Definition and detection of binocular disparity

[1]  W. D. Craft,et al.  Visual definition of spatial position in stereoscopic and moving patterns , 1997 .

[2]  C. Erkelens,et al.  Stability of Binocular Depth Perception with Moving Head and Eyes , 1996, Vision Research.

[3]  Casper J Erkelens,et al.  Anisotropy in Werner's Binocular Depth-contrast Effect , 1996, Vision Research.

[4]  RANDOLPH BLAKE,et al.  Stereopsis from Interocular Spatial Frequency Differences is Not Robust , 1996, Vision Research.

[5]  David J. Fleet,et al.  Neural encoding of binocular disparity: Energy models, position shifts and phase shifts , 1996, Vision Research.

[6]  Ian P. Howard,et al.  Binocular Vision and Stereopsis , 1996 .

[7]  Laurie M. Wilcox,et al.  Is the site of non-linear filtering in stereopsis before or after binocular combination? , 1996, Vision Research.

[8]  James T. Todd,et al.  The perception of surface orientation from multiple sources of optical information , 1995, Perception & psychophysics.

[9]  H. Smallman Fine-to-coarse scale disambiguation in stereopsis , 1995, Vision Research.

[10]  R. Hess,et al.  D max for stereopsis depends on size, not spatial frequency content , 1995, Vision Research.

[11]  T. Papathomas Early vision and beyond , 1995 .

[12]  C. Erkelens,et al.  Binocular Perception of Slant about Oblique Axes Relative to a Visual Frame of Reference , 1995, Perception.

[13]  Heinrich H. Bülthoff,et al.  Human stereovision without localized image features , 1995, Biological Cybernetics.

[14]  M F Bradshaw,et al.  Disparity Scaling and the Perception of Frontoparallel Surfaces , 1995, Perception.

[15]  R D Freeman,et al.  Neuronal Mechanisms Underlying Stereopsis: How Do Simple Cells in the Visual Cortex Encode Binocular Disparity? , 1995, Perception.

[16]  Peter J. Passmore,et al.  Independent encoding of surface orientation an surface curvature , 1994, Vision Research.

[17]  I. Howard,et al.  Relative shear disparities and the perception of surface inclination , 1994, Vision Research.

[18]  Jan J. Koenderink,et al.  Influence of surface attitude and curvature scaling on discrimination of binocularly presented curved surfaces , 1994, Vision Research.

[19]  Laurie M. Wilcox,et al.  Linear and non-linear filtering in stereopsis , 1994, Vision Research.

[20]  P. R. Snoeren,et al.  EXTRACTION OF THREE-DIMENSIONAL SHAPE FROM OPTIC FLOW : A GEOMETRIC APPROACH , 1994 .

[21]  H. Smallman,et al.  Size-disparity correlation in stereopsis at contrast threshold. , 1994, Journal of the Optical Society of America. A, Optics, image science, and vision.

[22]  K. Nakayama,et al.  Toward a general theory of stereopsis: binocular matching, occluding contours, and fusion. , 1994, Psychological review.

[23]  J S Lappin,et al.  On the scaling of visual space from motion—in response to Pizlo and Salacfa-Golyska , 1994, Perception & psychophysics.

[24]  B. Rogers,et al.  Anisotropies in the perception of stereoscopic surfaces: The role of orientation disparity , 1993, Vision Research.

[25]  J. Yellott IMPLICATIONS OF TRIPLE CORRELATION UNIQUENESS FOR TEXTURE STATISTICS AND THE JULESZ CONJECTURE , 1993 .

[26]  M F Bradshaw,et al.  Vertical disparities, differential perspective and binocular stereopsis , 1993, Nature.

[27]  K Nakayama,et al.  Experiencing and perceiving visual surfaces. , 1992, Science.

[28]  Barbara Gillam,et al.  Perspective, Orientation Disparity, and Anisotropy in Stereoscopic Slant Perception , 1992, Perception.

[29]  J F Norman,et al.  The detection of surface curvatures defined by optical motion , 1992, Perception & psychophysics.

[30]  Andrea J. van Doorn,et al.  Generic Neighborhood Operators , 1992, IEEE Trans. Pattern Anal. Mach. Intell..

[31]  J. Koenderink,et al.  Second-order optic flow , 1992 .

[32]  R. Blake,et al.  Spatial frequency tuning of human stereopsis , 1991, Vision Research.

[33]  S W Zucker,et al.  The Discriminability of Smooth Stereoscopic Surfaces , 1991, Perception.

[34]  Michael S. Landy,et al.  Computational models of visual processing , 1991 .

[35]  David J. Fleet,et al.  Stability of phase information , 1991, Proceedings of the IEEE Workshop on Visual Motion.

[36]  H. Wilson,et al.  Neural models of stereoscopic vision , 1991, Trends in Neurosciences.

[37]  B Gillam,et al.  Orientation Disparity, Deformation, and Stereoscopic Slant Perception , 1991, Perception.

[38]  A Blake,et al.  Shape from specularities: computation and psychophysics. , 1991, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[39]  S. McKee,et al.  Finding the common bond: Stereoacuity and the other hyperacuities , 1990, Vision Research.

[40]  S. McKee,et al.  The imprecision of stereopsis , 1990, Vision Research.

[41]  I. Ohzawa,et al.  On the neurophysiological organization of binocular vision , 1990, Vision Research.

[42]  S. McKee,et al.  Mechanisms underlying the anisotropy of stereoscopic tilt perception , 1990, Vision Research.

[43]  Karen K. De Valois,et al.  Discrimination of relative spatial position , 1990, Vision Research.

[44]  S. Lehky,et al.  Neural model of stereoacuity and depth interpolation based on a distributed representation of stereo disparity [published erratum appears in J Neurosci 1991 Mar;11(3):following Table of Contents] , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[45]  Jan J. Koenderink,et al.  Solid shape , 1990 .

[46]  H. Bülthoff,et al.  Does the brain know the physics of specular reflection? , 1990, Nature.

[47]  Gordon E. Legge,et al.  Stereopsis and contrast , 1989, Vision Research.

[48]  N. Graham Visual Pattern Analyzers , 1989 .

[49]  K. A. Stevens,et al.  Binocular depth from surfaces versus volumes. , 1989, Journal of experimental psychology. Human perception and performance.

[50]  B. Rogers,et al.  Disparity curvature and the perception of three-dimensional surfaces , 1989, Nature.

[51]  K Nakayama,et al.  Stereoscopic Depth: Its Relation to Image Segmentation, Grouping, and the Recognition of Occluded Objects , 1989, Perception.

[52]  David Williams Topography of the foveal cone mosaic in the living human eye , 1988, Vision Research.

[53]  H H Bülthoff,et al.  Integration of depth modules: stereo and shading. , 1988, Journal of the Optical Society of America. A, Optics and image science.

[54]  W R Uttal,et al.  The reconstruction of static visual forms from sparse dotted samples , 1988, Perception & psychophysics.

[55]  B Gillam,et al.  Postfusional latency in stereoscopic slant perception and the primitives of stereopsis. , 1988, Journal of experimental psychology. Human perception and performance.

[56]  J. Koenderink,et al.  Monocular aniseikonia: a motion parallax analogue of the disparity-induced effect , 1986, Nature.

[57]  D. Regan,et al.  Necessary conditions for the perception of motion in depth. , 1986, Investigative ophthalmology & visual science.

[58]  R M Steinman,et al.  Vision in the presence of known natural retinal image motion. , 1985, Journal of the Optical Society of America. A, Optics and image science.

[59]  C. Schor,et al.  Binocular sensory fusion is limited by spatial resolution , 1984, Vision Research.

[60]  B Gillam,et al.  Evidence for disparity change as the primary stimulus for stereoscopic processing , 1984, Perception & psychophysics.

[61]  C. Schor,et al.  Disparity range for local stereopsis as a function of luminance spatial frequency , 1983, Vision Research.

[62]  B. Gillam,et al.  The induced effect, vertical disparity, and stereoscopic theory , 1983, Perception & psychophysics.

[63]  J. E. W. Mayhew,et al.  A computational model of binocular depth perception , 1982, Nature.

[64]  A. Readhead Radio astronomy by very-long baseline interferometry. , 1982 .

[65]  John E. W. Mayhew,et al.  Psychophysical and Computational Studies Towards a Theory of Human Stereopsis , 1981, Artif. Intell..

[66]  B. Julesz Textons, the elements of texture perception, and their interactions , 1981, Nature.

[67]  J P Frisby,et al.  Spatial frequency tuned channels: implications for structure and function from psychophysical and computational studies of stereopsis. , 1980, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[68]  J. Bergen,et al.  A four mechanism model for threshold spatial vision , 1979, Vision Research.

[69]  G Westheimer,et al.  The spatial sense of the eye. Proctor lecture. , 1979, Investigative ophthalmology & visual science.

[70]  S. McKee,et al.  What prior uniocular processing is necessary for stereopsis? , 1979, Investigative ophthalmology & visual science.

[71]  S. McKee,et al.  Steroscopic acuity for moving retinal images. , 1978, Journal of the Optical Society of America.

[72]  G. Poggio,et al.  Binocular interaction and depth sensitivity in striate and prestriate cortex of behaving rhesus monkey. , 1977, Journal of neurophysiology.

[73]  H. Wallach,et al.  Two forms of retinal disparity , 1976 .

[74]  B. Julesz,et al.  Independent Spatial-Frequency-Tuned Channels in Binocular Fusion and Rivalry , 1975 .

[75]  J. Pokorny Foundations of Cyclopean Perception , 1972 .

[76]  D. Hubel,et al.  Stereoscopic Vision in Macaque Monkey: Cells sensitive to Binocular Depth in Area 18 of the Macaque Monkey Cortex , 1970, Nature.

[77]  C. Blakemore,et al.  The neural mechanism of binocular depth discrimination , 1967, The Journal of physiology.

[78]  C. Wheatstone XVIII. Contributions to the physiology of vision. —Part the first. On some remarkable, and hitherto unobserved, phenomena of binocular vision , 1962, Philosophical Transactions of the Royal Society of London.

[79]  R. N. Berry Quantitative relations among vernier, real depth, and stereoscopic depth acuities. , 1948, Journal of experimental psychology.

[80]  J. Todd,et al.  The perception of surface curvature from optical motion , 1998, Perception & psychophysics.

[81]  J T Todd,et al.  Surface range and attitude probing in stereoscopically presented dynamic scenes. , 1996, Journal of experimental psychology. Human perception and performance.

[82]  Casper J. Erkelens,et al.  Temporal aspects of binocular slant perception , 1996, Vision Research.

[83]  Joseph S. Lappin,et al.  Visible Information about Structure from Motion , 1995 .

[84]  Stereopsis S. Smallman Fine-to-coarse Scale Disambiguation in , 1995 .

[85]  Jan J. Koenderink,et al.  Shape from stereo: A systematic approach using quadratic surfaces , 1993, Perception & psychophysics.

[86]  W. D. Craft,et al.  Spatial primitives for seeing 3D shape from motion , 1993 .

[87]  J S Lappin,et al.  Planar motion permits perception of metric structure in stereopsis , 1992, Perception & psychophysics.

[88]  E. Adelson,et al.  The Plenoptic Function and the Elements of Early Vision , 1991 .

[89]  H Collewijn,et al.  Binocular eye movements and the perception of depth. , 1990, Reviews of oculomotor research.

[90]  Eileen Kowler Eye movements and their role in visual and cognitive processes. , 1990, Reviews of oculomotor research.

[91]  P. Cavanagh,et al.  Motion: the long and short of it. , 1989, Spatial vision.

[92]  Stephen Grossberg,et al.  Stereo boundary fusion by cortical complex cells: A system of maps, filters, and feedback networks for multiplexing distributed data , 1989, Neural Networks.

[93]  W. Geisler Sequential ideal-observer analysis of visual discriminations. , 1989, Psychological review.

[94]  Michael Jenkin,et al.  The Measurement of Binocular Disparity , 1988 .

[95]  Zenon W. Pylyshyn,et al.  Computational processes in human vision : an interdisciplinary perspective , 1988 .

[96]  L. Kaufman,et al.  Handbook of perception and human performance , 1986 .

[97]  T. Poggio,et al.  The analysis of stereopsis. , 1984, Annual review of neuroscience.

[98]  G. Westheimer Spatial vision. , 1984, Annual review of psychology.

[99]  R. Heydt,et al.  THE ROLE OF ORIENTATION DISPARITY IN STEREOSCOPIC PERCEPTION AND THE DEVELOPMENT OF BINOCULAR CORRESPONDENCE , 1981 .

[100]  P. O. Bishop NEURAL MECHANISMS FOR BINOCULAR DEPTH DISCRIMINATION , 1981 .

[101]  S. Freguia Researches in Binocular Vision. , 1950 .

[102]  J. Marsh,et al.  Anisotropies in the Perception of Three-Dimensional Surfaces , 2022 .

[103]  S. Petersen,et al.  Stereoscopic Depth Discrimination in the Visual Cortex : Neurons Ideally Suited as Disparity Detectors IZUMI OHZAWA , 2022 .