4 Tomographic Diffractive Microscopy …
109
121. Y.-C. Lin, C.-J. Cheng, Sectional imaging of spatially refractive index distribution using
coaxial rotation digital holographic microtomography. J. Opt. 16, 065401 (2014)
122. A. Ku´ s et al., Tomographic phase microscopy of living three-dimensional cell cultures. J.
Biomed. Opt. 19, 4600 (2014)
123. M. Kujawi´ nska et al., Problems and solutions in 3-D analysis of phase biological objects by
optical diffraction tomography. Int. J. Optomechatron. 8, 357–372 (2014)
124. J. Kostencka, T. Kozacki, A. Ku´ s, M. Kujawi´ nska, Accurate approach to capillary-supported
optical diffraction tomography. Opt. Express 23, 7908–7923 (2015)
125. N.M. Dragomir, X.M. Goh, A. Roberts, Three-dimensional refractive index reconstruction
with quantitative phase tomography. Microsc. Res. Tech. 71, 5–10 (2008)
126. Y. Jeon, C.-K. Hong, Rotation error correction by numerical focus adjustment in tomographic
phase microscopy. Opt. Eng. 48, 105801 (2009)
127. T. Kozacki, R. Krajewski, M. Kujawi´ nska, Reconstruction of refractive-index distribution
in off-axis digital holography optical diffraction tomographic system. Opt. Express 17,
13758–13767 (2009)
128. J. Kostencka, T. Kozacki, M. Józwik, Holographic tomography with object rotation and twodirectional off-axis illumination. Opt. Express 25, 23920–23934 (2017)
129. J. Kostencka, T. Kozacki, M. Dudek, M. Kujawi´ nska, Noise suppressed optical diffraction
tomography with autofocus correction. Opt. Express 22, 5731–5745 (2014)
130. V. Bingelyte, J. Leach, J. Courtial, M.J. Padgett, Optically controlled three-dimensional rotation of microscopic objects. Appl. Phys. Lett. 82, 829–831 (2003)
131. M.K. Kreysing et al., The optical cell rotator. Opt. Express 16, 16984–16992 (2008)
132. B. Caoa et al., Rotation of single live mammalian cells using dynamic holographic optical
tweezers. Opt. Lasers Eng. 92, 70–75 (2017)
133. M. Habaza, B. Gilboa, Y. Roichman, N.T. Shaked, Tomographic phase microscopy with 180°
rotation of live cells in suspension by holographic optical tweezers. Opt. Lett. 40, 1881–1884
(2015)
134. Y.-C. Lin et al., Optically driven full-angle sample rotation for tomographic imaging in digital
holographic microscopy. Opt. Lett. 42, 1321–1324 (2017)
135. K. Kim, J. Yoon, Y. Park, Simultaneous 3-D visualization and position tracking of optically
trapped particles using optical diffraction tomography. Optica 2, 343 (2015)
136. K. Kim, Y. Park, Tomographic active optical trapping of arbitrarily shaped objects by exploiting 3D refractive index maps. Nat. Commun. 8, 15340 (2017)
137. J. Gimsa, P. Marszalek, U. Loewe, T.Y. Tsong, Dielectrophoresis and electrorotation of neurospora slime and murine myeloma cells. Biophys. J. 60, 749–760 (1991)
138. B. Le Saux et al., Isotropic high-resolution three-dimensional confocal micro-rotation imaging
for non-adherent living cells. J. Microsc. 233, 404–416 (2009)
139. M. Habaza et al., Rapid 3D refractive-index imaging of live cells in suspension without
labeling using dielectrophoretic cell rotation. Adv. Sci. 4, 1600205 (2017)
140. F. Merola, et al., Tomographic flow cytometry by digital holography. Light Sci. Appl. 6,
e16241 (2017)
141. M. Massimiliano et al., Full angle tomographic phase microscopy of flowing quasi-spherical
cells. Lab Chip 18, 126–131 (2017)
142. F. Merola et al., Phase contrast tomography at lab on chip scale by digital holography. Methods
136, 108–115 (2018)
143. N. Lue et al., Synthetic aperture tomographic phase microscopy for 3D imaging of live cells
in translational motion. Opt. Express 16, 16240–16246 (2008)
144. C. Remacha, B.S. Nickerson, H.J. Kreuzer, Tomography by point source digital holographic
microscopy. Appl. Opt. 53, 3520–3527 (2014)
145. S. Vertu, J. Flügge, J.-J. Delaunay, O. Haeberlé, Improved and isotropic resolution in tomographic diffractive microscopy combining sample and illumination rotation. Centr. Eur. J.
Phys. 9, 969–974 (2011)
146. B. Simon et al., Tomographic diffractive microscopy with isotropic resolution. Optica 4,
460–463 (2017)
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