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Surface visibility probabilities in 3D cluttered scenes
Surface visibility probabilities in 3D cluttered scenes

... trick is used. Treating the viewing position as the left eye, two versions of each scene are rendered: one in which the scene is illuminated by a point source from the viewing position (left eye) and a second in which the scene is illuminated by a point light source at the right eye’s position. Then ...
Cones
Cones

... ciliary muscles contracts, this relaxes the lens ligaments, lens spring into a more onvex shape. near point of vision recedes throughout life ;slowly at 1st; advancing rapidly with old age; due to increasing hardness of lens SO impaired accommodation and hence receding of near point leading to Presb ...
Stereoscopic 3D visualization on planar displays Stefan Seipel 2013
Stereoscopic 3D visualization on planar displays Stefan Seipel 2013

... Computer Sweden, 20th of October 2004 ...
Displaying Stereoscopic Images
Displaying Stereoscopic Images

...  Two images overlap (like SIRDS) but are differentiated by color  Filters over each eye collect light from one image but not the other  Works based on intensity of light -colorblind people see them fine! ...
Eye movements
Eye movements

... Alternatively, they may be grouped into those movements that shift gaze as visual interest changes, and those that stabilize gaze by maintaining a steady image on the retina ...
BT.1438 - Subjective assessment of stereoscopic television pictures
BT.1438 - Subjective assessment of stereoscopic television pictures

... always be fixed on the screen, independent of the convergence point which is derived from the disparity of the signals. Otherwise, the observer cannot focus clearly. Thus, an inconsistency between accommodation and convergence is introduced in stereoscopic systems. It is generally said that the mini ...
Natural Problems for Stereoscopic Depth Perception in Virtual
Natural Problems for Stereoscopic Depth Perception in Virtual

... effectively reduce the IOD by 1 mm (this calculation is based only upon consideration of the ocular rotation and ignores the translational effects of ocular vergence). Although this is a small percentage change it can introduce spatial bias into the small disparities necessary to specify depth incre ...
Slide
Slide

... ...
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Stereopsis

Stereopsis (from the Greek στερεο- stereo- meaning ""solid"", and ὄψις opsis, ""appearance, sight"") is a term that is most often used to refer to the perception of depth and 3-dimensional structure obtained on the basis of visual information deriving from two eyes by individuals with normally developed binocular vision. Because the eyes of humans, and many animals, are located at different lateral positions on the head, binocular vision results in two slightly different images projected to the retinas of the eyes. The differences are mainly in the relative horizontal position of objects in the two images. These positional differences are referred to as horizontal disparities or, more generally, binocular disparities. Disparities are processed in the visual cortex of the brain to yield depth perception. While binocular disparities are naturally present when viewing a real 3-dimensional scene with two eyes, they can also be simulated by artificially presenting two different images separately to each eye using a method called stereoscopy. The perception of depth in such cases is also referred to as ""stereoscopic depth"".The perception of depth and 3-dimensional structure is, however, possible with information visible from one eye alone, such as differences in object size and motion parallax (differences in the image of an object over time with observer movement), though the impression of depth in these cases is often not as vivid as that obtained from binocular disparities.Therefore, the term stereopsis (or stereoscopic depth) can also refer specifically to the unique impression of depth associated with binocular vision; what is colloquially referred to as seeing ""in 3D"".It has been suggested that the impression of “real” separation in depth is linked to the precision with which depth is derived, and that a conscious awareness of this precision – perceived as an impression of interactability and realness – may help guide the planning of motor action.
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