S Sunaert, P Van Hecke, G Marchal, G A Orban. Exp Brain Res 1999
Times Cited: 291
Times Cited: 291
Times Cited
Times Co-cited
Similarity
Sensitivity of human visual and vestibular cortical regions to egomotion-compatible visual stimulation.
Velia Cardin, Andrew T Smith. Cereb Cortex 2010
Velia Cardin, Andrew T Smith. Cereb Cortex 2010
30
Functional analysis of human MT and related visual cortical areas using magnetic resonance imaging.
R B Tootell, J B Reppas, K K Kwong, R Malach, R T Born, T J Brady, B R Rosen, J W Belliveau. J Neurosci 1995
R B Tootell, J B Reppas, K K Kwong, R Malach, R T Born, T J Brady, B R Rosen, J W Belliveau. J Neurosci 1995
27
Similarities and differences in motion processing between the human and macaque brain: evidence from fMRI.
Guy A Orban, Denis Fize, Hendrik Peuskens, Katrien Denys, Koen Nelissen, Stefan Sunaert, James Todd, Wim Vanduffel. Neuropsychologia 2003
Guy A Orban, Denis Fize, Hendrik Peuskens, Katrien Denys, Koen Nelissen, Stefan Sunaert, James Todd, Wim Vanduffel. Neuropsychologia 2003
24
Functional analysis of V3A and related areas in human visual cortex.
R B Tootell, J D Mendola, N K Hadjikhani, P J Ledden, A K Liu, J B Reppas, M I Sereno, A M Dale. J Neurosci 1997
R B Tootell, J D Mendola, N K Hadjikhani, P J Ledden, A K Liu, J B Reppas, M I Sereno, A M Dale. J Neurosci 1997
23
Brain areas sensitive to coherent visual motion.
O J Braddick, J M O'Brien, J Wattam-Bell, J Atkinson, T Hartley, R Turner. Perception 2001
O J Braddick, J M O'Brien, J Wattam-Bell, J Atkinson, T Hartley, R Turner. Perception 2001
22
Polymodal motion processing in posterior parietal and premotor cortex: a human fMRI study strongly implies equivalencies between humans and monkeys.
F Bremmer, A Schlack, N J Shah, O Zafiris, M Kubischik, K Hoffmann, K Zilles, G R Fink. Neuron 2001
F Bremmer, A Schlack, N J Shah, O Zafiris, M Kubischik, K Hoffmann, K Zilles, G R Fink. Neuron 2001
22
Human v6: the medial motion area.
S Pitzalis, M I Sereno, G Committeri, P Fattori, G Galati, F Patria, C Galletti. Cereb Cortex 2010
S Pitzalis, M I Sereno, G Committeri, P Fattori, G Galati, F Patria, C Galletti. Cereb Cortex 2010
19
A cortical area that responds specifically to optic flow, revealed by fMRI.
M C Morrone, M Tosetti, D Montanaro, A Fiorentini, G Cioni, D C Burr. Nat Neurosci 2000
M C Morrone, M Tosetti, D Montanaro, A Fiorentini, G Cioni, D C Burr. Nat Neurosci 2000
18
A direct demonstration of functional specialization in human visual cortex.
S Zeki, J D Watson, C J Lueck, K J Friston, C Kennard, R S Frackowiak. J Neurosci 1991
S Zeki, J D Watson, C J Lueck, K J Friston, C Kennard, R S Frackowiak. J Neurosci 1991
18
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
17
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
16
The VideoToolbox software for visual psychophysics: transforming numbers into movies.
D G Pelli. Spat Vis 1997
D G Pelli. Spat Vis 1997
16
Cortical surface-based analysis. II: Inflation, flattening, and a surface-based coordinate system.
B Fischl, M I Sereno, A M Dale. Neuroimage 1999
B Fischl, M I Sereno, A M Dale. Neuroimage 1999
16
Extracting 3D from motion: differences in human and monkey intraparietal cortex.
W Vanduffel, D Fize, H Peuskens, K Denys, S Sunaert, J T Todd, G A Orban. Science 2002
W Vanduffel, D Fize, H Peuskens, K Denys, S Sunaert, J T Todd, G A Orban. Science 2002
16
The representation of egomotion in the human brain.
Matthew B Wall, Andrew T Smith. Curr Biol 2008
Matthew B Wall, Andrew T Smith. Curr Biol 2008
15
The retinotopic organization of the human middle temporal area MT/V5 and its cortical neighbors.
Hauke Kolster, Ronald Peeters, Guy A Orban. J Neurosci 2010
Hauke Kolster, Ronald Peeters, Guy A Orban. J Neurosci 2010
15
Wide-field retinotopy defines human cortical visual area v6.
Sabrina Pitzalis, Claudio Galletti, Ruey-Song Huang, Fabiana Patria, Giorgia Committeri, Gaspare Galati, Patrizia Fattori, Martin I Sereno. J Neurosci 2006
Sabrina Pitzalis, Claudio Galletti, Ruey-Song Huang, Fabiana Patria, Giorgia Committeri, Gaspare Galati, Patrizia Fattori, Martin I Sereno. J Neurosci 2006
15
Mapping the parietal cortex of human and non-human primates.
Guy A Orban, Kristl Claeys, Koen Nelissen, Ruth Smans, Stefan Sunaert, James T Todd, Claire Wardak, Jean-Baptiste Durand, Wim Vanduffel. Neuropsychologia 2006
Guy A Orban, Kristl Claeys, Koen Nelissen, Ruth Smans, Stefan Sunaert, James T Todd, Claire Wardak, Jean-Baptiste Durand, Wim Vanduffel. Neuropsychologia 2006
15
Borders of multiple visual areas in humans revealed by functional magnetic resonance imaging.
M I Sereno, A M Dale, J B Reppas, K K Kwong, J W Belliveau, T J Brady, B R Rosen, R B Tootell. Science 1995
M I Sereno, A M Dale, J B Reppas, K K Kwong, J W Belliveau, T J Brady, B R Rosen, R B Tootell. Science 1995
15
Vestibular and visual responses in human posterior insular cortex.
Sebastian M Frank, Oliver Baumann, Jason B Mattingley, Mark W Greenlee. J Neurophysiol 2014
Sebastian M Frank, Oliver Baumann, Jason B Mattingley, Mark W Greenlee. J Neurophysiol 2014
27
Form and motion coherence activate independent, but not dorsal/ventral segregated, networks in the human brain.
O J Braddick, J M O'Brien, J Wattam-Bell, J Atkinson, R Turner. Curr Biol 2000
O J Braddick, J M O'Brien, J Wattam-Bell, J Atkinson, R Turner. Curr Biol 2000
14
Cortical surface-based analysis. I. Segmentation and surface reconstruction.
A M Dale, B Fischl, M I Sereno. Neuroimage 1999
A M Dale, B Fischl, M I Sereno. Neuroimage 1999
13
Processing of coherent visual motion in topographically organized visual areas in human cerebral cortex.
Randolph F Helfrich, Hubertus G T Becker, Thomas Haarmeier. Brain Topogr 2013
Randolph F Helfrich, Hubertus G T Becker, Thomas Haarmeier. Brain Topogr 2013
35
Vestibular inputs to human motion-sensitive visual cortex.
Andrew T Smith, Matthew B Wall, Kai V Thilo. Cereb Cortex 2012
Andrew T Smith, Matthew B Wall, Kai V Thilo. Cereb Cortex 2012
16
The human vestibular cortex revealed by coordinate-based activation likelihood estimation meta-analysis.
C Lopez, O Blanke, F W Mast. Neuroscience 2012
C Lopez, O Blanke, F W Mast. Neuroscience 2012
13
A Population-Average, Landmark- and Surface-based (PALS) atlas of human cerebral cortex.
David C Van Essen. Neuroimage 2005
David C Van Essen. Neuroimage 2005
12
Coding observed motor acts: different organizational principles in the parietal and premotor cortex of humans.
Jan Jastorff, Chiara Begliomini, Maddalena Fabbri-Destro, Giacomo Rizzolatti, Guy A Orban. J Neurophysiol 2010
Jan Jastorff, Chiara Begliomini, Maddalena Fabbri-Destro, Giacomo Rizzolatti, Guy A Orban. J Neurophysiol 2010
12
Multiple visual areas in the caudal superior temporal sulcus of the macaque.
R Desimone, L G Ungerleider. J Comp Neurol 1986
R Desimone, L G Ungerleider. J Comp Neurol 1986
12
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
12
Sensitivity to optic flow in human cortical areas MT and MST.
A T Smith, M B Wall, A L Williams, K D Singh. Eur J Neurosci 2006
A T Smith, M B Wall, A L Williams, K D Singh. Eur J Neurosci 2006
12
The processing of first- and second-order motion in human visual cortex assessed by functional magnetic resonance imaging (fMRI).
A T Smith, M W Greenlee, K D Singh, F M Kraemer, J Hennig. J Neurosci 1998
A T Smith, M W Greenlee, K D Singh, F M Kraemer, J Hennig. J Neurosci 1998
12
Representation of visual gravitational motion in the human vestibular cortex.
Iole Indovina, Vincenzo Maffei, Gianfranco Bosco, Myrka Zago, Emiliano Macaluso, Francesco Lacquaniti. Science 2005
Iole Indovina, Vincenzo Maffei, Gianfranco Bosco, Myrka Zago, Emiliano Macaluso, Francesco Lacquaniti. Science 2005
12
Macaque parieto-insular vestibular cortex: responses to self-motion and optic flow.
Aihua Chen, Gregory C DeAngelis, Dora E Angelaki. J Neurosci 2010
Aihua Chen, Gregory C DeAngelis, Dora E Angelaki. J Neurosci 2010
12
The representation of tool use in humans and monkeys: common and uniquely human features.
R Peeters, L Simone, K Nelissen, M Fabbri-Destro, W Vanduffel, G Rizzolatti, G A Orban. J Neurosci 2009
R Peeters, L Simone, K Nelissen, M Fabbri-Destro, W Vanduffel, G Rizzolatti, G A Orban. J Neurosci 2009
11
Human functional magnetic resonance imaging reveals separation and integration of shape and motion cues in biological motion processing.
Jan Jastorff, Guy A Orban. J Neurosci 2009
Jan Jastorff, Guy A Orban. J Neurosci 2009
11
Representation of eye movements and stimulus motion in topographically organized areas of human posterior parietal cortex.
Christina S Konen, Sabine Kastner. J Neurosci 2008
Christina S Konen, Sabine Kastner. J Neurosci 2008
11
Structure and function of visual area MT.
Richard T Born, David C Bradley. Annu Rev Neurosci 2005
Richard T Born, David C Bradley. Annu Rev Neurosci 2005
11
Ventral intraparietal area of the macaque: congruent visual and somatic response properties.
J R Duhamel, C L Colby, M E Goldberg. J Neurophysiol 1998
J R Duhamel, C L Colby, M E Goldberg. J Neurophysiol 1998
11
Ventral intraparietal area of the macaque: anatomic location and visual response properties.
C L Colby, J R Duhamel, M E Goldberg. J Neurophysiol 1993
C L Colby, J R Duhamel, M E Goldberg. J Neurophysiol 1993
11
Visual topography of human intraparietal sulcus.
Jascha D Swisher, Mark A Halko, Lotfi B Merabet, Stephanie A McMains, David C Somers. J Neurosci 2007
Jascha D Swisher, Mark A Halko, Lotfi B Merabet, Stephanie A McMains, David C Somers. J Neurosci 2007
11
Comparative mapping of higher visual areas in monkeys and humans.
Guy A Orban, David Van Essen, Wim Vanduffel. Trends Cogn Sci 2004
Guy A Orban, David Van Essen, Wim Vanduffel. Trends Cogn Sci 2004
11
The processing of three-dimensional shape from disparity in the human brain.
Svetlana Georgieva, Ronald Peeters, Hauke Kolster, James T Todd, Guy A Orban. J Neurosci 2009
Svetlana Georgieva, Ronald Peeters, Hauke Kolster, James T Todd, Guy A Orban. J Neurosci 2009
11
The cortical connections of area V6: an occipito-parietal network processing visual information.
C Galletti, M Gamberini, D F Kutz, P Fattori, G Luppino, M Matelli. Eur J Neurosci 2001
C Galletti, M Gamberini, D F Kutz, P Fattori, G Luppino, M Matelli. Eur J Neurosci 2001
11
The constructive nature of vision: direct evidence from functional magnetic resonance imaging studies of apparent motion and motion imagery.
R Goebel, D Khorram-Sefat, L Muckli, H Hacker, W Singer. Eur J Neurosci 1998
R Goebel, D Khorram-Sefat, L Muckli, H Hacker, W Singer. Eur J Neurosci 1998
11
Reciprocal inhibitory visual-vestibular interaction. Visual motion stimulation deactivates the parieto-insular vestibular cortex.
T Brandt, P Bartenstein, A Janek, M Dieterich. Brain 1998
T Brandt, P Bartenstein, A Janek, M Dieterich. Brain 1998
11
Parietal regions processing visual 3D shape extracted from disparity.
Jean-Baptiste Durand, Ronald Peeters, J Farley Norman, James T Todd, Guy A Orban. Neuroimage 2009
Jean-Baptiste Durand, Ronald Peeters, J Farley Norman, James T Todd, Guy A Orban. Neuroimage 2009
13
Meta-analytical definition and functional connectivity of the human vestibular cortex.
P zu Eulenburg, S Caspers, C Roski, S B Eickhoff. Neuroimage 2012
P zu Eulenburg, S Caspers, C Roski, S B Eickhoff. Neuroimage 2012
11
A selective impairment of motion perception following lesions of the middle temporal visual area (MT).
W T Newsome, E B ParĂ©. J Neurosci 1988
W T Newsome, E B ParĂ©. J Neurosci 1988
11
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.