Search results for "Integral imaging"

showing 10 items of 73 documents

Roadmap on 3D integral imaging: Sensing, processing, and display

2020

This Roadmap article on three-dimensional integral imaging provides an overview of some of the research activities in the field of integral imaging. The article discusses various aspects of the field including sensing of 3D scenes, processing of captured information, and 3D display and visualization of information. The paper consists of a series of 15 sections from the experts presenting various aspects of the field on sensing, processing, displays, augmented reality, microscopy, object recognition, and other applications. Each section represents the vision of its author to describe the progress, potential, vision, and challenging issues in this field.

Image qualityComputer scienceReconeixement òptic de formesComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONImage processing02 engineering and technologySeguretat informàticaStereo display01 natural sciencesXifratge (Informàtica)Field (computer science)010309 opticsOpticsHuman–computer interactionComputer security0103 physical sciencesMicroscopyComunicacions òptiquesData encryption (Computer science)Integral imagingOptical pattern recognitionbusiness.industryOptical communicationsCognitive neuroscience of visual object recognitionÒptica021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsProcessament òptic de dadesVisualizationHolographic displayAugmented realityOptical data processing0210 nano-technologybusinessImatges Processament Tècniques digitals
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Lightfield recording and reconstruction by integral imaging

2011

Integral imaging is a rising 3D imaging technique that can be considered the incoherent version of holography. In integral imaging the multiperspective information of 3D scenes is stored in a 2D picture. Such picture is nothing but a sampling version of the lightfield emitted by the 3D scene. The recorded lightfield can be used for many purposes. One is the display of 3D color scenes to audiences or much more than one person. Other is the 3D display, with full parallax, in personal monitors, like the screen of a Smartphone, a tablet, or the monitor used by a surgeon in an endoscopic operation. Other important types of applications are connected with the topographic reconstruction, slice by …

Image samplingIntegral imagingbusiness.industryComputer scienceHolographyIterative reconstructionStereo displaylaw.inventionOpticslawComputer visionArtificial intelligenceImaging techniquebusinessParallax2011 10th Euro-American Workshop on Information Optics
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Advances in three-dimensional integral imaging: sensing, display, and applications [Invited]

2013

Three-dimensional (3D) sensing and imaging technologies have been extensively researched for many applications in the fields of entertainment, medicine, robotics, manufacturing, industrial inspection, security, surveillance, and defense due to their diverse and significant benefits. Integral imaging is a passive multiperspective imaging technique, which records multiple two-dimensional images of a scene from different perspectives. Unlike holography, it can capture a scene such as outdoor events with incoherent or ambient light. Integral imaging can display a true 3D color image with full parallax and continuous viewing angles by incoherent light; thus it does not suffer from speckle degrad…

Integral imagingColor imagebusiness.industryComputer scienceHolographyImage processingAtomic and Molecular Physics and Opticslaw.inventionSpeckle patternOpticsOptical microscopelawMedical imagingImaging scienceElectrical and Electronic EngineeringbusinessParallaxEngineering (miscellaneous)
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Integral Imaging Monitors with an Enlarged Viewing Angle

2015

Enlarging the horizontal viewing angle is an important feature of integral imaging monitors. Thus far, the horizontal viewing angle has been enlarged in different ways, such as by changing the size of the elemental images or by tilting the lens array in the capture and reconstruction stages. However, these methods are limited by the microlenses used in the capture stage and by the fact that the images obtained cannot be easily projected into different displays. In this study, we upgrade our previously reported method, called SPOC 2.0. In particular, our new approach, which can be called SPOC 2.1, enlarges the viewing angle by increasing the density of the elemental images in the horizontal …

Integral imagingComputer Networks and CommunicationsComputer sciencebusiness.industryThree dimensional displayViewing angleComputational photographyTransformation (function)Feature (computer vision)Media TechnologyComputer visionArtificial intelligenceElectrical and Electronic EngineeringbusinessLens arrayInformation SystemsJournal of information and communication convergence engineering
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Three-Dimensional Imaging and Display through Integral Photography

2014

Here, we present a review of the proposals and advances in the field of three-dimensional (3D) imaging acquisition and display made in the last century. The most popular techniques are based on the concept of stereoscopy. However, stereoscopy does not provide real 3D experience, and produces discomfort due to the conflict between convergence and accommodation. For this reason, we focus this paper on integral imaging, which is a technique that permits the codification of 3D information in an array of 2D images obtained from different perspectives. When this array of elemental images is placed in front of an array of microlenses, the perspectives are integrated producing 3D images with full p…

Integral imagingComputer Networks and Communicationsbusiness.industryComputer scienceStereoscopyField (computer science)law.inventionComputational photographyThree dimensional imaginglawComputer graphics (images)Media TechnologyComputer visionImaging scienceArtificial intelligenceElectrical and Electronic EngineeringParallaxbusinessFocus (optics)Information SystemsJournal of information and communication convergence engineering
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Microscopic and macroscopic 3D imaging and display by integral imaging

2011

Integral imaging is a rising 3D imaging technique that can be considered the incoherent version of holography. In integral imaging the multiperspective information of 3D scenes is stored in a 2D picture. Such picture, composed by a set of elemental images, is obtained through a 2D array of microlenses. The elemental-images set can be used for many purposes. One is the display of 3D color scenes to audiences or much more than one person. Other is the 3D display, with full parallax, in personal monitors, like the screen of a smartphone, a tablet, or the monitor used by a surgeon in an endoscopic operation. Other important types of applications are connected with the topographic reconstruction…

Integral imagingComputer sciencebusiness.industry2d arrayComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONHolographyStereo displaylaw.inventionSet (abstract data type)lawComputer graphics (images)Holographic displayComputer visionArtificial intelligenceImaging sciencebusinessParallax2011 3DTV Conference: The True Vision - Capture, Transmission and Display of 3D Video (3DTV-CON)
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Three-dimensional polarimetric computational integral imaging

2012

In this paper, we propose a novel 3D polarimetric computational integral imaging system by using polarization diversity of objects under natural illumination conditions. In the system, the measured Stokes polarization parameters are utilized to generate degree of polarization images of a 3D scene. Based on degree of polarization images and original 2D images, we utilize a modified computational reconstruction method to perform 3D polarimetric image reconstruction. The system may be used to detect or classify objects with distinct polarization signatures in 3D space. Experimental results also show the proposed system may mitigate the effect of occlusion in 3D reconstruction.

Integral imagingComputer sciencebusiness.industry3D reconstructionPolarimetryIterative reconstructionPolarization (waves)Atomic and Molecular Physics and OpticsOpticsComputer Science::Computer Vision and Pattern RecognitionDegree of polarizationImage sensorbusinessCircular polarizationOptics Express
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Full-parallax immersive 3D display from depth-map cameras

2016

We exploit two different versions of the Kinect to make comparison of three-dimensional (3D) scenes displayed by proposed integral imaging (InI) display system. We attempt to show the difference between each version specifications and capacity. Furthermore, we illustrate our study result with some empirical imaging experiment in which the final result are displayed with full-parallax. Each demonstrated integral images can provide clear comparison results to the observer.

Integral imagingComputer sciencebusiness.industryComparison results02 engineering and technologyObserver (special relativity)Stereo display01 natural sciences010309 opticsDepth mapComputer graphics (images)0103 physical sciences0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingComputer visionArtificial intelligencebusinessParallax2016 15th Workshop on Information Optics (WIO)
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Three-Dimensional Integral Imaging and Display

2014

Integral imagingComputer sciencebusiness.industryComputer graphics (images)Integral photographyComputer visionArtificial intelligenceStereo displaybusiness
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Extended View Angle Integral Imaging 3D Display using Smart Pseudoscopic-to-orthoscopic Conversion with Head Tracking

2016

We overview a head tracking integral imaging display using the smart pseudoscopic-to-orthoscopic conversion method. The crosstalk for a large viewing angle in integral imaging is eliminated by generating a new set of elemental images.

Integral imagingComputer sciencebusiness.industryComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONHead trackingStereo displayViewing angleCrosstalkOpticsConversion methodComputer visionArtificial intelligenceView angleImage sensorbusinessImaging and Applied Optics 2016
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