All Stories

  1. Optical sectioning with a Wiener-like filter in Fourier integral imaging microscopy
  2. Towards 3D Television Through Fusion of Kinect and Integral-Imaging Concepts
  3. Full-parallax 3D display from the hole-filtered depth information
  4. Physical compensation of phase curvature in digital holographic microscopy by use of programmable liquid lens
  5. Optical barriers in integral imaging monitors through micro-Köhler illumination
  6. Full-parallax 3D display from single-shot Kinect capture
  7. Static real-time capture of 3D microscopy images
  8. Enhanced field-of-view integral imaging display using multi-Köhler illumination
  9. Computation of microimages for plenoptic display
  10. Time-multiplexing Integral Microscopy
  11. Fuzzy Integral Imaging Camera Calibration for Real Scale 3D Reconstructions
  12. From the plenoptic camera to the flat integral-imaging display
  13. Accurate quantitative phase imaging through telecentric digital holographic microscopy
  14. Three-dimensional display by smart pseudoscopic-to-orthoscopic conversion with tunable focus
  15. Photoelastic Analysis of Partially Occluded Objects With an Integral-Imaging Polariscope
  16. Three-Dimensional Integral Imaging and Display
  17. Enhancing spatial resolution in digital holographic microscopy by biprism structured illumination
  18. Off-axis digital holographic microscopy: practical design parameters for operating at diffraction limit
  19. Depth-of-Field Enhancement in Integral Imaging by Selective Depth-Deconvolution
  20. Aberration compensation for objective phase curvature in phase holographic microscopy: comment
  21. Elemental images for integral-imaging display
  22. Shift-variant digital holographic microscopy: inaccuracies in quantitative phase imaging
  23. Extended depth-of-field in integral imaging by depth-dependent deconvolution
  24. Multispectral integral imaging acquisition and processing using a monochrome camera and a liquid crystal tunable filter
  25. Three-dimensional polarimetric computational integral imaging
  26. Improved resolution in far-field integral imaging
  27. 3D resolution in computationally reconstructed integral photography
  28. Subtractive imaging in confocal scanning microscopy using a CCD camera as a detector
  29. Three-dimensional resolvability in an integral imaging system
  30. High-resolution far-field integral-imaging camera by double snapshot
  31. Full Parallax 3-D TV with Programmable Display Parameters
  32. Digital holographic microscopy with pure-optical spherical phase compensation
  33. 3D integral imaging monitors with fully programmable display parameters
  34. Lightfield recording and reconstruction by integral imaging
  35. Confocal scanning microscope using a CCD camera as a pinhole-detector system
  36. Optically-undistorted digital holographic microscopy for quantitative phase-contrast imaging
  37. Fully programmable display parameters in integral imaging by smart pseudoscopic-to-orthoscopic conversion
  38. Microscopic and macroscopic 3D imaging and display by integral imaging
  39. 3D integral imaging display by smart pseudoscopic-to-orthoscopic conversion (SPOC)
  40. New Analytical Tools for Evaluation of Spherical Aberration in Optical Microscopy
  41. New Analytical Tools for Evaluation of Spherical Aberration in Optical Microscopy
  42. Method to Remedy Image Degradations Due to Facet Braiding in 3D Integral-Imaging Monitors
  43. The high-numerical approach for the 3D sampling theorem
  44. Optical implementation of micro-zoom arrays for parallel focusing in integral imaging
  45. Optical-sectioning microscopy by patterned illumination
  46. Reduction of spherical-aberration impact in microscopy by wavefront coding
  47. Progress in 3-D Multiperspective Display by Integral Imaging
  48. Progress in 3D imaging and display by integral imaging
  49. Chapter 1 The Resolution Challenge in 3D Optical Microscopy
  50. Progresses in 3D integral imaging with optical processing
  51. Digital slicing of 3D scenes by Fourier filtering of integral images
  52. Three Dimensional Sensing, Visualization, and Display
  53. Simple demonstration of the impact of spherical aberration on optical imaging
  54. 3D integral imaging with optical processing
  55. Enhanced viewing-angle integral imaging by multiple-axis telecentric relay system
  56. Relay optics for enhanced integral imaging
  57. Facet braiding: a fundamental problem in integral imaging
  58. Manufacture of pupil filters for 3D beam shaping
  59. Focus on Microscopy in the City of the Holy Grail
  60. Reduction of the spherical aberration effect in high-numerical-aperture optical scanning instruments
  61. FOM 2007
  62. Orthoscopic long-focal-depth integral imaging by hybrid method
  63. Optically-corrected elemental images for undistorted Integral image display
  64. Orthoscopic long-focal-depth 3D integral imaging
  65. Optimized integral imaging display by global pixel mapping
  66. Analysis of 3-D Integral Imaging Displays Using the Wigner Distribution
  67. Detection of wave aberrations in the human eye using a retinoscopy-like technique
  68. Extended Depth-of-Field 3-D Display and Visualization by Combination of Amplitude-Modulated Microlenses and Deconvolution Tools
  69. Formation of real, orthoscopic integral images by smart pixel mapping
  70. Integral imaging with extended depth of field
  71. Overcoming sensor constraints in 3D integral imaging
  72. Quasi-isotropic 3-D resolution in two-photon scanning microscopy
  73. Quasi-spherical focal spot in two-photon scanning microscopy by three-ring apodization
  74. Three-dimensional imaging with high spatial resolution: scanning microscopy
  75. Integral imaging with improved depth of field by use of amplitude-modulated microlens arrays
  76. Enhanced depth of field integral imaging with sensor resolution constraints
  77. Analytical Evaluation of the Temporal Focal Shift for Arbitrary Pulse Shapes
  78. Axial gain resolution in optical sectioning fluorescence microscopy by shaded-ring filters
  79. One-dimensional iterative algorithm for three-dimensional point-spread function engineering
  80. Three-dimensional superresolution by annular binary filters
  81. Asymmetric apodization in confocal scanning systems
  82. Tunable optical sectioning in confocal microscopy by use of symmetrical defocusing and apodization
  83. Analytical formula for calculating the focal shift in apodized systems
  84. Analytical formula for calculating the focal shift in apodized systems
  85. Annular binary filters for controlling the axial behaviour of optical systems
  86. Tunable axial superresolution by annular binary filters. Application to confocal microscopy
  87. Binarization of apodizers by adapted one-dimensional error diffusion method
  88. Apodization of imaging systems by means of a random spatially nonstationary absorbing screen