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Binocular viewing of a scene creates two slightly different images of the scene in the two eyes due to the eyes' different positions on the head. These differences, referred to as binocular disparity, provide information that the brain can use to calculate depth in the visual scene, providing a major means of depth perception. [17]
Binoculars with roof prisms have been in use to a large extent since the second half of the 20th century. Roof prism designs result in objective lenses that are almost or totally in line with the eyepieces, creating an instrument that is narrower and more compact than Porro prisms and lighter. There is also a difference in image brightness.
Convergence is a binocular oculomotor cue for distance and depth perception. Because of stereopsis, the two eyeballs focus on the same object; in doing so they converge. The convergence will stretch the extraocular muscles – the receptors for this are muscle spindles .
is the distance between the back focal plane of the objective and the back focal plane of the eyepiece (loosely called the "tube length"), typically 160 mm for a modern instrument. f O {\displaystyle \ f_{\mathsf {O}}\ } is the objective focal length and f E {\displaystyle \ f_{\mathsf {E}}\ } is the eyepiece focal length.
The range of visual abilities is not uniform across the visual field, and by implication the FoV, and varies between species. For example, binocular vision, which is the basis for stereopsis and is important for depth perception, covers 114 degrees (horizontally) of the visual field in humans; [7] the remaining peripheral ~50 degrees on each ...
Whether you're prepping a mirepoix, making a crunchy salad, or adding a garnish to your favorite Bloody Mary, knowing the difference between a stalk and a rib will make your cooking more precise.
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