1931
DOI: 10.1364/josa.21.000171
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Optical Properties of a Lippmann Lenticulated Sheet

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Cited by 317 publications
(109 citation statements)
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“…In 1931, Ives [20] analyzed this pseudoscopy problem in multiperspective systems and proposed to capture, with an integral imaging system, the reconstructed image captured by another integral imaging system. This produces a double depth inversion that solves the problem.…”
Section: The Viewer Sees Point S Closer To Him Than the Other Pointmentioning
confidence: 99%
“…In 1931, Ives [20] analyzed this pseudoscopy problem in multiperspective systems and proposed to capture, with an integral imaging system, the reconstructed image captured by another integral imaging system. This produces a double depth inversion that solves the problem.…”
Section: The Viewer Sees Point S Closer To Him Than the Other Pointmentioning
confidence: 99%
“…With some exceptions [8,21,22,34,39], there was no substantial activity in integral photography for most of the twentieth century due to the lack of technologies that may be able to make this acquisition and visualization strategy, a reality. With the important advances in optical detectors such as CCD and CMOS technologies, display devices such as Liquid Crystal Devices (LCDs), consumer electronics, and computer hardware, II has been significantly boosted.…”
Section: Overview Of 3d Integral Imagingmentioning
confidence: 99%
“…The integral imaging has some advantages which can provide full color and full parallax 3D images to the observer in the continuous viewing region [9][10][11][12], but produces drawbacks such as the degradation of the image resolution, the limitation of the expressible depth range, and the observation of the seam noise. The seam noise occurs from the edge lines of the elemental lenses of the lens array and results in the degradation of the visibility of the 3D image.…”
Section: Introductionmentioning
confidence: 99%