Transport of intensity equation: a tutorial
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Chao Zuo | Bowen Wang | Jiasong Sun | Linpeng Lu | Qian Chen | Lei Huang | Jiaji Li | Fan Yao | Zhang Jialin | Runnan Zhang | Chao Zuo | Jiasong Sun | Qian Chen | Lei Huang | Jiaji Li | Jialin Zhang | Linpeng Lu | Yao Fan | Runnan Zhang | Bowen Wang | Fan Yao | Zhang Jialin | C. Zuo
[1] Von Welch,et al. Reproducing GW150914: The First Observation of Gravitational Waves From a Binary Black Hole Merger , 2016, Computing in Science & Engineering.
[2] A. Sharikova,et al. Comparative phase imaging of live cells by digital holographic microscopy and transport of intensity equation methods. , 2020, Optics express.
[3] L. Hervé,et al. Phase and fluorescence imaging with a surprisingly simple microscope based on chromatic aberration. , 2020, Optics express.
[4] A. Ozcan,et al. On the use of deep learning for computational imaging , 2019, Optica.
[5] Qian Chen,et al. Resolution Analysis in a Lens-Free On-Chip Digital Holographic Microscope , 2019, IEEE Transactions on Computational Imaging.
[6] G. Bally,et al. Digital Holographic Microscopy , 2007, PhotonicsViews.
[7] T. Gaylord,et al. Two improved defocus quantitative phase imaging methods: discussion. , 2019, Journal of the Optical Society of America. A, Optics, image science, and vision.
[8] Jianlin Zhao,et al. Quantitative investigation on morphology and intracellular transport dynamics of migrating cells. , 2019, Applied optics.
[9] Osamu Matoba,et al. Three-dimensional fluorescence imaging using the transport of intensity equation , 2019, Journal of biomedical optics.
[10] Chao Zuo,et al. Speckle quantitative phase imaging based on coherence effect compensation , 2019, International Conference on Optical and Photonic Engineering.
[11] M. Bunsen,et al. Detection method for the complex amplitude of a signal beam with intensity and phase modulation using the transport of intensity equation for holographic data storage. , 2019, Optics express.
[12] Hong Cheng,et al. Phase unwrapping based on transport-of-intensity equation with two wavelengths , 2019 .
[13] Chao Zuo,et al. Quantitative Phase Imaging Camera With a Weak Diffuser , 2019, Front. Phys..
[14] J. Rodrigo,et al. Label‐free bioanalysis of Leishmania infantum using refractive index tomography with partially coherent illumination , 2019, Journal of biophotonics.
[15] Asundi Anand,et al. An optical multiple-image authentication based on transport of intensity equation , 2019, Optics and Lasers in Engineering.
[16] Jingang Zhong,et al. Label-free 3D imaging of weakly absorbing samples using spatially-incoherent annular illumination microscopy. , 2019, Ultramicroscopy.
[17] Chao Zuo,et al. High-speed in vitro intensity diffraction tomography , 2019, Advanced Photonics.
[18] Osamu Matoba,et al. Security-enhanced optical voice encryption in various domains and comparative analysis. , 2019, Applied optics.
[19] L. Tian,et al. Optimal illumination scheme for isotropic quantitative differential phase contrast microscopy , 2019, Photonics Research.
[20] Yingke Xu,et al. Assessment of tissues’ inhomogeneous optical properties based on a portable microscope under partially coherent illumination , 2019, Optics Communications.
[21] Liang Zhang,et al. Fringe pattern analysis using deep learning , 2018, Advanced Photonics.
[22] T. Gaylord,et al. Weighted-least-squares multi-filter phase imaging with partially coherent light: characteristics of annular illumination. , 2019, Applied optics.
[23] Hong Zhao,et al. Robust 2D phase unwrapping algorithm based on the transport of intensity equation , 2018, Measurement Science and Technology.
[24] Chao Zuo,et al. Dual-mode phase and fluorescence imaging with a confocal laser scanning microscope. , 2018, Optics letters.
[25] K. Ishizuka,et al. Direct observation of curvature of the wave surface in transmission electron microscope using transport intensity equation. , 2018, Ultramicroscopy.
[26] C. Sheppard. Partially coherent microscope imaging system in phase space: effect of defocus and phase reconstruction. , 2018, Journal of the Optical Society of America. A, Optics, image science, and vision.
[27] Teruyoshi Nobukawa,et al. Transport-of-intensity holographic data storage based on a computer-generated hologram. , 2018, Applied optics.
[28] J. Rodrigo,et al. Partially coherent illumination engineering for enhanced refractive index tomography. , 2018, Optics letters.
[29] Byoungho Lee,et al. 3D Imaging Based on Depth Measurement Technologies , 2018, Sensors.
[30] Qian Chen,et al. Optimal illumination pattern for transport-of-intensity quantitative phase microscopy. , 2018, Optics express.
[31] K. Ishizuka,et al. Boundary-artifact-free Observation of Magnetic Materials Using the Transport of Intensity Equation , 2018, Microscopy and Microanalysis.
[32] D. Paganin,et al. Single-image geometric-flow x-ray speckle tracking , 2018, Physical Review A.
[33] Chao Zuo,et al. Lensfree dynamic super-resolved phase imaging based on active micro-scanning. , 2018, Optics letters.
[34] Chao Zuo,et al. Three-dimensional tomographic microscopy technique with multi-frequency combination with partially coherent illuminations. , 2018, Biomedical optics express.
[35] Marie-Christine Zdora,et al. State of the Art of X-ray Speckle-Based Phase-Contrast and Dark-Field Imaging , 2018, J. Imaging.
[36] Thomas Schneider,et al. Fourier-based solving approach for the transport-of-intensity equation with reduced restrictions. , 2018, Optics express.
[37] Jianlin Zhao,et al. Quantitative phase microscopy for cellular dynamics based on transport of intensity equation. , 2018, Optics express.
[38] Guohai Situ,et al. Fast and high-resolution light field acquisition using defocus modulation. , 2018, Applied optics.
[39] Yibo Zhang,et al. Phase recovery and holographic image reconstruction using deep learning in neural networks , 2017, Light: Science & Applications.
[40] G. Zheng,et al. Dual light‐emitting diode‐based multichannel microscopy for whole‐slide multiplane, multispectral and phase imaging , 2017, Journal of biophotonics.
[41] Tonmoy Chakraborty,et al. Optical convolution for quantitative phase retrieval using the transport of intensity equation. , 2018, Applied optics.
[42] Ting-Chung Poon,et al. Phase retrieval based on transport of intensity and digital holography. , 2018, Applied optics.
[43] J. Rodrigo,et al. Fast label-free microscopy technique for 3D dynamic quantitative imaging of living cells. , 2017, Biomedical optics express.
[44] T. Gaylord,et al. Clarification and unification of the obliquity factor in diffraction and scattering theories: discussion. , 2017, Journal of the Optical Society of America. A, Optics, image science, and vision.
[45] Tomasz Kozacki,et al. Fast and accurate phase-unwrapping algorithm based on the transport of intensity equation. , 2017, Applied optics.
[46] Chao Zuo,et al. Real-time complex amplitude reconstruction method for beam quality M2 factor measurement. , 2017, Optics express.
[47] Chao Zuo,et al. Optical diffraction tomography microscopy with transport of intensity equation using a light-emitting diode array , 2017 .
[48] Chao Zuo,et al. Highly efficient quantitative phase microscopy using programmable annular LED illumination , 2017, 1707.04003.
[49] J. Rodrigo,et al. Label-free quantitative 3D tomographic imaging for partially coherent light microscopy. , 2017, Optics express.
[50] Zheng Juan-juan,et al. Nonresonant background suppression in wide-field coherent anti-Stokes Raman scattering microscopy with transport of intensity equation based phase imaging , 2017 .
[51] Chao Zuo,et al. Resolution-enhanced Fourier ptychographic microscopy based on high-numerical-aperture illuminations , 2017, Scientific Reports.
[52] J. Petruccelli,et al. Source diversity for transport of intensity phase imaging. , 2017, Optics express.
[53] A. Asundi,et al. High-resolution transport-of-intensity quantitative phase microscopy with annular illumination , 2017, Scientific Reports.
[54] Chao Zuo. Connections between transport of intensity equation and two-dimensional phase unwrapping , 2017, 1704.03950.
[55] Shuai Li,et al. Lensless computational imaging through deep learning , 2017, ArXiv.
[56] T. Gaylord,et al. Quantitative phase imaging method based on an analytical nonparaxial partially coherent phase optical transfer function: erratum. , 2016, Journal of The Optical Society of America A-optics Image Science and Vision.
[57] Chao Zuo,et al. Multimodal computational microscopy based on transport of intensity equation , 2016, Journal of biomedical optics.
[58] George Nehmetallah,et al. Non-Interferometric Tomography of Phase Objects Using Spatial Light Modulators , 2016, J. Imaging.
[59] M. Gillette,et al. Phase correlation imaging of unlabeled cell dynamics , 2016, Scientific Reports.
[60] Qian Chen,et al. Adaptive step-size strategy for noise-robust Fourier ptychographic microscopy. , 2016, Optics express.
[61] Matthew D. Lew,et al. Speckle-Free Coherence Tomography of Turbid Media , 2016, 1609.00054.
[62] Q. Zhan,et al. Single-Shot Smartphone-Based Quantitative Phase Imaging Using a Distorted Grating , 2016, PloS one.
[63] Qian Chen,et al. Sampling criteria for Fourier ptychographic microscopy in object space and frequency space. , 2016, Optics express.
[64] Yibo Zhang,et al. Color calibration and fusion of lens-free and mobile-phone microscopy images for high-resolution and accurate color reproduction , 2016, Scientific Reports.
[65] Chao Zuo,et al. Programmable aperture microscopy: A computational method for multi-modal phase contrast and light field imaging , 2016 .
[66] Qian Chen,et al. Efficient positional misalignment correction method for Fourier ptychographic microscopy. , 2016, Biomedical optics express.
[67] K. Khare,et al. Two-dimensional phase unwrapping using the transport of intensity equation. , 2016, Applied optics.
[68] Wei Luo,et al. Propagation phasor approach for holographic image reconstruction , 2016, Scientific Reports.
[69] T. Kozacki,et al. Enhanced lateral resolution for phase retrieval based on the transport of intensity equation with tilted illumination , 2016, SPIE BiOS.
[70] The Ligo Scientific Collaboration,et al. Observation of Gravitational Waves from a Binary Black Hole Merger , 2016, 1602.03837.
[71] Michael Unser,et al. Variational Phase Imaging Using the Transport-of-Intensity Equation , 2016, IEEE Transactions on Image Processing.
[72] A. Ozcan,et al. Pixel super-resolution using wavelength scanning , 2015, Light: Science & Applications.
[73] T. Gaylord,et al. Quantitative phase imaging method based on an analytical nonparaxial partially coherent phase optical transfer function. , 2016, Journal of the Optical Society of America. A, Optics, image science, and vision.
[74] Xin Meng,et al. Smartphone based hand-held quantitative phase microscope using the transport of intensity equation method. , 2016, Lab on a chip.
[75] George Nehmetallah,et al. Fully automated, high speed, tomographic phase object reconstruction using the transport of intensity equation in transmission and reflection configurations. , 2015, Applied optics.
[76] Christina L. Porter,et al. Spatial, spectral, and polarization multiplexed ptychography. , 2015, Optics express.
[77] G. Situ,et al. Light-field moment microscopy with noise reduction. , 2015, Optics express.
[78] T. Gaylord,et al. Three-dimensional quantitative phase imaging via tomographic deconvolution phase microscopy. , 2015, Applied optics.
[79] J. Rodenburg,et al. Separation of three-dimensional scattering effects in tilt-series Fourier ptychography. , 2015, Ultramicroscopy.
[80] Chao Zuo,et al. Iterative optimum frequency combination method for high efficiency phase imaging of absorptive objects based on phase transfer function. , 2015, Optics express.
[81] T. Gaylord,et al. Quantitative phase microscopy via optimized inversion of the phase optical transfer function. , 2015, Applied optics.
[82] J. Martinez-Carranza,et al. Multi-filter transport of intensity equation solver with equalized noise sensitivity. , 2015, Optics express.
[83] L. Tian,et al. Transport of intensity phase retrieval and computational imaging for partially coherent fields: The phase space perspective , 2015 .
[84] S. Funken,et al. A practical way to resolve ambiguities in wavefront reconstructions by the transport of intensity equation. , 2015, Ultramicroscopy.
[85] Yukio Takahashi,et al. Precession x-ray ptychography with multislice approach , 2015 .
[86] Laura Waller,et al. Experimental robustness of Fourier Ptychography phase retrieval algorithms , 2015, Optics express.
[87] Chao Zuo,et al. Lensless phase microscopy and diffraction tomography with multi-angle and multi-wavelength illuminations using a LED matrix. , 2015, Optics express.
[88] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[89] L. Tian,et al. Quantitative differential phase contrast imaging in an LED array microscope. , 2015, Optics express.
[90] A. Asundi,et al. Phase retrieval with the transport-of-intensity equation in an arbitrarily shaped aperture by iterative discrete cosine transforms. , 2015, Optics letters.
[91] Ping-Chang Lee,et al. Phase retrieval method for in-line phase contrast x-ray imaging and denoising by regularization. , 2015, Optics express.
[92] Baoli Yao,et al. Vibrational phase imaging in wide-field CARS for nonresonant background suppression. , 2015, Optics express.
[93] Chenggong Zhang,et al. Optical cryptosystem based on phase-truncated Fresnel diffraction and transport of intensity equation. , 2015, Optics express.
[94] L. Tian,et al. 3D intensity and phase imaging from light field measurements in an LED array microscope , 2015 .
[95] Brendan Ames,et al. Solving ptychography with a convex relaxation , 2014, New journal of physics.
[96] Yibo Zhang,et al. Wide-field computational imaging of pathology slides using lens-free on-chip microscopy , 2014, Science Translational Medicine.
[97] G. Barbastathis,et al. Phase imaging for absorptive phase objects using hybrid uniform and structured illumination transport of intensity equation. , 2014, Optics express.
[98] L. Tian,et al. Low-noise phase imaging by hybrid uniform and structured illumination transport of intensity equation. , 2014, Optics express.
[99] T. Kozacki,et al. Optimum plane selection for transport-of-intensity-equation-based solvers. , 2014, Applied optics.
[100] Qian Chen,et al. Boundary-artifact-free phase retrieval with the transport of intensity equation II: applications to microlens characterization. , 2014, Optics express.
[101] A. Asundi,et al. Phase discrepancy analysis and compensation for fast Fourier transform based solution of the transport of intensity equation. , 2014, Optics express.
[102] Kannan Ramchandran,et al. Multiplexed coded illumination for Fourier Ptychography with an LED array microscope. , 2014, Biomedical optics express.
[103] G. Pedrini,et al. Phase retrieval using spatially modulated illumination. , 2014, Optics letters.
[104] T. Gaylord,et al. Multifilter phase imaging with partially coherent light. , 2014, Applied optics.
[105] J. Rodenburg,et al. Ptychographic microscope for three-dimensional imaging. , 2014, Optics express.
[106] Rene A. Claus,et al. Transport of Intensity phase imaging by intensity spectrum fitting of exponentially spaced defocus planes. , 2014, Optics express.
[107] Siyuan Dong,et al. Spectral multiplexing and coherent-state decomposition in Fourier ptychographic imaging. , 2014, Biomedical optics express.
[108] A. Asundi,et al. Boundary-artifact-free phase retrieval with the transport of intensity equation: fast solution with use of discrete cosine transform. , 2014, Optics express.
[109] G. Pedrini,et al. Spectrally resolved incoherent holography: 3D spatial and spectral imaging using a Mach-Zehnder radial-shearing interferometer. , 2014, Optics letters.
[110] Laura Waller,et al. Critical assessment of the transport of intensity equation as a phase recovery technique in optical lithography , 2014, Advanced Lithography.
[111] Jesse N. Clark,et al. Dynamic imaging using ptychography. , 2014, Physical review letters.
[112] Guoan Zheng,et al. Embedded pupil function recovery for Fourier ptychographic microscopy. , 2014, Optics express.
[113] J. Rodenburg,et al. Information multiplexing in ptychography. , 2014, Ultramicroscopy.
[114] J. Řeháček,et al. Wavefront sensing reveals optical coherence , 2014, Nature Communications.
[115] T. Ishikawa,et al. High-resolution multislice x-ray ptychography of extended thick objects. , 2014, Physical review letters.
[116] A. Asundi,et al. Light field moment imaging: comment. , 2014, Optics letters.
[117] T. Kozacki,et al. Optimum measurement criteria for the axial derivative intensity used in transport of intensity-equation-based solvers. , 2014, Optics letters.
[118] YongKeun Park,et al. High-resolution three-dimensional imaging of red blood cells parasitized by Plasmodium falciparum and in situ hemozoin crystals using optical diffraction tomography , 2013, Journal of biomedical optics.
[119] A. Asundi,et al. Comparison of Digital Holography and Transport of Intensity for Quantitative Phase Contrast Imaging , 2014 .
[120] Malgorzata Kujawinska,et al. Optimum plane selection criteria for single-beam phase retrieval techniques based on the contrast transfer function. , 2014, Optics letters.
[121] Anand Asundi,et al. Direct continuous phase demodulation in digital holography with use of the transport-of-intensity equation , 2013 .
[122] J. Verbeeck,et al. Transport of intensity phase retrieval of arbitrary wave fields including vortices. , 2013, Physical review letters.
[123] A. Asundi,et al. High-speed transport-of-intensity phase microscopy with an electrically tunable lens. , 2013, Optics express.
[124] A. Asundi,et al. Noninterferometric single-shot quantitative phase microscopy. , 2013, Optics letters.
[125] J. Marrison,et al. Ptychography – a label free, high-contrast imaging technique for live cells using quantitative phase information , 2013, Scientific Reports.
[126] A. Orth,et al. Light field moment imaging. , 2013, Optics letters.
[127] R. Horstmeyer,et al. Wide-field, high-resolution Fourier ptychographic microscopy , 2013, Nature Photonics.
[128] L. Tian,et al. The transport of intensity equation for optical path length recovery using partially coherent illumination. , 2013, Optics express.
[129] A. Diaz,et al. Translation position determination in ptychographic coherent diffraction imaging. , 2013, Optics express.
[130] Franz Pfeiffer,et al. Near-field ptychography: phase retrieval for inline holography using a structured illumination , 2013, Scientific Reports.
[131] Malgorzata Kujawinska,et al. Effect of imposed boundary conditions on the accuracy of transport of intensity equation based solvers , 2013, Optical Metrology.
[132] L. Tian,et al. Wigner function measurement using a lenslet array. , 2013, Optics express.
[133] Gastón A. Ayubi,et al. Single-shot phase recovery using two laterally separated defocused images , 2013 .
[134] J. Rodenburg,et al. Soft X-ray spectromicroscopy using ptychography with randomly phased illumination , 2013, Nature Communications.
[135] Qian Chen,et al. Transport-of-intensity phase imaging using Savitzky-Golay differentiation filter--theory and applications. , 2013, Optics express.
[136] N. Shaked,et al. Compact and portable low-coherence interferometer with off-axis geometry for quantitative phase microscopy and nanoscopy. , 2013, Optics express.
[137] T. Ishikawa,et al. High-resolution and high-sensitivity phase-contrast imaging by focused hard x-ray ptychography with a spatial filter , 2013 .
[138] A. Rosenhahn,et al. Drift correction in ptychographic diffractive imaging. , 2013, Ultramicroscopy.
[139] G. Pedrini,et al. Recording of incoherent-object hologram as complex spatial coherence function using Sagnac radial shearing interferometer and a Pockels cell. , 2013, Optics express.
[140] Andreas Menzel,et al. Reconstructing state mixtures from diffraction measurements , 2013, Nature.
[141] P. Marquet,et al. Marker-free phase nanoscopy , 2013, Nature Photonics.
[142] L. Waller,et al. Phase-space measurement and coherence synthesis of optical beams , 2012, Nature Photonics.
[143] W. Choi. Tomographic phase microscopy and its biological applications , 2012 .
[144] Manuel Guizar-Sicairos,et al. Understanding the twin-image problem in phase retrieval. , 2012, Journal of the Optical Society of America. A, Optics, image science, and vision.
[145] Tim N. Ford,et al. Quantitative phase imaging using a partitioned detection aperture. , 2012, Optics letters.
[146] L. Tian,et al. Nonlinear diffusion regularization for transport of intensity phase imaging. , 2012, Optics letters.
[147] S. Jacques,et al. Measurement of single cell refractive index, dry mass, volume, and density using a transillumination microscope. , 2012, Physical review letters.
[148] J. Rodenburg,et al. An annealing algorithm to correct positioning errors in ptychography. , 2012, Ultramicroscopy.
[149] J. Rodenburg,et al. Ptychographic transmission microscopy in three dimensions using a multi-slice approach. , 2012, Journal of the Optical Society of America. A, Optics, image science, and vision.
[150] A. Darudi,et al. Application of irradiance transport equation in aspheric surface testing , 2012 .
[151] A. Fannjiang,et al. Phase retrieval with random phase illumination. , 2012, Journal of the Optical Society of America. A, Optics, image science, and vision.
[152] P. Thibault,et al. Maximum-likelihood refinement for coherent diffractive imaging , 2012 .
[153] L. Waller,et al. Enhanced deterministic phase retrieval using a partially developed speckle field. , 2012, Optics letters.
[154] O. McCarty,et al. Optical Quantification of Cellular Mass, Volume, and Density of Circulating Tumor Cells Identified in an Ovarian Cancer Patient , 2012, Front. Oncol..
[155] C. Depeursinge,et al. Quantitative phase imaging in biomedicine , 2012, 2012 Conference on Lasers and Electro-Optics (CLEO).
[156] Li Zhang,et al. Method for estimating the axial intensity derivative in the TIE with higher order intensity derivatives and noise suppression. , 2012, Optics express.
[157] H. Pham,et al. Diffraction phase microscopy with white light. , 2012, Optics letters.
[158] J. Rodenburg,et al. Ptychographic electron microscopy using high-angle dark-field scattering for sub-nanometre resolution imaging , 2012, Nature Communications.
[159] S. S. Gorthi,et al. Phase imaging flow cytometry using a focus-stack collecting microscope. , 2012, Optics letters.
[160] A. Ozcan,et al. Maskless imaging of dense samples using pixel super-resolution based multi-height lensfree on-chip microscopy , 2012, Optics Express.
[161] X. Bai,et al. Transport of intensity phase imaging from multiple noisy intensities measured in unequally-spaced planes. , 2011, Optics express.
[162] L. Tian,et al. Experimental compressive phase space tomography , 2011, Optics express.
[163] Bindang Xue,et al. Phase retrieval using the transport of intensity equation solved by the FMG-CG method , 2011 .
[164] I. Iglesias. Pyramid phase microscopy. , 2011, Optics letters.
[165] T. Gureyev,et al. Phase retrieval using radiation and matter-wave fields: Validity of Teague's method for solution of the transport-of-intensity equation , 2011 .
[166] G. Barbastathis,et al. Quantitative phase restoration by direct inversion using the optical transfer function. , 2011, Optics letters.
[167] J. Rodenburg,et al. Extended ptychography in the transmission electron microscope: possibilities and limitations. , 2011, Ultramicroscopy.
[168] Laura Waller,et al. Transport of intensity imaging applied to quantitative optical phase tomography , 2011 .
[169] A. Ozcan,et al. Holographic pixel super-resolution in portable lensless on-chip microscopy using a fiber-optic array. , 2011, Lab on a chip.
[170] Fucai Zhang,et al. Superresolution imaging via ptychography. , 2011, Journal of the Optical Society of America. A, Optics, image science, and vision.
[171] G. Popescu. Quantitative Phase Imaging of Cells and Tissues , 2011 .
[172] Johannes Frank,et al. Refractive index determination of transparent samples by noniterative phase retrieval. , 2011, Applied optics.
[173] Sameera S. Ponda,et al. Phase and amplitude imaging from noisy images by Kalman filtering. , 2011, Optics express.
[174] J. Rogers,et al. Spatial light interference microscopy (SLIM) , 2010, IEEE Photonic Society 24th Annual Meeting.
[175] X. Bai,et al. Transport of intensity phase imaging from multiple intensities measured in unequally-spaced planes. , 2011, Optics express.
[176] Laura Waller,et al. Phase from chromatic aberrations. , 2010, Optics express.
[177] Johannes Frank,et al. Non-interferometric, non-iterative phase retrieval by Green's functions. , 2010, Journal of the Optical Society of America. A, Optics, image science, and vision.
[178] S. Eliezer,et al. Topography retrieval using different solutions of the transport intensity equation. , 2010, Journal of the Optical Society of America. A, Optics, image science, and vision.
[179] J. Rodenburg,et al. Wave-front phase retrieval in transmission electron microscopy via ptychography , 2010 .
[180] G. Barbastathis,et al. Transport of intensity phase imaging in a volume holographic microscope. , 2010, Optics letters.
[181] Kishore V. Chellappan,et al. Laser-based displays: a review. , 2010, Applied optics.
[182] Françoise Peyrin,et al. Regularization of Phase Retrieval With Phase-Attenuation Duality Prior for 3-D Holotomography , 2010, IEEE Transactions on Image Processing.
[183] J. Rodenburg,et al. Optical ptychography: a practical implementation with useful resolution. , 2010, Optics letters.
[184] M. Anastasio,et al. Transport of intensity and spectrum for partially coherent fields. , 2010, Optics letters.
[185] P. So,et al. Shack-Hartmann wavefront-sensor-based adaptive optics system for multiphoton microscopy. , 2010, Journal of biomedical optics.
[186] Derek Tseng,et al. Lensfree microscopy on a cellphone. , 2010, Lab on a chip.
[187] Anne Sentenac,et al. Tomographic diffractive microscopy: basics, techniques and perspectives , 2010 .
[188] Derek Tseng,et al. Compact, light-weight and cost-effective microscope based on lensless incoherent holography for telemedicine applications. , 2010, Lab on a chip.
[189] A. Ozcan,et al. Lensfree on-chip microscopy over a wide field-of-view using pixel super-resolution , 2010, Optics express.
[190] G. Pedrini,et al. Phase microscopy of technical and biological samples through random phase modulation with a diffuser. , 2010, Optics letters.
[191] G. Barbastathis,et al. Transport-of-intensity approach to differential interference contrast (TI-DIC) microscopy for quantitative phase imaging. , 2010, Optics letters.
[192] K. Nugent. Coherent methods in the X-ray sciences , 2009, 0908.3064.
[193] D. Boas,et al. Laser speckle contrast imaging in biomedical optics. , 2010, Journal of biomedical optics.
[194] F. Pfeiffer,et al. Quantitative biological imaging by ptychographic x-ray diffraction microscopy , 2009, Proceedings of the National Academy of Sciences.
[195] L. Tian,et al. Transport of Intensity phase-amplitude imaging with higher order intensity derivatives. , 2010, Optics express.
[196] J. Rodenburg,et al. An improved ptychographical phase retrieval algorithm for diffractive imaging. , 2009, Ultramicroscopy.
[197] B. Wattellier,et al. Quadriwave lateral shearing interferometry for quantitative phase microscopy of living cells. , 2009, Optics express.
[198] M. Levoy,et al. Wigner distributions and how they relate to the light field , 2009, 2009 IEEE International Conference on Computational Photography (ICCP).
[199] Derek K. Tseng,et al. Lensfree holographic imaging for on-chip cytometry and diagnostics. , 2009, Lab on a chip.
[200] Andreas Menzel,et al. Probe retrieval in ptychographic coherent diffractive imaging. , 2009, Ultramicroscopy.
[201] J. Fienup,et al. Optical wavefront measurement using phase retrieval with transverse translation diversity. , 2009, Optics express.
[202] C. Fang-Yen,et al. Optical diffraction tomography for high resolution live cell imaging. , 2009, Optics express.
[203] P. Cloetens,et al. Quantitative comparison of direct phase retrieval algorithms in in-line phase tomography. , 2008, Medical physics.
[204] A. Darudi,et al. Determination of the refractive index profile of a symmetric fiber preform by the transport of intensity equation , 2008 .
[205] D. Paganin,et al. Quantitative TEM-based phase retrieval of MgO nano-cubes using the transport of intensity equation. , 2008, Ultramicroscopy.
[206] O. Bunk,et al. High-Resolution Scanning X-ray Diffraction Microscopy , 2008, Science.
[207] Olivier Guyon,et al. Current status of the laser guide star adaptive optics system for Subaru Telescope , 2008, Astronomical Telescopes + Instrumentation.
[208] J. Fienup,et al. Phase retrieval with transverse translation diversity: a nonlinear optimization approach. , 2008, Optics express.
[209] G. Pedrini,et al. Phase retrieval using multiple illumination wavelengths. , 2008, Optics letters.
[210] B. Kemper,et al. Digital holographic microscopy for live cell applications and technical inspection. , 2008, Applied optics.
[211] C. Fang-Yen,et al. Tomographic phase microscopy , 2008, Nature Methods.
[212] L. Delbridge,et al. Quantitative polarized phase microscopy for birefringence imaging. , 2007, Optics express.
[213] M. Soto,et al. Improved phase imaging from intensity measurements in multiple planes. , 2007, Applied optics.
[214] E. Wolf. Introduction to the Theory of Coherence and Polarization of Light , 2007 .
[215] P. Cloetens,et al. Mixed transfer function and transport of intensity approach for phase retrieval in the Fresnel region. , 2007, Optics letters.
[216] C. Dorrer,et al. Optical testing using the transport-of-intensity equation. , 2007, Optics express.
[217] G. Pedrini,et al. Wavefront sensing with random amplitude mask and phase retrieval. , 2007, Optics letters.
[218] S. Brueck,et al. Imaging interferometric microscopy-approaching the linear systems limits of optical resolution. , 2007, Optics express.
[219] G. Pedrini,et al. Phase retrieval of arbitrary complex-valued fields through aperture-plane modulation , 2007 .
[220] Garth J. Williams,et al. Coherent diffractive imaging and partial coherence , 2007 .
[221] A. G. Cullis,et al. Transmission microscopy without lenses for objects of unlimited size. , 2007, Ultramicroscopy.
[222] A. G. Cullis,et al. Hard-x-ray lensless imaging of extended objects. , 2007, Physical review letters.
[223] S Marchesini,et al. Invited article: a [corrected] unified evaluation of iterative projection algorithms for phase retrieval. , 2006, The Review of scientific instruments.
[224] Martin J. Booth,et al. Adaptive optics in microscopy , 2003, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[225] C. Campbell. Wave-front sensing by use of a Green's function solution to the intensity transport equation: comment. , 2007, Journal of the Optical Society of America. A, Optics, image science, and vision.
[226] Bjö Rn,et al. Digital Holographic Microscopy A new Method for surface Analysis and Marker-Free Dynamic Life cell imaging , 2007 .
[227] G. Pedrini,et al. Complete wavefront reconstruction using sequential intensity measurements of a volume speckle field. , 2006, Applied optics.
[228] Michael J Rust,et al. Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM) , 2006, Nature Methods.
[229] J. Lippincott-Schwartz,et al. Imaging Intracellular Fluorescent Proteins at Nanometer Resolution , 2006, Science.
[230] P. Marquet,et al. Living specimen tomography by digital holographic microscopy: morphometry of testate amoeba. , 2006, Optics express.
[231] K. Nugent,et al. Single Cell Volume Measurement by Quantitative Phase Microscopy (QPM): A Case Study of Erythrocyte Morphology , 2006, Cellular Physiology and Biochemistry.
[232] B. Schäfer,et al. Hartmann-Shack wave front measurements for real time determination of laser beam propagation parameters , 2006 .
[233] R. Dasari,et al. Diffraction phase microscopy for quantifying cell structure and dynamics. , 2006, Optics letters.
[234] S. McVitie,et al. Quantitative Fresnel Lorentz microscopy and the transport of intensity equation. , 2006, Ultramicroscopy.
[235] Martin Booth,et al. Wave front sensor-less adaptive optics: a model-based approach using sphere packings. , 2006, Optics express.
[236] E. Cuche,et al. Cell refractive index tomography by digital holographic microscopy. , 2006, Optics letters.
[237] D. Brenner,et al. Phase-based cell imaging techniques for microbeam irradiations , 2005 .
[238] E. Cuche,et al. Measurement of the integral refractive index and dynamic cell morphometry of living cells with digital holographic microscopy. , 2005, Optics express.
[239] Xizeng Wu,et al. X-Ray cone-beam phase tomography formulas based on phase-attenuation duality. , 2005, Optics Express.
[240] Ren Ng. Fourier slice photography , 2005, ACM Trans. Graph..
[241] P. Cloetens,et al. Optimization of phase contrast imaging using hard x rays , 2005 .
[242] O. Guyon. Limits of Adaptive Optics for High-Contrast Imaging , 2005, astro-ph/0505086.
[243] K. Nugent,et al. Refractive index profiling of axially symmetric optical fibers: a new technique. , 2005, Optics express.
[244] H M L Faulkner,et al. Error tolerance of an iterative phase retrieval algorithm for moveable illumination microscopy. , 2005, Ultramicroscopy.
[245] G. Pedrini,et al. Wave-front reconstruction from a sequence of interferograms recorded at different planes. , 2005, Optics letters.
[246] E. Cuche,et al. Digital holographic microscopy: a noninvasive contrast imaging technique allowing quantitative visualization of living cells with subwavelength axial accuracy. , 2005, Optics letters.
[247] Jianwen Luo,et al. Properties of Savitzky-Golay digital differentiators , 2005, Digit. Signal Process..
[248] D. R. Luke. Relaxed averaged alternating reflections for diffraction imaging , 2004, math/0405208.
[249] P. Hanrahan,et al. Light Field Photography with a Hand-held Plenoptic Camera , 2005 .
[250] T. Kohnen,et al. Cataract and refractive surgery , 2005 .
[251] S. Eisebitt,et al. Lensless imaging of magnetic nanostructures by X-ray spectro-holography , 2004, Nature.
[252] M. Beleggia,et al. On the transport of intensity technique for phase retrieval. , 2004, Ultramicroscopy.
[253] K. Nugent,et al. Quantitative phase microscopy: A new tool for investigating the structure and function of unstained live cells , 2004, Clinical and experimental pharmacology & physiology.
[254] U. Schnars,et al. Digital Holography: Digital Hologram Recording, Numerical Reconstruction, and Related Techniques , 2004 .
[255] Markus E. Testorf,et al. Phase retrieval and phase-space tomography from incomplete data sets , 2004, SPIE Optics + Photonics.
[256] S. Wilkins,et al. Generalized eikonal of partially coherent beams and its use in quantitative imaging. , 2004, Physical review letters.
[257] J. Rodenburg,et al. Movable aperture lensless transmission microscopy: a novel phase retrieval algorithm. , 2004, Physical review letters.
[258] M. Verdier,et al. Imaging a dense nanodot assembly by phase retrieval from TEM images. , 2004, Ultramicroscopy.
[259] S. Wilkins,et al. X‐ray omni microscopy , 2004, Journal of microscopy.
[260] C. Sheppard. Defocused transfer function for a partially coherent microscope and application to phase retrieval. , 2004, Journal of the Optical Society of America. A, Optics, image science, and vision.
[261] A. Barty,et al. Quantitative phase‐amplitude microscopy. III. The effects of noise , 2004, Journal of microscopy.
[262] T. Gureyev,et al. Linear algorithms for phase retrieval in the Fresnel region. 2. Partially coherent illumination , 2004, 1503.06949.
[263] G. Oszlányi,et al. Ab initio structure solution by charge flipping. , 2003, Acta crystallographica. Section A, Foundations of crystallography.
[264] Y. Zhu,et al. Lorentz phase microscopy of magnetic materials. , 2004, Ultramicroscopy.
[265] G. Pedrini,et al. Whole optical wave field reconstruction from double or multi in-line holograms by phase retrieval algorithm. , 2003, Optics express.
[266] S. A. Werner,et al. Quantitative phase radiography with polychromatic neutrons. , 2003, Physical review letters.
[267] K. Brenner,et al. Reconstruction of two-dimensional complex amplitudes from intensity measurements , 2003 .
[268] Y. Zhu,et al. Phase imaging and nanoscale currents in phase objects imaged with fast electrons. , 2003, Physical review letters.
[269] S. Marchesini,et al. X-ray image reconstruction from a diffraction pattern alone , 2003, physics/0306174.
[270] Heinz H. Bauschke,et al. Hybrid projection-reflection method for phase retrieval. , 2003, Journal of the Optical Society of America. A, Optics, image science, and vision.
[271] J. Zuo,et al. Atomic Resolution Imaging of a Carbon Nanotube from Diffraction Intensities , 2003, Science.
[272] T. Gureyev. Composite techniques for phase retrieval in the Fresnel region , 2003 .
[273] Victoria J Allan,et al. Light Microscopy Techniques for Live Cell Imaging , 2003, Science.
[274] A. Greenaway,et al. Wave-front sensing by use of a Green's function solution to the intensity transport equation. , 2003, Journal of the Optical Society of America. A, Optics, image science, and vision.
[275] Christophe Dupuy,et al. MACAO-VLTI: an adaptive optics system for the ESO interferometer , 2003, SPIE Astronomical Telescopes + Instrumentation.
[276] S. Brueck,et al. Imaging interferometric microscopy. , 2002, Optics letters.
[277] V. Elser. Phase retrieval by iterated projections. , 2001, Journal of the Optical Society of America. A, Optics, image science, and vision.
[278] Xizeng Wu,et al. A general theoretical formalism for X-ray phase contrast imaging. , 2003, Journal of X-ray science and technology.
[279] K. Nugent,et al. Refractive-index profiling of optical fibers with axial symmetry by use of quantitative phase microscopy. , 2002, Optics letters.
[280] C. Sheppard. Three-dimensional phase imaging with the intensity transport equation. , 2002, Applied optics.
[281] J. Ricklin,et al. Atmospheric turbulence effects on a partially coherent Gaussian beam: implications for free-space laser communication. , 2002, Journal of the Optical Society of America. A, Optics, image science, and vision.
[282] K. Brenner,et al. Tomographic amplitude and phase recovery of vertical-cavity surface-emitting lasers by use of the ambiguity function. , 2002, Optics letters.
[283] Werner Jüptner,et al. Digital recording and numerical reconstruction of holograms , 2002 .
[284] S. Wilkins,et al. Quantitative X‐ray projection microscopy: phase‐contrast and multi‐spectral imaging , 2002, Journal of microscopy.
[285] E. Vernet,et al. A pyramid wavefront sensor with no dynamic modulation , 2002 .
[286] K. Nugent,et al. Quantitative phase‐amplitude microscopy I: optical microscopy , 2002, Journal of microscopy.
[287] P. J. McMahon,et al. Quantitative phase‐amplitude microscopy II: differential interference contrast imaging for biological TEM , 2002, Journal of microscopy.
[288] B. Schäfer,et al. Determination of beam parameters and coherence properties of laser radiation by use of an extended Hartmann-Shack wave-front sensor. , 2002, Applied optics.
[289] V. Lauer. New approach to optical diffraction tomography yielding a vector equation of diffraction tomography and a novel tomographic microscope , 2002, Journal of microscopy.
[290] Michel Schlenker,et al. Quantitative phase contrast tomography using coherent synchrotron radiation , 2002, Optics + Photonics.
[291] M. Graef,et al. A new symmetrized solution for phase retrieval using the transport of intensity equation. , 2002, Micron.
[292] Leslie J. Allen,et al. Phase retrieval from series of images obtained by defocus variation , 2001 .
[293] A. Diaspro. Confocal and two-photon microscopy : foundations, applications, and advances , 2001 .
[294] R. Shack,et al. History and principles of Shack-Hartmann wavefront sensing. , 2001, Journal of refractive surgery.
[295] Haldun M. Özaktas,et al. The fractional fourier transform , 2001, 2001 European Control Conference (ECC).
[296] H. Faulkner,et al. Phase retrieval and aberration correction in the presence of vortices in high-resolution transmission electron microscopy. , 2001, Ultramicroscopy.
[297] S. Wilkins,et al. Quantitative in-line phase-contrast imaging with multienergy X rays. , 2001, Physical review letters.
[298] Daniel G. Smith,et al. Optical testing using Shack-Hartmann wavefront sensors , 2001, Optical Engineering for Sensing and Nanotechnology.
[299] S. Esposito,et al. Pyramid Wavefront Sensor behavior in partial correction Adaptive Optic systems , 2001 .
[300] K. Nugent,et al. Phase retrieval from images in the presence of first-order vortices. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[301] Avinash C. Kak,et al. Principles of computerized tomographic imaging , 2001, Classics in applied mathematics.
[302] P. Blanchard,et al. Phase-diversity wave-front sensing with a distorted diffraction grating. , 2000, Applied optics.
[303] S. A. Werner,et al. Imaging: Phase radiography with neutrons , 2000, Nature.
[304] E. Cuche,et al. Spatial filtering for zero-order and twin-image elimination in digital off-axis holography. , 2000, Applied optics.
[305] Wilson,et al. New modal wave-front sensor: a theoretical analysis , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[306] R. Navarro,et al. Laser Ray Tracing versus Hartmann-Shack sensor for measuring optical aberrations in the human eye. , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[307] K. Nugent,et al. Quantitative phase-sensitive imaging in a transmission electron microscope , 2000, Ultramicroscopy.
[308] M. Gustafsson. Surpassing the lateral resolution limit by a factor of two using structured illumination microscopy , 2000, Journal of microscopy.
[309] K. Nugent,et al. Quantitative phase tomography , 2000 .
[310] E. Cuche,et al. Simultaneous amplitude-contrast and quantitative phase-contrast microscopy by numerical reconstruction of Fresnel off-axis holograms. , 1999, Applied optics.
[311] P. Cloetens,et al. Holotomography: Quantitative phase tomography with micrometer resolution using hard synchrotron radiation x rays , 1999 .
[312] M. Soto,et al. Role of boundary measurements in curvature sensing , 1999 .
[313] J. Miao,et al. Extending the methodology of X-ray crystallography to allow imaging of micrometre-sized non-crystalline specimens , 1999, Nature.
[314] M. Gu,et al. Advanced Optical Imaging Theory , 1999 .
[315] D. Brady,et al. Three-dimensional coherence imaging in the Fresnel domain. , 1999, Applied optics.
[316] S. Wilkins,et al. Hard x-ray quantitative non-interferometric phase-contrast microscopy , 1999 .
[317] E. Cuche,et al. Digital holography for quantitative phase-contrast imaging. , 1999, Optics letters.
[318] Laird M. Close,et al. First light for Hokupa'a: 36-element curvature AO system at UH , 1998, Astronomical Telescopes and Instrumentation.
[319] F. Gori,et al. Intensity-based modal analysis of partially coherent beams with Hermite-Gaussian modes. , 1998, Optics letters.
[320] K. Nugent,et al. Quantitative optical phase microscopy. , 1998, Optics letters.
[321] J. Schwider,et al. Absolute sphericity measurement: a comparative study of the use of interferometry and a Shack-Hartmann sensor. , 1998, Optics letters.
[322] B. Chen,et al. Validity of diffraction tomography based on the first born and the first rytov approximations. , 1998, Applied optics.
[323] K. Nugent,et al. Noninterferometric phase imaging with partially coherent light , 1998 .
[324] Ryuzo Ueda,et al. NUMERICAL INVESTIGATION OF THE ITERATIVE PHASE-RETRIEVAL STAGNATION PROBLEM : TERRITORIES OF CONVERGENCE OBJECTS AND HOLES IN THEIR BOUNDARIES , 1997 .
[325] S. Wilkins,et al. Contrast and resolution in imaging with a microfocus x-ray source , 1997 .
[326] S. Tamura,et al. WAVE FIELD DETERMINATION USING TOMOGRAPHY OF THE AMBIGUITY FUNCTION , 1997 .
[327] K. Nugent,et al. Rapid quantitative phase imaging using the transport of intensity equation , 1997 .
[328] H. Chapman. Phase-retrieval X-ray microscopy by Wigner-distribution deconvolution , 1996 .
[329] I. Walmsley,et al. Direct measurement of the two-point field correlation function. , 1996, Optics letters.
[330] S. Wilkins,et al. Phase-contrast imaging using polychromatic hard X-rays , 1996, Nature.
[331] K. Nugent,et al. Quantitative Phase Imaging Using Hard X Rays. , 1996, Physical review letters.
[332] K. Nugent,et al. Phase retrieval with the transport-of-intensity equation. II. Orthogonal series solution for nonuniform illumination , 1996 .
[333] Wei-Chung Wang,et al. Vibration measurement by the time-averaged electronic speckle pattern interferometry methods. , 1996, Applied optics.
[334] K. Banaszek,et al. Direct probing of quantum phase space by photon counting. , 1996, Physical review letters.
[335] R. Webb. Confocal optical microscopy , 1996 .
[336] E. Acosta,et al. Modal phase estimation from wavefront curvature sensing , 1996 .
[337] R. Ragazzoni. Pupil plane wavefront sensing with an oscillating prism , 1996 .
[338] P. Cloetens,et al. Phase objects in synchrotron radiation hard x-ray imaging , 1996 .
[339] A. Snigirev,et al. On the possibilities of x-ray phase contrast microimaging by coherent high-energy synchrotron radiation , 1995 .
[340] V. V. Voitsekhovich. Phase-retrieval problem and orthogonal expansions: curvature sensing , 1995 .
[341] K. Nugent,et al. Phase retrieval with the transport-of-intensity equation: matrix solution with use of Zernike polynomials , 1995 .
[342] K. Nugent,et al. Partially coherent fields, the transport-of-intensity equation, and phase uniqueness , 1995 .
[343] L. Mandel,et al. Optical Coherence and Quantum Optics , 1995 .
[344] Sophocles J. Orfanidis,et al. Introduction to signal processing , 1995 .
[345] D. F. McAlister,et al. Optical phase retrieval by phase-space tomography and fractional-order Fourier transforms. , 1995, Optics letters.
[346] P. O'Shea,et al. Phase space tomography of relativistic electron beams , 1995 .
[347] I. Han. New method for estimating wavefront from curvature signal by curve fitting , 1995 .
[348] Junzhong Liang,et al. Objective measurement of wave aberrations of the human eye with the use of a Hartmann-Shack wave-front sensor. , 1994, Journal of the Optical Society of America. A, Optics, image science, and vision.
[349] A. Lohmann,et al. RELATIONSHIPS BETWEEN THE RADON-WIGNER AND FRACTIONAL FOURIER TRANSFORMS , 1994 .
[350] S. Hell,et al. Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy. , 1994, Optics letters.
[351] Jim Anuskiewicz,et al. Adaptive optics at the University of Hawaii I: current performance at the telescope , 1994, Astronomical Telescopes and Instrumentation.
[352] Beck,et al. Complex wave-field reconstruction using phase-space tomography. , 1994, Physical review letters.
[353] C. Sheppard,et al. Three-dimensional transfer functions for high-aperture systems , 1994 .
[354] Francis T. S. Yu,et al. Pendulum iterative algorithm for phase retrieval from modulus data , 1994 .
[355] H. Ozaktas,et al. Fractional Fourier transforms and their optical implementation. II , 1993 .
[356] F. Roddier,et al. Wave-front reconstruction from defocused images and the testing of ground-based optical telescopes , 1993 .
[357] A. Lohmann. Image rotation, Wigner rotation, and the fractional Fourier transform , 1993 .
[358] J. Gonglewski,et al. Atmospheric structure function measurements with a Shack-Hartmann wave-front sensor. , 1992, Optics letters.
[359] J. P. Woerdman,et al. Orbital angular momentum of light and the transformation of Laguerre-Gaussian laser modes. , 1992, Physical review. A, Atomic, molecular, and optical physics.
[360] Joshua R. Smith,et al. LIGO: the Laser Interferometer Gravitational-Wave Observatory , 1992, Science.
[361] Boualem Boashash,et al. Estimating and interpreting the instantaneous frequency of a signal. I. Fundamentals , 1992, Proc. IEEE.
[362] Nicolas A. Roddier. Algorithms for wavefront reconstruction out of curvature sensing data , 1991, Optics & Photonics.
[363] Andrew E. Yagle,et al. Use of Fourier domain real-plane zeros to overcome a phase retrieval stagnation , 1991 .
[364] K. Nugent. Partially coherent diffraction patterns and coherence measurement , 1991 .
[365] F Roddier,et al. Wavefront reconstruction using iterative Fourier transforms. , 1991, Applied optics.
[366] P. A. Gorry. General least-squares smoothing and differentiation of nonuniformly spaced data by the convolution method , 1991 .
[367] F. Roddier,et al. A SIMPLE LOW-ORDER ADAPTIVE OPTICS SYSTEM FOR NEAR-INFRARED APPLICATIONS , 1991 .
[368] K. Nugent. A generalization of Schell's theorem , 1990 .
[369] Anthony E. Siegman,et al. New developments in laser resonators , 1990, Photonics West - Lasers and Applications in Science and Engineering.
[370] F. Roddier,et al. Wavefront sensing and the irradiance transport equation. , 1990, Applied optics.
[371] J. H. Seldin,et al. Numerical investigation of the uniqueness of phase retrieval , 1990 .
[372] C. Sheppard,et al. Three-dimensional imaging in a microscope , 1989 .
[373] Nicolas A. Roddier,et al. Curvature Sensing: A New Wavefront Sensing Method , 1988, Optics & Photonics.
[374] A. Lohmann,et al. Phase retrieval based on the irradiance transport equation and the Fourier transform method: experiments. , 1988, Applied optics.
[375] F Roddier,et al. Curvature sensing and compensation: a new concept in adaptive optics. , 1988, Applied optics.
[376] C. Sheppard,et al. Imaging in high-aperture optical systems , 1987 .
[377] F. H. Kerr,et al. On Namias's fractional Fourier transforms , 1987 .
[378] James R. Fienup,et al. Phase-retrieval stagnation problems and solutions , 1986 .
[379] Mj Martin Bastiaans. Application of the Wigner distribution function to partially coherent light , 1986 .
[380] M A Fiddy,et al. Inversion of optical scattered field data , 1986 .
[381] J. Radon. On the determination of functions from their integral values along certain manifolds , 1986, IEEE Transactions on Medical Imaging.
[382] N. Streibl. Three-dimensional imaging by a microscope , 1985 .
[383] J. Goodman. Statistical Optics , 1985 .
[384] N. Streibl. Phase imaging by the transport equation of intensity , 1984 .
[385] R.H.T Bates,et al. Uniqueness of solutions to two-dimensional fourier phase problems for localized and positive images , 1984, Comput. Vis. Graph. Image Process..
[386] D. K. Hamilton,et al. Differential phase contrast in scanning optical microscopy , 1984 .
[387] C. Sheppard,et al. Theory and practice of scanning optical microscopy , 1984 .
[388] M. Teague. Deterministic phase retrieval: a Green’s function solution , 1983 .
[389] A. Devaney. A Filtered Backpropagation Algorithm for Diffraction Tomography , 1982 .
[390] R. Bates. Astronomical speckle imaging , 1982 .
[391] J. Sedat,et al. Fluorescence microscopy: reduced photobleaching of rhodamine and fluorescein protein conjugates by n-propyl gallate. , 1982, Science.
[392] M. Teague. Irradiance moments: their propagation and use for unique retrieval of phase , 1982 .
[393] A. Lohmann,et al. Wigner distribution function display of complex 1D signals , 1982 .
[394] J R Fienup,et al. Phase retrieval algorithms: a comparison. , 1982, Applied optics.
[395] E. Wolf,et al. Coherent-mode representation of Gaussian Schell-model sources and of their radiation fields , 1982 .
[396] E. Wolf. New theory of partial coherence in the space–frequency domain. Part I: spectra and cross spectra of steady-state sources , 1982 .
[397] Joseph Shamir,et al. First-order optics—a canonical operator representation: lossless systems , 1982 .
[398] A. Devaney. Inverse-scattering theory within the Rytov approximation. , 1981, Optics letters.
[399] E. Wolf. New spectral representation of random sources and of the partially coherent fields that they generate , 1981 .
[400] A.V. Oppenheim,et al. The importance of phase in signals , 1980, Proceedings of the IEEE.
[401] Max Born,et al. Principles of optics - electromagnetic theory of propagation, interference and diffraction of light (7. ed.) , 1999 .
[402] F. Gori. Directionality and Spatial Coherence , 1980 .
[403] A. Lohmann,et al. The wigner distribution function and its optical production , 1980 .
[404] Ole Lekberg,et al. Electronic speckle pattern interferometry , 1980 .
[405] Mj Martin Bastiaans. Wigner distribution function and its application to first-order optics , 1979 .
[406] Mj Martin Bastiaans. Transport Equations for the Wigner Distribution Function in an Inhomogeneous and Dispersive Medium , 1979 .
[407] Robert A. Gonsalves,et al. Wavefront Sensing By Phase Retrieval , 1979, Optics & Photonics.
[408] W. Welford,et al. Geometrical vector flux and some new nonimaging concentrators , 1979 .
[409] J R Fienup,et al. Reconstruction of an object from the modulus of its Fourier transform. , 1978, Optics letters.
[410] Mj Martin Bastiaans. The Wigner distribution function applied to optical signals and systems , 1978 .
[411] H. M. Pedersen,et al. Measurement of small vibrations using electronic speckle pattern interferometry: Theory , 1977 .
[412] D. Gilbarg,et al. Elliptic Partial Differential Equa-tions of Second Order , 1977 .
[413] L. Mandel,et al. Spectral coherence and the concept of cross-spectral purity , 1976 .
[414] C. Chatfield. The Analysis of Time Series: Theory and Practice , 1976 .
[415] A. Gerrard,et al. Introduction to Matrix Methods in Optics , 1975 .
[416] A. Papoulis. Ambiguity function in Fourier optics , 1974 .
[417] D. L. Misell. Comment onA method for the solution of the phase problem in electron microscopy , 1973 .
[418] R. Gerchberg. A practical algorithm for the determination of phase from image and diffraction plane pictures , 1972 .
[419] W. Hoppe,et al. Dynamische Theorie der Kristallstrukturanalyse durch Elektronenbeugung im inhomogenen Primärstrahlwellenfeld , 1970 .
[420] S. A. Collins. Lens-System Diffraction Integral Written in Terms of Matrix Optics , 1970 .
[421] R. Dandliker,et al. SYMPOSIUM PAPER: Reconstruction of the three-dimensional refractive index from scattered waves , 1970 .
[422] E. Wolf. Three-dimensional structure determination of semi-transparent objects from holographic data , 1969 .
[423] J. Goodman. Introduction to Fourier optics , 1969 .
[424] A. Walther. Radiometry and coherence , 1968 .
[425] A. Schell. A technique for the determination of the radiation pattern of a partially coherent aperture , 1967 .
[426] A. Savitzky,et al. Smoothing and Differentiation of Data by Simplified Least Squares Procedures. , 1964 .
[427] C. McCutchen. Generalized Aperture and the Three-Dimensional Diffraction Image , 1964 .
[428] Hilbert,et al. Methods of Mathematical Physics, vol. II. Partial Differential Equations , 1963 .
[429] Emil Wolf,et al. Principles of Optics: Contents , 1999 .
[430] Philip M. Woodward,et al. Probability and Information Theory with Applications to Radar , 1954 .
[431] H. H. Hopkins,et al. The Influence of the Condenser on Microscopic Resolution , 1950 .
[432] F. Zernike. Diffraction and Optical Image Formation , 1948 .
[433] J. Mayer,et al. On the Quantum Correction for Thermodynamic Equilibrium , 1947 .
[434] F. Zernike. Phase contrast, a new method for the microscopic observation of transparent objects , 1942 .
[435] W. D. Evans,et al. PARTIAL DIFFERENTIAL EQUATIONS , 1941 .
[436] F. Zernike. The concept of degree of coherence and its application to optical problems , 1938 .
[437] P. H. Cittert,et al. Die Wahrscheinliche Schwingungsverteilung in Einer von Einer Lichtquelle Direkt Oder Mittels Einer Linse Beleuchteten Ebene , 1934 .
[438] Lord Rayleigh F.R.S.. XXXVII. On the passage of waves through apertures in Plane screens, and allied problems , 1897 .
[439] A. Sommerfeld. Mathematische Theorie der Diffraction , 1896 .
[440] G. Kirchhoff. Zur Theorie der Lichtstrahlen , 1883 .