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  2. Anaglyph 3D - Wikipedia

    en.wikipedia.org/wiki/Anaglyph_3D

    Anaglyph 3D is the stereoscopic 3D effect achieved by means of encoding each eye's image using filters of different (usually chromatically opposite) colors, typically red and cyan. Anaglyph 3D images contain two differently filtered colored images, one for each eye.

  3. Phantogram (optical illusion) - Wikipedia

    en.wikipedia.org/wiki/Phantogram_(optical_illusion)

    The illusion of depth and perspective is heightened by stereoscopy techniques; a combination of two images, most typically but not necessarily an anaglyph (color filtered stereo image). With common (red–cyan) 3D glasses, the viewer's vision is segregated so that each eye sees a different image. Phantograms can be created using drawn images ...

  4. Stereoscopy - Wikipedia

    en.wikipedia.org/wiki/Stereoscopy

    Anaglyph 3D images contain two differently filtered colored images, one for each eye. When viewed through the "color-coded" "anaglyph glasses", each of the two images reaches one eye, revealing an integrated stereoscopic image. The visual cortex of the brain fuses this into perception of a three dimensional scene or composition. [22]

  5. ColorCode 3-D - Wikipedia

    en.wikipedia.org/wiki/ColorCode_3-D

    A simple 3D Amber-Blue snapshot of the ColorCode 3D glasses. ColorCode 3-D is an anaglyph 3D stereoscopic viewing system deployed in the 2000s that uses amber and blue filters. It is intended to provide the perception of nearly full colour viewing with existing television, digital and print mediums.

  6. Polarized 3D system - Wikipedia

    en.wikipedia.org/wiki/Polarized_3D_system

    A polarized 3D system uses polarization glasses to create the illusion of three-dimensional images by restricting the light that reaches each eye (an example of stereoscopy). To present stereoscopic images and films, two images are projected superimposed onto the same screen or display through different polarizing filters. The viewer wears low ...

  7. Wiggle stereoscopy - Wikipedia

    en.wikipedia.org/wiki/Wiggle_stereoscopy

    An example of monocular portrait images of human faces that have been converted to create a moving 3D photo using depth estimation via Machine Learning using TensorFlow.js [3] in the browser. With advances in machine learning and computer vision, [3] it is now also possible to recreate this effect using a single monocular image as an input. [4]

  8. Stereo photography techniques - Wikipedia

    en.wikipedia.org/wiki/Stereo_photography_techniques

    55 mm SVP dc-3D-80 cam (parallel & anaglyph, stills & video). 60 mm Vivitar 3D cam (only for anaglyph pictures). 65 mm Takara Tomy 3D ShotCam. 65 mm Kandao QooCam EGO 3D Camera. 75 mm Fujifilm W3 cam. 77 mm Fujifilm W1 cam. 88 mm Loreo 3D lens for digital cams. 140mm Cyclopital3D base extender for the JVC TD1 and Sony TD10.

  9. Health effects of 3D - Wikipedia

    en.wikipedia.org/wiki/Health_effects_of_3D

    Seeing 3D movies can increase rating of symptoms of nausea, oculomotor and disorientation, especially in women with susceptible visual-vestibular system.This is caused by a “disagreement” between the vestibular system and the visual input, causing that the body interprets it is moving, creating a contradiction with the vestibular system. [5]

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