L Petit, J V Haxby. J Neurophysiol 1999
Times Cited: 220
Times Cited: 220
Times Cited
Times Co-cited
Similarity
Cortical networks subserving pursuit and saccadic eye movements in humans: an FMRI study.
R A Berman, C L Colby, C R Genovese, J T Voyvodic, B Luna, K R Thulborn, J A Sweeney. Hum Brain Mapp 1999
R A Berman, C L Colby, C R Genovese, J T Voyvodic, B Luna, K R Thulborn, J A Sweeney. Hum Brain Mapp 1999
29
Pursuit and saccadic eye movement subregions in human frontal eye field: a high-resolution fMRI investigation.
Caterina Rosano, Christine M Krisky, Joel S Welling, William F Eddy, Beatriz Luna, Keith R Thulborn, John A Sweeney. Cereb Cortex 2002
Caterina Rosano, Christine M Krisky, Joel S Welling, William F Eddy, Beatriz Luna, Keith R Thulborn, John A Sweeney. Cereb Cortex 2002
26
25
Eye movement control by the cerebral cortex.
Charles Pierrot-Deseilligny, Dan Milea, René M Müri. Curr Opin Neurol 2004
Charles Pierrot-Deseilligny, Dan Milea, René M Müri. Curr Opin Neurol 2004
19
A common network of functional areas for attention and eye movements.
M Corbetta, E Akbudak, T E Conturo, A Z Snyder, J M Ollinger, H A Drury, M R Linenweber, S E Petersen, M E Raichle, D C Van Essen,[...]. Neuron 1998
M Corbetta, E Akbudak, T E Conturo, A Z Snyder, J M Ollinger, H A Drury, M R Linenweber, S E Petersen, M E Raichle, D C Van Essen,[...]. Neuron 1998
18
Cortical mechanisms of smooth pursuit eye movements with target blanking. An fMRI study.
Rebekka Lencer, Matthias Nagel, Andreas Sprenger, Silke Zapf, Christian Erdmann, Wolfgang Heide, Ferdinand Binkofski. Eur J Neurosci 2004
Rebekka Lencer, Matthias Nagel, Andreas Sprenger, Silke Zapf, Christian Erdmann, Wolfgang Heide, Ferdinand Binkofski. Eur J Neurosci 2004
25
Functional neuroanatomy of smooth pursuit and predictive saccades.
G A O'Driscoll, A L Wolff, C Benkelfat, P S Florencio, S Lal, A C Evans. Neuroreport 2000
G A O'Driscoll, A L Wolff, C Benkelfat, P S Florencio, S Lal, A C Evans. Neuroreport 2000
16
Brain activation during smooth-pursuit eye movements.
Jody Tanabe, Jason Tregellas, David Miller, Randal G Ross, Robert Freedman. Neuroimage 2002
Jody Tanabe, Jason Tregellas, David Miller, Randal G Ross, Robert Freedman. Neuroimage 2002
27
Dissociation of saccade-related and pursuit-related activation in human frontal eye fields as revealed by fMRI.
L Petit, V P Clark, J Ingeholm, J V Haxby. J Neurophysiol 1997
L Petit, V P Clark, J Ingeholm, J V Haxby. J Neurophysiol 1997
16
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
18
Parametric modulation of cortical activation during smooth pursuit with and without target blanking. an fMRI study.
Matthias Nagel, Andreas Sprenger, Silke Zapf, Christian Erdmann, Detlef Kömpf, Wolfgang Heide, Ferdinand Binkofski, Rebekka Lencer. Neuroimage 2006
Matthias Nagel, Andreas Sprenger, Silke Zapf, Christian Erdmann, Detlef Kömpf, Wolfgang Heide, Ferdinand Binkofski, Rebekka Lencer. Neuroimage 2006
25
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
14
Distinguishing subregions of the human MT+ complex using visual fields and pursuit eye movements.
S P Dukelow, J F DeSouza, J C Culham, A V van den Berg, R S Menon, T Vilis. J Neurophysiol 2001
S P Dukelow, J F DeSouza, J C Culham, A V van den Berg, R S Menon, T Vilis. J Neurophysiol 2001
14
Control of goal-directed and stimulus-driven attention in the brain.
Maurizio Corbetta, Gordon L Shulman. Nat Rev Neurosci 2002
Maurizio Corbetta, Gordon L Shulman. Nat Rev Neurosci 2002
13
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
14
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
12
Smooth-pursuit eye movement representation in the primate frontal eye field.
M G MacAvoy, J P Gottlieb, C J Bruce. Cereb Cortex 1991
M G MacAvoy, J P Gottlieb, C J Bruce. Cereb Cortex 1991
12
Dorsal cortical regions subserving visually guided saccades in humans: an fMRI study.
B Luna, K R Thulborn, M H Strojwas, B J McCurtain, R A Berman, C R Genovese, J A Sweeney. Cereb Cortex 1998
B Luna, K R Thulborn, M H Strojwas, B J McCurtain, R A Berman, C R Genovese, J A Sweeney. Cereb Cortex 1998
12
An fMRI study of anticipation and learning of smooth pursuit eye movements in humans.
A Schmid, G Rees, C Frith, G Barnes. Neuroreport 2001
A Schmid, G Rees, C Frith, G Barnes. Neuroreport 2001
17
11
Supplementary eye fields stimulation facilitates anticipatory pursuit.
M Missal, S J Heinen. J Neurophysiol 2004
M Missal, S J Heinen. J Neurophysiol 2004
12
Retinotopy and functional subdivision of human areas MT and MST.
Alexander C Huk, Robert F Dougherty, David J Heeger. J Neurosci 2002
Alexander C Huk, Robert F Dougherty, David J Heeger. J Neurosci 2002
10
Cortical fMRI activation produced by attentive tracking of moving targets.
J C Culham, S A Brandt, P Cavanagh, N G Kanwisher, A M Dale, R B Tootell. J Neurophysiol 1998
J C Culham, S A Brandt, P Cavanagh, N G Kanwisher, A M Dale, R B Tootell. J Neurophysiol 1998
10
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
10
fMRI signal increases and decreases in cortical areas during small-field optokinetic stimulation and central fixation.
Marianne Dieterich, Sandra Bense, Thomas Stephan, Tarek A Yousry, Thomas Brandt. Exp Brain Res 2003
Marianne Dieterich, Sandra Bense, Thomas Stephan, Tarek A Yousry, Thomas Brandt. Exp Brain Res 2003
10
Neurophysiology and neuroanatomy of smooth pursuit in humans.
Rebekka Lencer, Peter Trillenberg. Brain Cogn 2008
Rebekka Lencer, Peter Trillenberg. Brain Cogn 2008
11
Area V5 of the human brain: evidence from a combined study using positron emission tomography and magnetic resonance imaging.
J D Watson, R Myers, R S Frackowiak, J V Hajnal, R P Woods, J C Mazziotta, S Shipp, S Zeki. Cereb Cortex 1993
J D Watson, R Myers, R S Frackowiak, J V Hajnal, R P Woods, J C Mazziotta, S Shipp, S Zeki. Cereb Cortex 1993
9
The control of voluntary eye movements: new perspectives.
Richard J Krauzlis. Neuroscientist 2005
Richard J Krauzlis. Neuroscientist 2005
9
Relationship between saccadic eye movements and cortical activity as measured by fMRI: quantitative and qualitative aspects.
H Kimmig, M W Greenlee, M Gondan, M Schira, J Kassubek, T Mergner. Exp Brain Res 2001
H Kimmig, M W Greenlee, M Gondan, M Schira, J Kassubek, T Mergner. Exp Brain Res 2001
9
Automated anatomical labeling of activations in SPM using a macroscopic anatomical parcellation of the MNI MRI single-subject brain.
N Tzourio-Mazoyer, B Landeau, D Papathanassiou, F Crivello, O Etard, N Delcroix, B Mazoyer, M Joliot. Neuroimage 2002
N Tzourio-Mazoyer, B Landeau, D Papathanassiou, F Crivello, O Etard, N Delcroix, B Mazoyer, M Joliot. Neuroimage 2002
9
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
9
Location and function of the human frontal eye-field: a selective review.
T Paus. Neuropsychologia 1996
T Paus. Neuropsychologia 1996
9
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
9
Transcranial magnetic stimulation of frontal oculomotor regions during smooth pursuit.
Danny Gagnon, Tomás Paus, Marie-Helène Grosbras, G Bruce Pike, Gillian A O'Driscoll. J Neurosci 2006
Danny Gagnon, Tomás Paus, Marie-Helène Grosbras, G Bruce Pike, Gillian A O'Driscoll. J Neurosci 2006
24
Brain and behavior: a task-dependent eye movement study.
M R Burke, G R Barnes. Cereb Cortex 2008
M R Burke, G R Barnes. Cereb Cortex 2008
23
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
8
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
8
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
8
Gaze pursuit, 'attention pursuit' and their effects on cortical activations.
S Ohlendorf, H Kimmig, V Glauche, S Haller. Eur J Neurosci 2007
S Ohlendorf, H Kimmig, V Glauche, S Haller. Eur J Neurosci 2007
32
Cortical mechanisms of retinal and extraretinal smooth pursuit eye movements to different target velocities.
Matthias Nagel, Andreas Sprenger, Fritz Hohagen, Ferdinand Binkofski, Rebekka Lencer. Neuroimage 2008
Matthias Nagel, Andreas Sprenger, Fritz Hohagen, Ferdinand Binkofski, Rebekka Lencer. Neuroimage 2008
22
fMRI evidence for sensorimotor transformations in human cortex during smooth pursuit eye movements.
H Kimmig, S Ohlendorf, O Speck, A Sprenger, R M Rutschmann, S Haller, M W Greenlee. Neuropsychologia 2008
H Kimmig, S Ohlendorf, O Speck, A Sprenger, R M Rutschmann, S Haller, M W Greenlee. Neuropsychologia 2008
38
Activation of frontoparietal cortices during memorized triple-step sequences of saccadic eye movements: an fMRI study.
W Heide, F Binkofski, R J Seitz, S Posse, M F Nitschke, H J Freund, D Kömpf. Eur J Neurosci 2001
W Heide, F Binkofski, R J Seitz, S Posse, M F Nitschke, H J Freund, D Kömpf. Eur J Neurosci 2001
7
Frontal eye field lesions impair predictive and visually-guided pursuit eye movements.
E G Keating. Exp Brain Res 1991
E G Keating. Exp Brain Res 1991
7
The mechanism of prediction in human smooth pursuit eye movements.
G R Barnes, P T Asselman. J Physiol 1991
G R Barnes, P T Asselman. J Physiol 1991
7
Functional organization of human intraparietal and frontal cortex for attending, looking, and pointing.
Serguei V Astafiev, Gordon L Shulman, Christine M Stanley, Abraham Z Snyder, David C Van Essen, Maurizio Corbetta. J Neurosci 2003
Serguei V Astafiev, Gordon L Shulman, Christine M Stanley, Abraham Z Snyder, David C Van Essen, Maurizio Corbetta. J Neurosci 2003
7
Functional magnetic resonance imaging of macaque monkeys performing visually guided saccade tasks: comparison of cortical eye fields with humans.
Minoru Koyama, Isao Hasegawa, Takahiro Osada, Yusuke Adachi, Kiyoshi Nakahara, Yasushi Miyashita. Neuron 2004
Minoru Koyama, Isao Hasegawa, Takahiro Osada, Yusuke Adachi, Kiyoshi Nakahara, Yasushi Miyashita. Neuron 2004
7
Decisional role of the dorsolateral prefrontal cortex in ocular motor behaviour.
C Pierrot-Deseilligny, R M Müri, C J Ploner, B Gaymard, S Demeret, S Rivaud-Pechoux. Brain 2003
C Pierrot-Deseilligny, R M Müri, C J Ploner, B Gaymard, S Demeret, S Rivaud-Pechoux. Brain 2003
7
Eye movement disorders after frontal eye field lesions in humans.
S Rivaud, R M Müri, B Gaymard, A I Vermersch, C Pierrot-Deseilligny. Exp Brain Res 1994
S Rivaud, R M Müri, B Gaymard, A I Vermersch, C Pierrot-Deseilligny. Exp Brain Res 1994
7
Neural responses related to smooth-pursuit eye movements and their correspondence with electrically elicited smooth eye movements in the primate frontal eye field.
J P Gottlieb, M G MacAvoy, C J Bruce. J Neurophysiol 1994
J P Gottlieb, M G MacAvoy, C J Bruce. J Neurophysiol 1994
7
Primate frontal eye fields. I. Single neurons discharging before saccades.
C J Bruce, M E Goldberg. J Neurophysiol 1985
C J Bruce, M E Goldberg. J Neurophysiol 1985
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.