110
B. Simon and O. Haeberlé
147. B. Vinoth et al., Integrated dual-tomography for refractive index analysis of free-floating
single living cell with isotropic superresolution. Sci. Rep. 8, 5943 (2018)
148. R. Horstmeyer et al., Standardizing the resolution claims for coherent microscopy. Nat. Phot.
10, 68–71 (2016)
149. C. Park, S. Shin, Y. Park, Generalized quantification of three-dimensional resolution in optical
diffraction tomography using the projection of maximal spatial bandwidths, arXiv:1806.01067
150. E. Mudry et al., Mirror-assisted tomographic diffractive microscopy with isotropic resolution.
Opt. Lett. 35, 1857–1859 (2010)
151. M. Kim et al., High-speed synthetic aperture microscopy for live cell imaging. Opt. Lett. 36,
148–150 (2011)
152. C. Fang-Yen et al., Video-rate tomographic phase microscopy. J. Biomed. Opt. 16, 011005
(2011)
153. J. Hahn et al., Video-rate compressive holographic microscopic tomography. Opt. Express
19, 7289–7298 (2011)
154. K. Kim et al., Real-time visualization of 3-D dynamic microscopic objects using optical
diffraction tomography. Opt. Express 21, 32269–32278 (2013)
155. G. Dardikman, M. Habaza, L. Waller, N.T. Shaked, Video-rate processing in tomographic
phase microscopy of biological cells using CUDA. Opt. Express 24, 11839–11854 (2016)
156. K. Lee et al., Time-multiplexed structured illumination using a DMD for optical diffraction
tomography. Opt. Lett. 42, 999–1002 (2017)
157. D. Jin, R. Zhou, Z. Yaqoob, P.T.C. So, Dynamic spatial filtering using a digital micromirror
device for high-speed optical diffraction tomography. Opt. Express 26, 428–437 (2018)
158. J.A. Rodrigo, J.M. Soto, T. Alieva, Fast label-free microscopy technique for 3D dynamic
quantitative imaging of living cells. Biomed. Opt. Express 8, 5507–5517 (2017)
159. G. Dardikman et al., Optimal spatial bandwidth capacity in multiplexed off-axis holography
for rapid quantitative phase reconstruction and visualization. Opt. Express 25, 33400–33415
(2017)
160. R. Ling et al., High-throughput intensity diffraction tomography with a computational microscope. Biomed. Opt. Express 9, 2130–2141 (2018)
161. J. Bailleul et al., Tomographic diffractive microscopy: towards high-resolution 3-D real-time
data acquisition, image reconstruction and display of unlabeled samples. Opt. Commun. 422,
28–37 (2018)
162. W.-C. Hsu et al., Tomographic diffractive microscopy of living cells based on a common-path
configuration. Opt. Lett. 39, 2210–2213 (2014)
163. Y. Kim et al., Common-path diffraction optical tomography for investigation of threedimensional structures and dynamics of biological cells. Opt. Express 22, 10398–10407
(2014)
164. Y. Kim et al., Profiling individual human red blood cells using common-path diffraction optical
tomography. Sci. Rep. 4, 6659 (2014)
165. J.M. Soto, J.A. Rodrigo, T. Alieva, Label-free quantitative 3D tomographic imaging for partially coherent light microscopy. Opt. Express 25, 15699–15712 (2017)
166. J.M. Soto, J.A. Rodrigo, T. Alieva, Optical diffraction tomography with fully and partially
coherent illumination in high numerical aperture label-free microscopy [Invited]. Appl. Opt.
57, A205–A214 (2018)
167. J. Li et al., Three-dimensional tomographic microscopy technique with multi-frequency combination with partially coherent illuminations. Biomed. Opt. Express 9, 2526–2542 (2018)
168. Y. Ruan et al., Tomographic diffractive microscopy with a wavefront sensor. Opt. Lett. 37,
1631–1633 (2012)
169. K. Kim et al., Diffraction optical tomography using a quantitative phase imaging unit. Opt.
Lett. 39, 6935–6938 (2014)
170. I. Iglesias, Tomographic imaging of transparent biological samples using the pyramid phase
microscope. Biomed. Opt. Express 7, 3049–3055 (2016)
171. P. Bon, S. Aknoun, S. Monneret, B. Wattellier, Enhanced 3D spatial resolution in quantitative
phase microscopy using spatially incoherent illumination. Opt. Express 22, 8654–8671 (2014)
B. Simon and O. Haeberlé
147. B. Vinoth et al., Integrated dual-tomography for refractive index analysis of free-floating
single living cell with isotropic superresolution. Sci. Rep. 8, 5943 (2018)
148. R. Horstmeyer et al., Standardizing the resolution claims for coherent microscopy. Nat. Phot.
10, 68–71 (2016)
149. C. Park, S. Shin, Y. Park, Generalized quantification of three-dimensional resolution in optical
diffraction tomography using the projection of maximal spatial bandwidths, arXiv:1806.01067
150. E. Mudry et al., Mirror-assisted tomographic diffractive microscopy with isotropic resolution.
Opt. Lett. 35, 1857–1859 (2010)
151. M. Kim et al., High-speed synthetic aperture microscopy for live cell imaging. Opt. Lett. 36,
148–150 (2011)
152. C. Fang-Yen et al., Video-rate tomographic phase microscopy. J. Biomed. Opt. 16, 011005
(2011)
153. J. Hahn et al., Video-rate compressive holographic microscopic tomography. Opt. Express
19, 7289–7298 (2011)
154. K. Kim et al., Real-time visualization of 3-D dynamic microscopic objects using optical
diffraction tomography. Opt. Express 21, 32269–32278 (2013)
155. G. Dardikman, M. Habaza, L. Waller, N.T. Shaked, Video-rate processing in tomographic
phase microscopy of biological cells using CUDA. Opt. Express 24, 11839–11854 (2016)
156. K. Lee et al., Time-multiplexed structured illumination using a DMD for optical diffraction
tomography. Opt. Lett. 42, 999–1002 (2017)
157. D. Jin, R. Zhou, Z. Yaqoob, P.T.C. So, Dynamic spatial filtering using a digital micromirror
device for high-speed optical diffraction tomography. Opt. Express 26, 428–437 (2018)
158. J.A. Rodrigo, J.M. Soto, T. Alieva, Fast label-free microscopy technique for 3D dynamic
quantitative imaging of living cells. Biomed. Opt. Express 8, 5507–5517 (2017)
159. G. Dardikman et al., Optimal spatial bandwidth capacity in multiplexed off-axis holography
for rapid quantitative phase reconstruction and visualization. Opt. Express 25, 33400–33415
(2017)
160. R. Ling et al., High-throughput intensity diffraction tomography with a computational microscope. Biomed. Opt. Express 9, 2130–2141 (2018)
161. J. Bailleul et al., Tomographic diffractive microscopy: towards high-resolution 3-D real-time
data acquisition, image reconstruction and display of unlabeled samples. Opt. Commun. 422,
28–37 (2018)
162. W.-C. Hsu et al., Tomographic diffractive microscopy of living cells based on a common-path
configuration. Opt. Lett. 39, 2210–2213 (2014)
163. Y. Kim et al., Common-path diffraction optical tomography for investigation of threedimensional structures and dynamics of biological cells. Opt. Express 22, 10398–10407
(2014)
164. Y. Kim et al., Profiling individual human red blood cells using common-path diffraction optical
tomography. Sci. Rep. 4, 6659 (2014)
165. J.M. Soto, J.A. Rodrigo, T. Alieva, Label-free quantitative 3D tomographic imaging for partially coherent light microscopy. Opt. Express 25, 15699–15712 (2017)
166. J.M. Soto, J.A. Rodrigo, T. Alieva, Optical diffraction tomography with fully and partially
coherent illumination in high numerical aperture label-free microscopy [Invited]. Appl. Opt.
57, A205–A214 (2018)
167. J. Li et al., Three-dimensional tomographic microscopy technique with multi-frequency combination with partially coherent illuminations. Biomed. Opt. Express 9, 2526–2542 (2018)
168. Y. Ruan et al., Tomographic diffractive microscopy with a wavefront sensor. Opt. Lett. 37,
1631–1633 (2012)
169. K. Kim et al., Diffraction optical tomography using a quantitative phase imaging unit. Opt.
Lett. 39, 6935–6938 (2014)
170. I. Iglesias, Tomographic imaging of transparent biological samples using the pyramid phase
microscope. Biomed. Opt. Express 7, 3049–3055 (2016)
171. P. Bon, S. Aknoun, S. Monneret, B. Wattellier, Enhanced 3D spatial resolution in quantitative
phase microscopy using spatially incoherent illumination. Opt. Express 22, 8654–8671 (2014)
