. Yasuno, Optical coherence angiography. Opt.
Express 14(17), 7821–7840 (2006)
19. R.K. Wang, S. Jackes, Z. Ma et al., Three dimensional optical angiography. Opt. Express 15,
4083–4097 (2007)
20. Y. Huang, Q. Zhang, M.R. Thorell et al., Swept-source OCT angiography of the retinal vasculature using intensity differentiation-based optical microangiography algorithms. Ophthalmic
Surg. Lasers Imaging Retina 45(5), 382–389 (2014)
21. E. Moult, W. Choi, N.K. Waheed et al., Ultrahigh-speed swept-source OCT angiography in
exudative AMD. Ophthalmic Surg. Lasers Imaging Retina 45(6), 496–505 (2014)
22. M.R. Thorell, Q. Zhang, Y. Huang et al., Swept-source OCT angiography of macular telangiectasia type 2. Ophthalmic Surg. Lasers Imaging Retina 45(5), 369–380 (2014)
23. A. Koustenis, A. Harris, J. Gross, I. Januleviciene, A. Shah, B. Siesky, Optical coherence
tomography angiography: an overview of the technology and an assessment of applications for
clinical research. Br. J. Ophthalmol. (2016)
24. M. Pircher, E. Goetzinger, R. Leitgeb, C.K. Hitzenberger, Transversal phase resolved polarization sensitive optical coherence tomography. Phys. Med. Biol. 49, 1257–1263 (2004)
25. D. Merino, P. Loza-Alvarez, Adaptive optics scanning laser ophthalmoscope imaging: technology update. Clin. Ophthalmol. 10, 743 (2016)
26. W.W. Lai, G.Y.O. Leung, C.W.S. Chan, I.Y.L. Yeung, D. Wong, Simultaneous spectral domain
OCT and fundus autofluorescence imaging of the macula and microperimetric correspondence after successful repair of rhegmatogenous retinal detachment. Br. J. Ophthalmol. 94(3),
311–318 (2010)
27. C.E. Bigelow, N.V. Iftimia, R.D. Ferguson, T.E. Ustun, B. Bloom, D.X. Hammer, Compact multimodal adaptive-optics spectral-domain optical coherence tomography instrument for retinal
imaging. J. Opt. Soc. Am. A-Opt. Image Sci. Vis. 24, 1327–1336 (2007)
D. Cabrera DeBuc et al.
6. M.E. Brezinski, G.J. Tearney, B.E. Bouma, J.A. Izatt, M.R. Hee, E.A. Swanson, J.F. Southern,
J.G. Fujimoto, Optical coherence tomography for optical biopsy: properties and demonstration
of vascular pathology. Circulation 93(6), 1206–1213 (1996)
7. C.A. Puliafito, M.R. Hee, J.S. Schuman, J.G. Fujimoto, Optical Coherence Tomography of
Ocular Diseases (Slack Inc., Thorofare, NJ, 1996)
8. A.A. Michelson, E.W. Morley, Philos. Mag. S.5 24(151), 449–463 (1887)
9. R. Leitgeb, C.K. Hitzenberger, A.F. Fercher, Performance of fourier domain versus time domain
optical coherence tomography. Opt. Express 11(08), 889–894 (2003)
10. A. Yasin Alibhai, C. Or, A.J. Witkin, Swept source optical coherence tomography: a review.
Curr. Ophthalmol. Rep. 6(1), 7–16 (2018)
11. R.A. Leitgeb, C.K. Hitzenberger, A.F. Fercher, T. Bajraszewski, Phase-shifting algorithm to
achieve high-speed long-depth-range probing by frequency-domain optical coherence tomography. Opt. Lett. 28, 2201–2203 (2003)
12. J. Zhang, J.S. Nelson, Z.P. Chen, Removal of a mirror image and enhancement of the signalto-noise ratio in Fourier-domain optical coherence tomography using an electro-optic phase
modulator. Opt. Lett. 30, 147–149 (2005)
13. M.V. Sarunic, B.E. Applegate, J.A. Izatt, Real-time quadrature projection complex conjugate
resolved Fourier domain optical coherence tomography. Opt. Lett. 31, 2426–2428 (2006)
14. M.A. Choma, M.V. Sarunic, C. Yang, J. Izatt, Sensitivity advantage of swept source and Fourier
domain optical coherence tomography. Opt. Express 11(18), 2183–2189 (2003)
15. J.F. de Boer, B. Cense, B.H. Park, M.C. Pierce, G.J. Tearney, B.E. Bouma, Improved signalto-noise ratio in spectral-domain compared with time-domain optical coherence tomography.
Opt. Lett. 28, 2067–2069 (2003)
16. Z.P. Chen, T.E. Milner, S. Srinivas, X.J. Wang, A. Malekafzali, M.J.C. vanGemert, M.J.C.
vanGemert, J.S. Nelson, Noninvasive imaging of in vivo blood flow velocity using optical
Doppler tomography. Opt. Lett. 22, 1119–1121 (1997)
17. J.A. Izatt, M.D. Kulkami, S. Yazdanfar, J.K. Barton, A.J. Welch, In vivo bidirectional color
Doppler flow imaging of picoliter blood volumes using optical coherence tomograghy. Opt.
Lett. 22, 1439–1441 (1997)
18. S. Makita, Y. Hong, M. Yamanari, T. Yatagai, Y. Yasuno, Optical coherence angiography. Opt.
Express 14(17), 7821–7840 (2006)
19. R.K. Wang, S. Jackes, Z. Ma et al., Three dimensional optical angiography. Opt. Express 15,
4083–4097 (2007)
20. Y. Huang, Q. Zhang, M.R. Thorell et al., Swept-source OCT angiography of the retinal vasculature using intensity differentiation-based optical microangiography algorithms. Ophthalmic
Surg. Lasers Imaging Retina 45(5), 382–389 (2014)
21. E. Moult, W. Choi, N.K. Waheed et al., Ultrahigh-speed swept-source OCT angiography in
exudative AMD. Ophthalmic Surg. Lasers Imaging Retina 45(6), 496–505 (2014)
22. M.R. Thorell, Q. Zhang, Y. Huang et al., Swept-source OCT angiography of macular telangiectasia type 2. Ophthalmic Surg. Lasers Imaging Retina 45(5), 369–380 (2014)
23. A. Koustenis, A. Harris, J. Gross, I. Januleviciene, A. Shah, B. Siesky, Optical coherence
tomography angiography: an overview of the technology and an assessment of applications for
clinical research. Br. J. Ophthalmol. (2016)
24. M. Pircher, E. Goetzinger, R. Leitgeb, C.K. Hitzenberger, Transversal phase resolved polarization sensitive optical coherence tomography. Phys. Med. Biol. 49, 1257–1263 (2004)
25. D. Merino, P. Loza-Alvarez, Adaptive optics scanning laser ophthalmoscope imaging: technology update. Clin. Ophthalmol. 10, 743 (2016)
26. W.W. Lai, G.Y.O. Leung, C.W.S. Chan, I.Y.L. Yeung, D. Wong, Simultaneous spectral domain
OCT and fundus autofluorescence imaging of the macula and microperimetric correspondence after successful repair of rhegmatogenous retinal detachment. Br. J. Ophthalmol. 94(3),
311–318 (2010)
27. C.E. Bigelow, N.V. Iftimia, R.D. Ferguson, T.E. Ustun, B. Bloom, D.X. Hammer, Compact multimodal adaptive-optics spectral-domain optical coherence tomography instrument for retinal
imaging. J. Opt. Soc. Am. A-Opt. Image Sci. Vis. 24, 1327–1336 (2007)
