Monocular depth perception relies on motion parallax, relative size, and shading cues
The claim is supported by vision science literature, which demonstrates that monocular depth perception relies on cues like motion parallax, relative size, and shading.
The retrieved literature repeatedly confirms that motion parallax and shading (along with pictorial cues like relative size) serve as important cues for depth perception and are integrated by the visual system. Papers [0], [7], and [8] explicitly discuss the roles of motion parallax, shading, and monocular cues in depth perception. No papers refute the claim.
P. H. Schiller, W. Slocum, Brian Jao, V. S. Weiner. The integration of disparity, shading and motion parallax cues for depth perception in humans and monkeys. 2011. https://doi.org/10.1016/j.brainres.2011.01.003
This study evaluates depth perception using disparity, shading, and motion parallax, confirming their roles as distinct cues that are integrated by the brain.
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Broseghini A, Stasek M, Lõoke M, Guérineau C, Marinelli L, Mongillo P. Pictorial depth cues elicit the perception of tridimensionality in dogs.. 2024. https://doi.org/10.1007/s10071-024-01887-1
This study demonstrates that monocular pictorial cues such as shading elicit the perception of tridimensionality.
Seungchul Ryu, Hyunjin Yoo, Tara Akhavan. 47‐2: Monocular Depth Perception Enhancement Based on Joint Shading/Contrast Model and Motion Parallax (JSM). 2022. https://doi.org/10.1002/sdtp.15558
This paper proposes a framework that utilizes a joint shading/contrast model and motion parallax to enhance monocular depth perception.
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