BülthoffH. H.YuilleA. L. (1991). Shape-from-X: Psychophysics and computation. In P. S. Schenker (Ed.), Proceedings of the SPIE, Sensor Fusion 111: 3-D Perception and Recognition, 1383, 235–246.
2.
GregoryR. L. (1963).
Distortion of visual space as inappropriate constancy scaling. Nature,
199, 678–680.
3.
GregoryR. L. (1980).
Perceptions as hypotheses. Philosophical Transactions of the Royal Society of London B Biological Sciences,
290, 181–197.
4.
JuleszB. (1971). Foundations of Cyclopean Perception.
Chicago, IL:
University of Chicago Press.
5.
LandyM. S.MaloneyL. T.JohnstonE. B.YoungM. (1995).
Measurement and modeling of depth cue combination: In defense of weak fusion. Vision Research,
35, 389–412.
6.
LikovaL. T.TylerC. W. (2003).
Peak localization of sparsely sampled luminance patterns is based on interpolated 3D object representations. Vision Research,
43, 2649–2657.
7.
MaloneyL. T.LandyM. S. (1989).
A statistical framework for robust fusion of depth information. In Visual Communications and Image Processing IV,
1199, 1154–1164.
8.
NakayamaK.ShimojoS. (1992).
Experiencing and perceiving visual surfaces. Science,
257, 1357–1363.
9.
ShikataE.TanakaY.NakamuraH.TairaM.SakataH. (1996).
Selectivity of the parietal visual neurones in 3D orientation of surface of stereoscopic stimuli. Neuroreport,
7, 2389–2394.
10.
SunJ.ZhengN. N.ShumH.-Y. (2003).
Stereo matching using belief propagation. IEEE Transactions on Pattern Analysis and Machine Intelligence,
25, 787–800.
11.
TairaM.TsutsuiK. I.JiangM.YaraK.SakataH. (2000).
Parietal neurons represent surface orientation from the gradient of binocular disparity. Journal of Neurophysiology,
83, 3140–3146.
12.
TanakaH.UkaT.YoshiyamaK.KatoM.FujitaI. (2001).
Processing of shape defined by disparity in monkey inferior temporal cortex. Journal of Neurophysiology,
85, 735–744.
13.
TsutsuiK.JiangM.YaraK.SakataH.TairaM. (2001).
Integration of perspective and disparity cues in surface-orientation-selective neurons of area CIP. Journal of Neurophysiology,
86, 2856–2867.
14.
TylerC. W. (2004).
Theory of texture discrimination based on higher-order perturbation in individual texture samples. Vision Research,
44, 2179–2186.
15.
TylerC. W.KontsevichL. L. (1995).
Mechanisms of stereoscopic processing: Stereoattention and surface perception in depth reconstruction. Perception,
24, 127–153.