U J Ilg. Prog Neurobiol 1997
Times Cited: 113
Times Cited: 113
Times Cited
Times Co-cited
Similarity
27
Visual motion processing and sensory-motor integration for smooth pursuit eye movements.
S G Lisberger, E J Morris, L Tychsen. Annu Rev Neurosci 1987
S G Lisberger, E J Morris, L Tychsen. Annu Rev Neurosci 1987
23
20
Pursuit and optokinetic deficits following chemical lesions of cortical areas MT and MST.
M R Dürsteler, R H Wurtz. J Neurophysiol 1988
M R Dürsteler, R H Wurtz. J Neurophysiol 1988
17
Relation of cortical areas MT and MST to pursuit eye movements. II. Differentiation of retinal from extraretinal inputs.
W T Newsome, R H Wurtz, H Komatsu. J Neurophysiol 1988
W T Newsome, R H Wurtz, H Komatsu. J Neurophysiol 1988
17
Visual motion analysis for pursuit eye movements in area MT of macaque monkeys.
S G Lisberger, J A Movshon. J Neurosci 1999
S G Lisberger, J A Movshon. J Neurosci 1999
16
16
Generation of smooth-pursuit eye movements: neuronal mechanisms and pathways.
E L Keller, S J Heinen. Neurosci Res 1991
E L Keller, S J Heinen. Neurosci Res 1991
15
An fMRI study of optokinetic nystagmus and smooth-pursuit eye movements in humans.
Christina S Konen, Raimund Kleiser, Rüdiger J Seitz, Frank Bremmer. Exp Brain Res 2005
Christina S Konen, Raimund Kleiser, Rüdiger J Seitz, Frank Bremmer. Exp Brain Res 2005
16
Relation of cortical areas MT and MST to pursuit eye movements. I. Localization and visual properties of neurons.
H Komatsu, R H Wurtz. J Neurophysiol 1988
H Komatsu, R H Wurtz. J Neurophysiol 1988
14
A model of the smooth pursuit eye movement system.
D A Robinson, J L Gordon, S E Gordon. Biol Cybern 1986
D A Robinson, J L Gordon, S E Gordon. Biol Cybern 1986
13
Short latency ocular-following responses in man.
R S Gellman, J R Carl, F A Miles. Vis Neurosci 1990
R S Gellman, J R Carl, F A Miles. Vis Neurosci 1990
12
Visual tracking neurons in primate area MST are activated by smooth-pursuit eye movements of an "imaginary" target.
Uwe J Ilg, Peter Thier. J Neurophysiol 2003
Uwe J Ilg, Peter Thier. J Neurophysiol 2003
16
What triggers catch-up saccades during visual tracking?
Sophie de Brouwer, Demet Yuksel, Gunnar Blohm, Marcus Missal, Philippe Lefèvre. J Neurophysiol 2002
Sophie de Brouwer, Demet Yuksel, Gunnar Blohm, Marcus Missal, Philippe Lefèvre. J Neurophysiol 2002
12
Neural activity in cortical area MST of alert monkey during ocular following responses.
K Kawano, M Shidara, Y Watanabe, S Yamane. J Neurophysiol 1994
K Kawano, M Shidara, Y Watanabe, S Yamane. J Neurophysiol 1994
11
Deficits in visual motion processing following ibotenic acid lesions of the middle temporal visual area of the macaque monkey.
W T Newsome, R H Wurtz, M R Dürsteler, A Mikami. J Neurosci 1985
W T Newsome, R H Wurtz, M R Dürsteler, A Mikami. J Neurosci 1985
11
Short-latency ocular following responses of monkey. I. Dependence on temporospatial properties of visual input.
F A Miles, K Kawano, L M Optican. J Neurophysiol 1986
F A Miles, K Kawano, L M Optican. J Neurophysiol 1986
11
Saccades and pursuit: two outcomes of a single sensorimotor process.
Jean-Jacques Orban de Xivry, Philippe Lefèvre. J Physiol 2007
Jean-Jacques Orban de Xivry, Philippe Lefèvre. J Physiol 2007
11
Modulation of pursuit eye movements by stimulation of cortical areas MT and MST.
H Komatsu, R H Wurtz. J Neurophysiol 1989
H Komatsu, R H Wurtz. J Neurophysiol 1989
10
Prediction in the oculomotor system: smooth pursuit during transient disappearance of a visual target.
W Becker, A F Fuchs. Exp Brain Res 1985
W Becker, A F Fuchs. Exp Brain Res 1985
10
Motion coherence affects human perception and pursuit similarly.
B R Beutter, L S Stone. Vis Neurosci 2000
B R Beutter, L S Stone. Vis Neurosci 2000
17
From following edges to pursuing objects.
Guillaume S Masson, Leland S Stone. J Neurophysiol 2002
Guillaume S Masson, Leland S Stone. J Neurophysiol 2002
18
A comparison of pursuit eye movement and perceptual performance in speed discrimination.
Karl R Gegenfurtner, Dajun Xing, Brian H Scott, Michael J Hawken. J Vis 2003
Karl R Gegenfurtner, Dajun Xing, Brian H Scott, Michael J Hawken. J Vis 2003
16
The neural basis of smooth-pursuit eye movements.
Peter Thier, Uwe J Ilg. Curr Opin Neurobiol 2005
Peter Thier, Uwe J Ilg. Curr Opin Neurobiol 2005
10
Do we track what we see? Common versus independent processing for motion perception and smooth pursuit eye movements: a review.
Miriam Spering, Anna Montagnini. Vision Res 2011
Miriam Spering, Anna Montagnini. Vision Res 2011
11
Quantitative analysis of the velocity characteristics of optokinetic nystagmus and optokinetic after-nystagmus.
B Cohen, V Matsuo, T Raphan. J Physiol 1977
B Cohen, V Matsuo, T Raphan. J Physiol 1977
9
Functional anatomy of pursuit eye movements in humans as revealed by fMRI.
L Petit, J V Haxby. J Neurophysiol 1999
L Petit, J V Haxby. J Neurophysiol 1999
9
Visual motion processing for the initiation of smooth-pursuit eye movements in humans.
L Tychsen, S G Lisberger. J Neurophysiol 1986
L Tychsen, S G Lisberger. J Neurophysiol 1986
9
Temporal dynamics of a neural solution to the aperture problem in visual area MT of macaque brain.
C C Pack, R T Born. Nature 2001
C C Pack, R T Born. Nature 2001
9
Properties of visual inputs that initiate horizontal smooth pursuit eye movements in monkeys.
S G Lisberger, L E Westbrook. J Neurosci 1985
S G Lisberger, L E Westbrook. J Neurosci 1985
9
A selective impairment of motion perception following lesions of the middle temporal visual area (MT).
W T Newsome, E B Paré. J Neurosci 1988
W T Newsome, E B Paré. J Neurosci 1988
9
Deficits of smooth pursuit eye movements after frontal and parietal lesions.
W Heide, K Kurzidim, D Kömpf. Brain 1996
W Heide, K Kurzidim, D Kömpf. Brain 1996
10
Shared motion signals for human perceptual decisions and oculomotor actions.
Leland S Stone, Richard J Krauzlis. J Vis 2003
Leland S Stone, Richard J Krauzlis. J Vis 2003
10
9
Horizontal or vertical optokinetic stimulation activates visual motion-sensitive, ocular motor and vestibular cortex areas with right hemispheric dominance. An fMRI study.
M Dieterich, S F Bucher, K C Seelos, T Brandt. Brain 1998
M Dieterich, S F Bucher, K C Seelos, T Brandt. Brain 1998
8
Effects of attention on MT and MST neuronal activity during pursuit initiation.
G H Recanzone, R H Wurtz. J Neurophysiol 2000
G H Recanzone, R H Wurtz. J Neurophysiol 2000
8
Optokinetic and pursuit system: a case report.
U J Ilg, F Bremmer, K P Hoffmann. Behav Brain Res 1993
U J Ilg, F Bremmer, K P Hoffmann. Behav Brain Res 1993
21
Effects of directional expectations on motion perception and pursuit eye movements.
R J Krauzlis, S A Adler. Vis Neurosci 2001
R J Krauzlis, S A Adler. Vis Neurosci 2001
18
Human smooth and saccadic eye movements during voluntary pursuit of different target motions on different backgrounds.
H Collewijn, E P Tamminga. J Physiol 1984
H Collewijn, E P Tamminga. J Physiol 1984
8
Cancellation of self-induced retinal image motion during smooth pursuit eye movements.
A Lindner, U Schwarz, U J Ilg. Vision Res 2001
A Lindner, U Schwarz, U J Ilg. Vision Res 2001
20
How is a sensory map read Out? Effects of microstimulation in visual area MT on saccades and smooth pursuit eye movements.
J M Groh, R T Born, W T Newsome. J Neurosci 1997
J M Groh, R T Born, W T Newsome. J Neurosci 1997
8
Shared attentional control of smooth eye movement and perception.
B Khurana, E Kowler. Vision Res 1987
B Khurana, E Kowler. Vision Res 1987
8
Changes in visual perception at the time of saccades.
J Ross, M C Morrone, M E Goldberg, D C Burr. Trends Neurosci 2001
J Ross, M C Morrone, M E Goldberg, D C Burr. Trends Neurosci 2001
8
The effect of optokinetic nystagmus on the perceived position of briefly flashed targets.
Arianna Tozzi, Maria Concetta Morrone, David C Burr. Vision Res 2007
Arianna Tozzi, Maria Concetta Morrone, David C Burr. Vision Res 2007
57
The control of voluntary eye movements: new perspectives.
Richard J Krauzlis. Neuroscientist 2005
Richard J Krauzlis. Neuroscientist 2005
8
Smooth eye movements elicited by microstimulation in the primate frontal eye field.
J P Gottlieb, C J Bruce, M G MacAvoy. J Neurophysiol 1993
J P Gottlieb, C J Bruce, M G MacAvoy. J Neurophysiol 1993
7
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.