H C Longuet-Higgins, K Prazdny. Proc R Soc Lond B Biol Sci 1980
Times Cited: 450
Times Cited: 450
Times Cited
Times Co-cited
Similarity
A model of self-motion estimation within primate extrastriate visual cortex.
J A Perrone, L S Stone. Vision Res 1994
J A Perrone, L S Stone. Vision Res 1994
29
Sensitivity of MST neurons to optic flow stimuli. I. A continuum of response selectivity to large-field stimuli.
C J Duffy, R H Wurtz. J Neurophysiol 1991
C J Duffy, R H Wurtz. J Neurophysiol 1991
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26
Perception of translational heading from optical flow.
W H Warren, M W Morris, M Kalish. J Exp Psychol Hum Percept Perform 1988
W H Warren, M W Morris, M Kalish. J Exp Psychol Hum Percept Perform 1988
23
22
21
24
Response of monkey MST neurons to optic flow stimuli with shifted centers of motion.
C J Duffy, R H Wurtz. J Neurosci 1995
C J Duffy, R H Wurtz. J Neurosci 1995
19
Mathematical analysis of motion-opponent mechanisms used in the determination of heading and depth.
C S Royden. J Opt Soc Am A Opt Image Sci Vis 1997
C S Royden. J Opt Soc Am A Opt Image Sci Vis 1997
29
Perception of heading during rotation: sufficiency of dense motion parallax and reference objects.
L Li, W H Warren. Vision Res 2000
L Li, W H Warren. Vision Res 2000
20
Optic flow is used to control human walking.
W H Warren, B A Kay, W D Zosh, A P Duchon, S Sahuc. Nat Neurosci 2001
W H Warren, B A Kay, W D Zosh, A P Duchon, S Sahuc. Nat Neurosci 2001
17
Tuning of MST neurons to spiral motions.
M S Graziano, R A Andersen, R J Snowden. J Neurosci 1994
M S Graziano, R A Andersen, R J Snowden. J Neurosci 1994
17
Human heading judgments in the presence of moving objects.
C S Royden, E C Hildreth. Percept Psychophys 1996
C S Royden, E C Hildreth. Percept Psychophys 1996
21
Model for the computation of self-motion in biological systems.
J A Perrone. J Opt Soc Am A 1992
J A Perrone. J Opt Soc Am A 1992
16
Optical velocity patterns, velocity-sensitive neurons, and space perception: a hypothesis.
K Nakayama, J M Loomis. Perception 1974
K Nakayama, J M Loomis. Perception 1974
15
Perception of self-motion from visual flow.
Lappe, Bremmer, van den Berg AV. Trends Cogn Sci 1999
Lappe, Bremmer, van den Berg AV. Trends Cogn Sci 1999
15
Computing heading in the presence of moving objects: a model that uses motion-opponent operators.
Constance S Royden. Vision Res 2002
Constance S Royden. Vision Res 2002
33
Estimating heading during real and simulated eye movements.
M S Banks, S M Ehrlich, B T Backus, J A Crowell. Vision Res 1996
M S Banks, S M Ehrlich, B T Backus, J A Crowell. Vision Res 1996
14
On the sufficiency of the velocity field for perception of heading.
W H Warren, A W Blackwell, K J Kurtz, N G Hatsopoulos, M L Kalish. Biol Cybern 1991
W H Warren, A W Blackwell, K J Kurtz, N G Hatsopoulos, M L Kalish. Biol Cybern 1991
16
13
Why two eyes are better than one for judgements of heading.
A V van den Berg, E Brenner. Nature 1994
A V van den Berg, E Brenner. Nature 1994
16
Visual and nonvisual contributions to three-dimensional heading selectivity in the medial superior temporal area.
Yong Gu, Paul V Watkins, Dora E Angelaki, Gregory C DeAngelis. J Neurosci 2006
Yong Gu, Paul V Watkins, Dora E Angelaki, Gregory C DeAngelis. J Neurosci 2006
13
Heading detection using motion templates and eye velocity gain fields.
J A Beintema, A V van den Berg. Vision Res 1998
J A Beintema, A V van den Berg. Vision Res 1998
18
Mechanisms of heading perception in primate visual cortex.
D C Bradley, M Maxwell, R A Andersen, M S Banks, K V Shenoy. Science 1996
D C Bradley, M Maxwell, R A Andersen, M S Banks, K V Shenoy. Science 1996
13
Wayfinding on foot from information in retinal, not optical, flow.
J E Cutting, K Springer, P A Braren, S H Johnson. J Exp Psychol Gen 1992
J E Cutting, K Springer, P A Braren, S H Johnson. J Exp Psychol Gen 1992
12
A motion pooling model of visually guided navigation explains human behavior in the presence of independently moving objects.
Oliver W Layton, Ennio Mingolla, N Andrew Browning. J Vis 2012
Oliver W Layton, Ennio Mingolla, N Andrew Browning. J Vis 2012
63
Integration of direction signals of image motion in the superior temporal sulcus of the macaque monkey.
H Saito, M Yukie, K Tanaka, K Hikosaka, Y Fukada, E Iwai. J Neurosci 1986
H Saito, M Yukie, K Tanaka, K Hikosaka, Y Fukada, E Iwai. J Neurosci 1986
11
Analysis of motion of the visual field by direction, expansion/contraction, and rotation cells clustered in the dorsal part of the medial superior temporal area of the macaque monkey.
K Tanaka, H Saito. J Neurophysiol 1989
K Tanaka, H Saito. J Neurophysiol 1989
11
Moving observers, relative retinal motion and the detection of object movement.
Simon K Rushton, Paul A Warren. Curr Biol 2005
Simon K Rushton, Paul A Warren. Curr Biol 2005
18
Optic flow processing for the assessment of object movement during ego movement.
Paul A Warren, Simon K Rushton. Curr Biol 2009
Paul A Warren, Simon K Rushton. Curr Biol 2009
11
Path perception during rotation: influence of instructions, depth range, and dot density.
Li Li, William H Warren. Vision Res 2004
Li Li, William H Warren. Vision Res 2004
38
Coding of horizontal disparity and velocity by MT neurons in the alert macaque.
Gregory C DeAngelis, Takanori Uka. J Neurophysiol 2003
Gregory C DeAngelis, Takanori Uka. J Neurophysiol 2003
10
Neural correlates of multisensory cue integration in macaque MSTd.
Yong Gu, Dora E Angelaki, Gregory C Deangelis. Nat Neurosci 2008
Yong Gu, Dora E Angelaki, Gregory C Deangelis. Nat Neurosci 2008
10
Sources of bias in the perception of heading in the presence of moving objects: Object-based and border-based discrepancies.
Oliver W Layton, Brett R Fajen. J Vis 2016
Oliver W Layton, Brett R Fajen. J Vis 2016
66
Humans can perceive heading without visual path information.
Li Li, Barbara T Sweet, Leland S Stone. J Vis 2006
Li Li, Barbara T Sweet, Leland S Stone. J Vis 2006
34
The motion/pursuit law for visual depth perception from motion parallax.
Mark Nawrot, Keith Stroyan. Vision Res 2009
Mark Nawrot, Keith Stroyan. Vision Res 2009
37
MT neurons combine visual motion with a smooth eye movement signal to code depth-sign from motion parallax.
Jacob W Nadler, Mark Nawrot, Dora E Angelaki, Gregory C DeAngelis. Neuron 2009
Jacob W Nadler, Mark Nawrot, Dora E Angelaki, Gregory C DeAngelis. Neuron 2009
21
Eye movements provide the extra-retinal signal required for the perception of depth from motion parallax.
Mark Nawrot. Vision Res 2003
Mark Nawrot. Vision Res 2003
19
A neural model of visually guided steering, obstacle avoidance, and route selection.
David M Elder, Stephen Grossberg, Ennio Mingolla. J Exp Psychol Hum Percept Perform 2009
David M Elder, Stephen Grossberg, Ennio Mingolla. J Exp Psychol Hum Percept Perform 2009
47
Decoding of MSTd population activity accounts for variations in the precision of heading perception.
Yong Gu, Christopher R Fetsch, Babatunde Adeyemo, Gregory C Deangelis, Dora E Angelaki. Neuron 2010
Yong Gu, Christopher R Fetsch, Babatunde Adeyemo, Gregory C Deangelis, Dora E Angelaki. Neuron 2010
9
Perception of scene-relative object movement: Optic flow parsing and the contribution of monocular depth cues.
Paul A Warren, Simon K Rushton. Vision Res 2009
Paul A Warren, Simon K Rushton. Vision Res 2009
20
Visual self-motion perception during head turns.
J A Crowell, M S Banks, K V Shenoy, R A Andersen. Nat Neurosci 1998
J A Crowell, M S Banks, K V Shenoy, R A Andersen. Nat Neurosci 1998
9
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.