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  2. 3D reconstruction from multiple images - Wikipedia

    en.wikipedia.org/wiki/3D_Reconstruction_from...

    A 3D selfie in 1:20 scale printed by Shapeways using gypsum-based printing, created by Madurodam miniature park from 2D pictures taken at its Fantasitron photo booth 3D models are generated from 2D pictures taken at the Fantasitron 3D photo booth at Madurodam. Generating and reconstructing 3D shapes from single or multi-view depth maps or ...

  3. 3D Gaussian splatting - Wikipedia

    en.wikipedia.org/wiki/Gaussian_splatting

    Gaussian splatting model of a collapsed building taken from drone footage. 3D Gaussian splatting is a technique used in the field of real-time radiance field rendering. [3] It enables the creation of high-quality real-time novel-view scenes by combining multiple photos or videos, addressing a significant challenge in the field.

  4. Triangulation (computer vision) - Wikipedia

    en.wikipedia.org/wiki/Triangulation_(computer...

    The image to the left illustrates the epipolar geometry of a pair of stereo cameras of pinhole model. A point x (3D point) in 3D space is projected onto the respective image plane along a line (green) which goes through the camera's focal point, and , resulting in the two corresponding image points and .

  5. List of large sensor fixed-lens cameras - Wikipedia

    en.wikipedia.org/wiki/List_of_large_sensor_fixed...

    Fujifilm FinePix X100. This is a list of large sensor fixed-lens cameras, also known as premium compact cameras or high-end point-and-shoot cameras.These are digital cameras with a non-interchangeable lens and a 1.0‑type (“1‑inch”) image sensor or larger, excluding smartphones and camcorders.

  6. Zivid - Wikipedia

    en.wikipedia.org/wiki/Zivid

    The Zivid 3D color camera integrates a 1920 pixel x 1200 pixel image sensor to produce a high-quality 5.0 Mpixel point cloud resolution, with XYZ coordinate, native RGB and contrast data for each individual pixel in the point cloud. A good point cloud is characterized by a high density of points and no missing data, yielding a lifelike 3D model ...

  7. 3D object recognition - Wikipedia

    en.wikipedia.org/wiki/3D_object_recognition

    Partial models of features, projected into 3D, constructed from nearby views of a teddy-bear. Taken from [Rothganger et al. 2004]. Next, given a number of camera views of the object (24 in the paper), the method constructs a 3D model for the object, containing the 3D spatial position and orientation of each feature.

  8. Three-dimensional face recognition - Wikipedia

    en.wikipedia.org/wiki/Three-dimensional_face...

    3D model of a human face. Three-dimensional face recognition (3D face recognition) is a modality of facial recognition methods in which the three-dimensional geometry of the human face is used. It has been shown that 3D face recognition methods can achieve significantly higher accuracy than their 2D counterparts, rivaling fingerprint recognition.

  9. Homography (computer vision) - Wikipedia

    en.wikipedia.org/wiki/Homography_(computer_vision)

    Once camera resectioning has been done from an estimated homography matrix, this information may be used for navigation, or to insert models of 3D objects into an image or video, so that they are rendered with the correct perspective and appear to have been part of the original scene (see Augmented reality).