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  2. Wiggle stereoscopy - Wikipedia

    en.wikipedia.org/wiki/Wiggle_stereoscopy

    Wiggle stereoscopy offers the advantages that no glasses or special hardware is required; most people can perceive the effect more quickly than when using cross-eyed and parallel viewing techniques. Furthermore, it offers stereo-like depth to people with limited or no vision in one eye.

  3. Stereoscopy - Wikipedia

    en.wikipedia.org/wiki/Stereoscopy

    Stereoscopy creates the impression of three-dimensional depth from a pair of two-dimensional images. [5] Human vision, including the perception of depth, is a complex process, which only begins with the acquisition of visual information taken in through the eyes; much processing ensues within the brain, as it strives to make sense of the raw information.

  4. Stereo photography techniques - Wikipedia

    en.wikipedia.org/wiki/Stereo_photography_techniques

    In such situations, where an ortho stereo viewing method is used, a common rule of thumb is the 1:30 rule. [20] This means that the baseline will be equal to 1/30 of the distance to the nearest object included in the photograph. The results of hyperstereo can be quite impressive, [21] [22] [23] and examples of hyperstereo can be found in ...

  5. Parallax barrier - Wikipedia

    en.wikipedia.org/wiki/Parallax_barrier

    Berthier's diagram: A-B=glass plate, with a-b=opaque lines, P=Picture, O=Eyes, c-n=blocked and allowed views (Le Cosmos 05-1896)The principle of the parallax barrier was independently invented by Auguste Berthier, who published an article on stereoscopic pictures including his new idea illustrated with a diagram and pictures with purposely exaggerated dimensions of the interlaced image strips ...

  6. Epipolar geometry - Wikipedia

    en.wikipedia.org/wiki/Epipolar_geometry

    Two cameras take a picture of the same scene from different points of view. The epipolar geometry then describes the relation between the two resulting views. Epipolar geometry is the geometry of stereo vision. When two cameras view a 3D scene from two distinct positions, there are a number of geometric relations between the 3D points and their ...

  7. KMQ viewer - Wikipedia

    en.wikipedia.org/wiki/KMQ_viewer

    KMQ stereo prismatic viewer with openKMQ plastics extensions. KMQ viewer are glasses for viewing a stereoscopic over/under format. KMQ was invented in the 1980s by a team of three physicists. KMQ stands for the inventors' initials: Koschnitzke, Mehnert, Quick. [1] A recent usage of this technique is the openKMQ project. [2]

  8. Stereoscope - Wikipedia

    en.wikipedia.org/wiki/Stereoscope

    A stereo transparency viewer is a type of stereoscope that offers similar advantages, e.g. the View-Master. Disadvantages of stereo cards, slides or any other hard copy or print are that the two images are likely to receive differing wear, scratches and other decay. This results in stereo artifacts when the images are viewed.

  9. 3D stereo view - Wikipedia

    en.wikipedia.org/wiki/3D_stereo_view

    In 1833, an English scientist Charles Wheatstone discovered stereopsis, the component of depth perception that arises due to binocular disparity.Binocular disparity comes from the human eyes having a distance between them: A 3D scene viewed through the left eye creates a slightly different image than the same scene viewed with the right eye, with the head kept in the same position.