-
1
-
-
0035229744
-
Stereomotion speed perception is contrast dependent
-
[PubMed]
-
Brooks, K. (2001). Stereomotion speed perception is contrast dependent. Perception, 30, 725-731. [PubMed]
-
(2001)
Perception
, vol.30
, pp. 725-731
-
-
Brooks, K.1
-
2
-
-
0036977491
-
Interocular velocity difference contributes to stereomotion speed perception
-
doi:10.1167/2.3.2. [PubMed] [Article]
-
Brooks, K. R. (2002a). Interocular velocity difference contributes to stereomotion speed perception. Journal of Vision, 2(3), 218-231, http://journalofvision.org/2/3/2/, doi:10.1167/2.3.2. [PubMed] [Article]
-
(2002)
Journal of Vision
, vol.2
, Issue.3
, pp. 218-231
-
-
Brooks, K.R.1
-
3
-
-
85047670883
-
Monocular motion adaptation affects the perceived trajectory of stereomotion
-
[PubMed]
-
Brooks, K. R. (2002b). Monocular motion adaptation affects the perceived trajectory of stereomotion. Journal of Experimental Psychology: Human Perception and Performance, 28, 1470-1482. [PubMed]
-
(2002)
Journal of Experimental Psychology: Human Perception and Performance
, vol.28
, pp. 1470-1482
-
-
Brooks, K.R.1
-
4
-
-
0033661521
-
Perceived speed of motion in depth is reduced in the periphery
-
[PubMed]
-
Brooks, K., & Mather, G. (2000). Perceived speed of motion in depth is reduced in the periphery. Vision Research, 40, 3507-3516. [PubMed]
-
(2000)
Vision Research
, vol.40
, pp. 3507-3516
-
-
Brooks, K.1
Mather, G.2
-
5
-
-
29144528029
-
Quantitative perceived depth from sequential monocular decamouflage
-
[PubMed]
-
Brooks, K. R., & Gillam, B. J. (2006). Quantitative perceived depth from sequential monocular decamouflage, Vision Research, 46, 605-613. [PubMed]
-
(2006)
Vision Research
, vol.46
, pp. 605-613
-
-
Brooks, K.R.1
Gillam, B.J.2
-
6
-
-
25144468520
-
Stereomotion speed perception: Contributions from both changing disparity and interocular velocity difference over a range of relative disparities
-
doi:10.1167/4.12.6. [PubMed] [Article]
-
Brooks, K. R., & Stone, L. S. (2004). Stereomotion speed perception: Contributions from both changing disparity and interocular velocity difference over a range of relative disparities. Journal of Vision, 4(12), 1061-1079, http://journalofvision.org/4/12/6/, doi:10.1167/ 4.12.6. [PubMed] [Article]
-
(2004)
Journal of Vision
, vol.4
, Issue.12
, pp. 1061-1079
-
-
Brooks, K.R.1
Stone, L.S.2
-
7
-
-
0029185621
-
Binocular disparity processing with opposite-contrast stimuli
-
[PubMed]
-
Cogan, A. I., Kontsevich, L. L., Lomakin, A. J., Halpern, D. L., & Blake, R. (1995). Binocular disparity processing with opposite-contrast stimuli. Perception, 24, 33-47. [PubMed]
-
(1995)
Perception
, vol.24
, pp. 33-47
-
-
Cogan, A.I.1
Kontsevich, L.L.2
Lomakin, A.J.3
Halpern, D.L.4
Blake, R.5
-
8
-
-
0027283635
-
Depth in anticorrelated stereograms: Effects of spatial density and interocular delay
-
[PubMed]
-
Cogan, A. I., Lomakin, A. J., & Rossi, A. F. (1993). Depth in anticorrelated stereograms: Effects of spatial density and interocular delay. Vision Research, 33, 1959-1975. [PubMed]
-
(1993)
Vision Research
, vol.33
, pp. 1959-1975
-
-
Cogan, A.I.1
Lomakin, A.J.2
Rossi, A.F.3
-
9
-
-
27344441656
-
Neither ocular vergence nor absolute disparity changes produce motion-in-depth sensation in man
-
Collewijn, H., Erkelens, C. J., & Regan, D. (1985). Neither ocular vergence nor absolute disparity changes produce motion-in-depth sensation in man. Journal of Physiology, 366, 16P.
-
(1985)
Journal of Physiology
, vol.366
, pp. 16
-
-
Collewijn, H.1
Erkelens, C.J.2
Regan, D.3
-
10
-
-
1142277765
-
Depth of monocular elements in a binocular scene: The conditions for da Vinci stereopsis
-
[PubMed]
-
Cook, M., & Gillam, B. (2004). Depth of monocular elements in a binocular scene: The conditions for da Vinci stereopsis. Journal of Experimental Psychology: Human Perception and Performance, 30, 92-103. [PubMed]
-
(2004)
Journal of Experimental Psychology: Human Perception and Performance
, vol.30
, pp. 92-103
-
-
Cook, M.1
Gillam, B.2
-
11
-
-
0028012114
-
Binocular mechanisms for detecting motion in depth
-
[PubMed]
-
Cumming, B. G., & Parker, A. J. (1994). Binocular mechanisms for detecting motion in depth. Vision Research, 34, 483-495. [PubMed]
-
(1994)
Vision Research
, vol.34
, pp. 483-495
-
-
Cumming, B.G.1
Parker, A.J.2
-
12
-
-
0030954803
-
Response of primary visual cortical neurons to binocular disparity without depth perception
-
[PubMed]
-
Cumming, B. G., & Parker, A. J. (1997). Response of primary visual cortical neurons to binocular disparity without depth perception. Nature, 389, 280-283. [PubMed]
-
(1997)
Nature
, vol.389
, pp. 280-283
-
-
Cumming, B.G.1
Parker, A.J.2
-
13
-
-
0021954538
-
Motion perception during dichoptic viewing of moving random-dot stereograms
-
[PubMed]
-
Erkelens, C. J., & Collewijn, H. (1985). Motion perception during dichoptic viewing of moving random-dot stereograms. Vision Research, 25, 583-588. [PubMed]
-
(1985)
Vision Research
, vol.25
, pp. 583-588
-
-
Erkelens, C.J.1
Collewijn, H.2
-
14
-
-
23744453612
-
Seeing motion in depth using inter-ocular velocity differences
-
[PubMed]
-
Fernandez, J. M., & Farrell, B. (2005). Seeing motion in depth using inter-ocular velocity differences. Vision Research, 45, 2786-2798. [PubMed]
-
(2005)
Vision Research
, vol.45
, pp. 2786-2798
-
-
Fernandez, J.M.1
Farrell, B.2
-
15
-
-
0028795271
-
Matching needed for stereopsis
-
[PubMed]
-
Gillam, B. (1995). Matching needed for stereopsis. Nature, 373, 202-203. [PubMed]
-
(1995)
Nature
, vol.373
, pp. 202-203
-
-
Gillam, B.1
-
16
-
-
0344527847
-
Stereopsis based on monocular gaps: Metrical encoding of depth and slant without matching contours
-
[PubMed]
-
Gillam, B., Blackburn, S., & Nakayama, K. (1999). Stereopsis based on monocular gaps: Metrical encoding of depth and slant without matching contours. Vision Research, 39, 493-502. [PubMed]
-
(1999)
Vision Research
, vol.39
, pp. 493-502
-
-
Gillam, B.1
Blackburn, S.2
Nakayama, K.3
-
17
-
-
0024243501
-
The role of monocular regions in stereoscopic displays
-
[PubMed]
-
Gillam, B., & Borsting, E. (1988). The role of monocular regions in stereoscopic displays. Perception, 17, 603-608. [PubMed]
-
(1988)
Perception
, vol.17
, pp. 603-608
-
-
Gillam, B.1
Borsting, E.2
-
18
-
-
0032889760
-
Quantitative depth for a phantom surface can be based on cyclopean occlusion cues alone
-
[PubMed]
-
Gillam, B., & Nakayama, K. (1999). Quantitative depth for a phantom surface can be based on cyclopean occlusion cues alone. Vision Research, 39, 109-112. [PubMed]
-
(1999)
Vision Research
, vol.39
, pp. 109-112
-
-
Gillam, B.1
Nakayama, K.2
-
19
-
-
31344433518
-
Monocular transparency and unpaired stereopsis
-
[PubMed]
-
Grove, P. G., Brooks, K. R., Anderson, B. L., & Gillam, B. J. (2006). Monocular transparency and unpaired stereopsis. Vision Research, 46, 1695-1705. [PubMed]
-
(2006)
Vision Research
, vol.46
, pp. 1695-1705
-
-
Grove, P.G.1
Brooks, K.R.2
Anderson, B.L.3
Gillam, B.J.4
-
20
-
-
0030633467
-
Occlusion constraints and stereoscopic slant
-
[PubMed]
-
Häkkinen, J., & Nyman, G. (1997). Occlusion constraints and stereoscopic slant. Perception, 26, 29-38. [PubMed]
-
(1997)
Perception
, vol.26
, pp. 29-38
-
-
Häkkinen, J.1
Nyman, G.2
-
21
-
-
0028918976
-
Speed discrimination of motion-in-depth using binocular cues
-
[PubMed]
-
Harris, J. M., & Watamaniuk, S. N. (1995). Speed discrimination of motion-in-depth using binocular cues. Vision Research, 35, 885-896. [PubMed]
-
(1995)
Vision Research
, vol.35
, pp. 885-896
-
-
Harris, J.M.1
Watamaniuk, S.N.2
-
22
-
-
0042312744
-
Binocular stereopsis without spatial disparity
-
Lee, D. N. (1970). Binocular stereopsis without spatial disparity. Perception and Psychophysics, 9, 216-218.
-
(1970)
Perception and Psychophysics
, vol.9
, pp. 216-218
-
-
Lee, D.N.1
-
23
-
-
0033363693
-
Stereoscopic occlusion junctions
-
[PubMed] [Article]
-
Malik, J., Anderson, B. L., & Charowhas, C. E. (1999). Stereoscopic occlusion junctions. Nature Neuroscience, 2, 840-843. [PubMed] [Article]
-
(1999)
Nature Neuroscience
, vol.2
, pp. 840-843
-
-
Malik, J.1
Anderson, B.L.2
Charowhas, C.E.3
-
25
-
-
0019678161
-
Psychophysical and computational studies towards a theory of human stereopsis
-
Mayhew, J. E. W., & Frisbee, I. P. (1981). Psychophysical and computational studies towards a theory of human stereopsis. Artificial Intelligence, 17, 349-385.
-
(1981)
Artificial Intelligence
, vol.17
, pp. 349-385
-
-
Mayhew, J.E.W.1
Frisbee, I.P.2
-
26
-
-
0014560364
-
Qualitative depth localization with diplopic images of dissimilar shape
-
[PubMed]
-
Mitchell, D. E. (1969). Qualitative depth localization with diplopic images of dissimilar shape. Vision Research, 9, 991-994. [PubMed]
-
(1969)
Vision Research
, vol.9
, pp. 991-994
-
-
Mitchell, D.E.1
-
27
-
-
0014739890
-
Properties of stimuli eliciting vergence eye movements and stereopsis
-
[PubMed]
-
Mitchell, D. E. (1970). Properties of stimuli eliciting vergence eye movements and stereopsis. Vision Research, 10, 145-162. [PubMed]
-
(1970)
Vision Research
, vol.10
, pp. 145-162
-
-
Mitchell, D.E.1
-
28
-
-
0025107158
-
da Vinci stereopsis: Depth and subjective occluding contours from unpaired image points
-
[PubMed]
-
Nakayama, K., & Shimojo, S. (1990). da Vinci stereopsis: Depth and subjective occluding contours from unpaired image points. Vision Research, 30, 1811-1825. [PubMed]
-
(1990)
Vision Research
, vol.30
, pp. 1811-1825
-
-
Nakayama, K.1
Shimojo, S.2
-
30
-
-
0038121789
-
Monocular gap stereopsis: Manipulation of the outer edge disparity and the shape of the gap
-
[PubMed]
-
Pianta, M. J., & Gillam, B. J. (2003a). Monocular gap stereopsis: Manipulation of the outer edge disparity and the shape of the gap. Vision Research, 43, 1937-1950. [PubMed]
-
(2003)
Vision Research
, vol.43
, pp. 1937-1950
-
-
Pianta, M.J.1
Gillam, B.J.2
-
31
-
-
0037220872
-
Paired and unpaired features can be equally effective in human depth perception
-
[PubMed]
-
Pianta, M. J., & Gillam, B. J. (2003b). Paired and unpaired features can be equally effective in human depth perception. Vision Research, 43, 1-6. [PubMed]
-
(2003)
Vision Research
, vol.43
, pp. 1-6
-
-
Pianta, M.J.1
Gillam, B.J.2
-
32
-
-
0032836468
-
Extraction of depth from opposite-contrast stimuli: Transient system can, sustained system can't
-
[PubMed]
-
Pope, D. R., Edwards, M., & Schor, C. S. (1999). Extraction of depth from opposite-contrast stimuli: Transient system can, sustained system can't. Vision Research, 39, 4010-4017. [PubMed]
-
(1999)
Vision Research
, vol.39
, pp. 4010-4017
-
-
Pope, D.R.1
Edwards, M.2
Schor, C.S.3
-
33
-
-
0021530593
-
Stereopsis from kinetic and flicker edges
-
[PubMed]
-
Prazdny, K. (1984). Stereopsis from kinetic and flicker edges. Perception & Psychophysics, 36, 490-492. [PubMed]
-
(1984)
Perception & Psychophysics
, vol.36
, pp. 490-492
-
-
Prazdny, K.1
-
34
-
-
0015915963
-
The role of contours in stereopsis
-
[PubMed]
-
Ramachandran, V. S., Rao, V. M., & Vidyasagar, T. R. (1973). The role of contours in stereopsis. Nature, 242, 412-414. [PubMed]
-
(1973)
Nature
, vol.242
, pp. 412-414
-
-
Ramachandran, V.S.1
Rao, V.M.2
Vidyasagar, T.R.3
-
35
-
-
73049145836
-
Dysjunctive eye movements
-
[PubMed] [Article]
-
Rashbass, C., & Westheimer, G. (1961). Dysjunctive eye movements. Journal of Physiology, 159, 339-360. [PubMed] [Article]
-
(1961)
Journal of Physiology
, vol.159
, pp. 339-360
-
-
Rashbass, C.1
Westheimer, G.2
-
36
-
-
0022642645
-
Necessary conditions for the perception of motion in depth
-
[PubMed]
-
Regan, D., Erkelens, C. J., & Collewijn, H. (1986). Necessary conditions for the perception of motion in depth. Investigative Ophthalmology & Visual Science, 27, 584-597. [PubMed]
-
(1986)
Investigative Ophthalmology & Visual Science
, vol.27
, pp. 584-597
-
-
Regan, D.1
Erkelens, C.J.2
Collewijn, H.3
-
37
-
-
0033855006
-
Motion in depth based on inter-ocular velocity differences
-
[PubMed]
-
Shioiri, S., Saisho, H., & Yaguchi, H. (2000). Motion in depth based on inter-ocular velocity differences. Vision Research, 40, 2565-2572. [PubMed]
-
(2000)
Vision Research
, vol.40
, pp. 2565-2572
-
-
Shioiri, S.1
Saisho, H.2
Yaguchi, H.3
-
38
-
-
0033649114
-
Neither occlusion constraint nor binocular disparity accounts for the perceived depth in the 'sieve effect'
-
[PubMed]
-
Tsai, J. J., & Victor, J. D. (2000). Neither occlusion constraint nor binocular disparity accounts for the perceived depth in the 'sieve effect'. Vision Research, 40, 2265-2276. [PubMed]
-
(2000)
Vision Research
, vol.40
, pp. 2265-2276
-
-
Tsai, J.J.1
Victor, J.D.2
-
39
-
-
0033005345
-
First and second-order contributions to surface interpolation
-
[PubMed]
-
Wilcox, L. M. (1999). First and second-order contributions to surface interpolation. Vision Research, 39, 2335-2347. [PubMed]
-
(1999)
Vision Research
, vol.39
, pp. 2335-2347
-
-
Wilcox, L.M.1
-
40
-
-
0031716733
-
When stereopsis does not improve with increasing contrast
-
[PubMed]
-
Wilcox, L. M., & Hess, R. F. (1996). When stereopsis does not improve with increasing contrast. Vision Research, 38, 3671-3679. [PubMed]
-
(1996)
Vision Research
, vol.38
, pp. 3671-3679
-
-
Wilcox, L.M.1
Hess, R.F.2
-
41
-
-
0033121163
-
Stereoscopic depth but not shape perception from second-order stimuli
-
[PubMed]
-
Ziegler, L. R., & Hess, R. F. (1999). Stereoscopic depth but not shape perception from second-order stimuli. Vision Research, 39, 1491-1507. [PubMed]
-
(1999)
Vision Research
, vol.39
, pp. 1491-1507
-
-
Ziegler, L.R.1
Hess, R.F.2
|