4 Tomographic Diffractive Microscopy …
107
67. M. Debailleul et al., Holographic microscopy and diffractive microtomography of transparent
samples. Meas. Sci. Technol. 19, 074009 (2008)
68. A. Barty, K.A. Nugent, A. Roberts, D. Paganin, Quantitative phase tomography. Opt. Commun. 175, 329–336 (2000)
69. F. Charrière et al., Cell refractive index tomography by digital holographic microscopy. Opt.
Lett. 31, 178–180 (2006)
70. F. Charrière et al., Living specimen tomography by digital holographic microscopy: morphometry of testate amoeba. Opt. Express 14, 7005–7013 (2006)
71. A.J. Devaney, A filtered backpropagation algorithm for diffraction tomography. Ultrason.
Imaging 4, 336–350 (1982)
72. T.C. Wedberg, J.J. Stamnes, W. Singer, Comparison of the filtered backpropagation and the
filtered backprojection algorithms for quantitative tomography. Appl. Opt. 34, 6575–6581
(1995)
73. W. Gorski, W. Osten, Tomographic imaging of photonic crystal fibers. Opt. Lett. 32,
1977–1979 (2007)
74. E. Wolf, Three-dimensional structure determination of semi-transparent objects from holographic data. Opt. Commun. 1, 153–156 (1969)
75. R. Dändliker, K. Weiss, Reconstruction of the three-dimensional refractive index from scattered waves. Opt. Commun. 1, 323 (1970)
76. J.D. Jackson, Classical Electrodynamics (Wiley, 1999)
77. M. Born, E. Wolf, Principles of Optics (Cambridge University Press, 1999)
78. O. Haeberlé, K. Belkebir, H. Giovannini, A. Sentenac, Tomographic diffractive microscopy:
basics, techniques and perspectives. J. Mod. Opt. 57, 686–699 (2010)
79. D. Jin, R. Zhou, Z. Yaqoob, P.T.C. So, Tomographic phase microscopy: principles and applications in bioimaging [Invited]. J. Opt. Soc. Am. B 34, B64–B77 (2017)
80. S.S. Kou, C.J.R. Sheppard, Image formation in holographic tomography: high-aperture imaging conditions. Appl. Opt. 48, H168–H175 (2009)
81. V. Lauer, New approach to optical diffraction tomography yielding a vector equation of
diffraction tomography and a novel tomographic microscope. J. Microscopy 205, 165–176
(2002)
82. N. Streibl, Three-dimensional imaging by a microscope. J. Opt. Soc. Am. A 2, 121–127 (1985)
83. M. Debailleul et al., High-resolution three-dimensional tomographic diffractive microscopy
of transparent inorganic and biological samples. Opt. Lett. 34, 79–81 (2009)
84. Y. Cotte et al., Marker-free phase nanoscopy. Nat. Photonics 7, 113–117 (2013)
85. T.C. Wedberg, W.C. Wedberg, Tomographic reconstruction of the cross-sectional refractive
index distribution in semi-transparent, birefringent fibres. J. Microscopy 177, 53–67 (1995)
86. B. Simon et al., High-resolution tomographic diffractive microscopy of biological samples.
J. Biophotonics 3, 462–467 (2010)
87. W. Choi et al., Tomographic phase microscopy. Nat. Methods 4, 717–719 (2007)
88. Y. Park et al., Refractive index maps and membrane dynamics of human red blood cells
parasitized by Plasmodium falciparum. Proc. Natl. Acad. Sci. U.S.A. 105, 13730–13735
(2008)
89. Y. Sung et al., Optical diffraction tomography for high resolution live cell imaging. Opt.
Express 17, 266–277 (2009)
90. Y. Sung et al., Stain-free quantification of chromosomes in live cells using regularized tomographic phase microscopy. PLoS ONE 7, e49502 (2012)
91. J.W. Su et al., Digital holographic microtomography for high-resolution refractive index
mapping of live cells. J. Biophotonics 6, 416–424 (2013)
92. Y. Sung et al., Three-dimensional holographic refractive-index measurement of continuously
flowing cells in a microfluidic channel. Phys. Rev. Appl. 1, 014002 (2014)
93. K. Kim et al., High-resolution three-dimensional imaging of red blood cells parasitized by
Plasmodium falciparum and in situ hemozoin crystals using optical diffraction tomography.
J. Biomed. Opt. 19, 011005 (2014)
107
67. M. Debailleul et al., Holographic microscopy and diffractive microtomography of transparent
samples. Meas. Sci. Technol. 19, 074009 (2008)
68. A. Barty, K.A. Nugent, A. Roberts, D. Paganin, Quantitative phase tomography. Opt. Commun. 175, 329–336 (2000)
69. F. Charrière et al., Cell refractive index tomography by digital holographic microscopy. Opt.
Lett. 31, 178–180 (2006)
70. F. Charrière et al., Living specimen tomography by digital holographic microscopy: morphometry of testate amoeba. Opt. Express 14, 7005–7013 (2006)
71. A.J. Devaney, A filtered backpropagation algorithm for diffraction tomography. Ultrason.
Imaging 4, 336–350 (1982)
72. T.C. Wedberg, J.J. Stamnes, W. Singer, Comparison of the filtered backpropagation and the
filtered backprojection algorithms for quantitative tomography. Appl. Opt. 34, 6575–6581
(1995)
73. W. Gorski, W. Osten, Tomographic imaging of photonic crystal fibers. Opt. Lett. 32,
1977–1979 (2007)
74. E. Wolf, Three-dimensional structure determination of semi-transparent objects from holographic data. Opt. Commun. 1, 153–156 (1969)
75. R. Dändliker, K. Weiss, Reconstruction of the three-dimensional refractive index from scattered waves. Opt. Commun. 1, 323 (1970)
76. J.D. Jackson, Classical Electrodynamics (Wiley, 1999)
77. M. Born, E. Wolf, Principles of Optics (Cambridge University Press, 1999)
78. O. Haeberlé, K. Belkebir, H. Giovannini, A. Sentenac, Tomographic diffractive microscopy:
basics, techniques and perspectives. J. Mod. Opt. 57, 686–699 (2010)
79. D. Jin, R. Zhou, Z. Yaqoob, P.T.C. So, Tomographic phase microscopy: principles and applications in bioimaging [Invited]. J. Opt. Soc. Am. B 34, B64–B77 (2017)
80. S.S. Kou, C.J.R. Sheppard, Image formation in holographic tomography: high-aperture imaging conditions. Appl. Opt. 48, H168–H175 (2009)
81. V. Lauer, New approach to optical diffraction tomography yielding a vector equation of
diffraction tomography and a novel tomographic microscope. J. Microscopy 205, 165–176
(2002)
82. N. Streibl, Three-dimensional imaging by a microscope. J. Opt. Soc. Am. A 2, 121–127 (1985)
83. M. Debailleul et al., High-resolution three-dimensional tomographic diffractive microscopy
of transparent inorganic and biological samples. Opt. Lett. 34, 79–81 (2009)
84. Y. Cotte et al., Marker-free phase nanoscopy. Nat. Photonics 7, 113–117 (2013)
85. T.C. Wedberg, W.C. Wedberg, Tomographic reconstruction of the cross-sectional refractive
index distribution in semi-transparent, birefringent fibres. J. Microscopy 177, 53–67 (1995)
86. B. Simon et al., High-resolution tomographic diffractive microscopy of biological samples.
J. Biophotonics 3, 462–467 (2010)
87. W. Choi et al., Tomographic phase microscopy. Nat. Methods 4, 717–719 (2007)
88. Y. Park et al., Refractive index maps and membrane dynamics of human red blood cells
parasitized by Plasmodium falciparum. Proc. Natl. Acad. Sci. U.S.A. 105, 13730–13735
(2008)
89. Y. Sung et al., Optical diffraction tomography for high resolution live cell imaging. Opt.
Express 17, 266–277 (2009)
90. Y. Sung et al., Stain-free quantification of chromosomes in live cells using regularized tomographic phase microscopy. PLoS ONE 7, e49502 (2012)
91. J.W. Su et al., Digital holographic microtomography for high-resolution refractive index
mapping of live cells. J. Biophotonics 6, 416–424 (2013)
92. Y. Sung et al., Three-dimensional holographic refractive-index measurement of continuously
flowing cells in a microfluidic channel. Phys. Rev. Appl. 1, 014002 (2014)
93. K. Kim et al., High-resolution three-dimensional imaging of red blood cells parasitized by
Plasmodium falciparum and in situ hemozoin crystals using optical diffraction tomography.
J. Biomed. Opt. 19, 011005 (2014)
