Masaki Tanaka. Nat Neurosci 2006
Times Cited: 36
Times Cited: 36
Times Cited
Times Co-cited
Similarity
Cognitive signals in the primate motor thalamus predict saccade timing.
Masaki Tanaka. J Neurosci 2007
Masaki Tanaka. J Neurosci 2007
61
Putaminal activity for simple reactions or self-timed movements.
Irwin H Lee, John A Assad. J Neurophysiol 2003
Irwin H Lee, John A Assad. J Neurophysiol 2003
36
Involvement of the central thalamus in the control of smooth pursuit eye movements.
Masaki Tanaka. J Neurosci 2005
Masaki Tanaka. J Neurosci 2005
33
Parallel organization of functionally segregated circuits linking basal ganglia and cortex.
G E Alexander, M R DeLong, P L Strick. Annu Rev Neurosci 1986
G E Alexander, M R DeLong, P L Strick. Annu Rev Neurosci 1986
33
A cognitive signal for the proactive timing of action in macaque LIP.
Gaby Maimon, John A Assad. Nat Neurosci 2006
Gaby Maimon, John A Assad. Nat Neurosci 2006
27
Quantitative assessment of the timing and tuning of visual-related, saccade-related, and delay period activity in primate central thalamus.
Melanie T Wyder, Dino P Massoglia, Terrence R Stanford. J Neurophysiol 2003
Melanie T Wyder, Dino P Massoglia, Terrence R Stanford. J Neurophysiol 2003
27
Visual and oculomotor functions of monkey substantia nigra pars reticulata. III. Memory-contingent visual and saccade responses.
O Hikosaka, R H Wurtz. J Neurophysiol 1983
O Hikosaka, R H Wurtz. J Neurophysiol 1983
25
A pathway in primate brain for internal monitoring of movements.
Marc A Sommer, Robert H Wurtz. Science 2002
Marc A Sommer, Robert H Wurtz. Science 2002
25
Input to the primate frontal eye field from the substantia nigra, superior colliculus, and dentate nucleus demonstrated by transneuronal transport.
J C Lynch, J E Hoover, P L Strick. Exp Brain Res 1994
J C Lynch, J E Hoover, P L Strick. Exp Brain Res 1994
25
Influence of the thalamus on spatial visual processing in frontal cortex.
Marc A Sommer, Robert H Wurtz. Nature 2006
Marc A Sommer, Robert H Wurtz. Nature 2006
25
Delay activity of saccade-related neurons in the caudal dentate nucleus of the macaque cerebellum.
Robin C Ashmore, Marc A Sommer. J Neurophysiol 2013
Robin C Ashmore, Marc A Sommer. J Neurophysiol 2013
25
A Neural Mechanism for Sensing and Reproducing a Time Interval.
Mehrdad Jazayeri, Michael N Shadlen. Curr Biol 2015
Mehrdad Jazayeri, Michael N Shadlen. Curr Biol 2015
25
Spatiotemporal properties of eye position signals in the primate central thalamus.
Masaki Tanaka. Cereb Cortex 2007
Masaki Tanaka. Cereb Cortex 2007
24
Basal ganglia and cerebellar loops: motor and cognitive circuits.
F A Middleton, P L Strick. Brain Res Brain Res Rev 2000
F A Middleton, P L Strick. Brain Res Brain Res Rev 2000
22
The neural basis of temporal processing.
Michael D Mauk, Dean V Buonomano. Annu Rev Neurosci 2004
Michael D Mauk, Dean V Buonomano. Annu Rev Neurosci 2004
22
Context-dependent modulation of movement-related discharge in the primate globus pallidus.
Robert S Turner, Marjorie E Anderson. J Neurosci 2005
Robert S Turner, Marjorie E Anderson. J Neurosci 2005
22
Role of primate basal ganglia and frontal cortex in the internal generation of movements. I. Preparatory activity in the anterior striatum.
W Schultz, R Romo. Exp Brain Res 1992
W Schultz, R Romo. Exp Brain Res 1992
22
Temporary inactivation in the primate motor thalamus during visually triggered and internally generated limb movements.
P van Donkelaar, J F Stein, R E Passingham, R C Miall. J Neurophysiol 2000
P van Donkelaar, J F Stein, R E Passingham, R C Miall. J Neurophysiol 2000
22
Temporally specific sensory signals for the detection of stimulus omission in the primate deep cerebellar nuclei.
Shogo Ohmae, Akiko Uematsu, Masaki Tanaka. J Neurosci 2013
Shogo Ohmae, Akiko Uematsu, Masaki Tanaka. J Neurosci 2013
22
Maintenance of persistent activity in a frontal thalamocortical loop.
Zengcai V Guo, Hidehiko K Inagaki, Kayvon Daie, Shaul Druckmann, Charles R Gerfen, Karel Svoboda. Nature 2017
Zengcai V Guo, Hidehiko K Inagaki, Kayvon Daie, Shaul Druckmann, Charles R Gerfen, Karel Svoboda. Nature 2017
22
Comparison of oculomotor neuronal activity in paralaminar and mediodorsal thalamus in the rhesus monkey.
Ikuo Tanibuchi, Patricia S Goldman-Rakic. J Neurophysiol 2005
Ikuo Tanibuchi, Patricia S Goldman-Rakic. J Neurophysiol 2005
28
Primate supplementary eye field. II. Comparative aspects of connections with the thalamus, corpus striatum, and related forebrain nuclei.
B L Shook, M Schlag-Rey, J Schlag. J Comp Neurol 1991
B L Shook, M Schlag-Rey, J Schlag. J Comp Neurol 1991
19
What the brain stem tells the frontal cortex. I. Oculomotor signals sent from superior colliculus to frontal eye field via mediodorsal thalamus.
Marc A Sommer, Robert H Wurtz. J Neurophysiol 2004
Marc A Sommer, Robert H Wurtz. J Neurophysiol 2004
19
Visuomotor functions of central thalamus in monkey. I. Unit activity related to spontaneous eye movements.
M Schlag-Rey, J Schlag. J Neurophysiol 1984
M Schlag-Rey, J Schlag. J Neurophysiol 1984
19
Interval time coding by neurons in the presupplementary and supplementary motor areas.
Akihisa Mita, Hajime Mushiake, Keisetsu Shima, Yoshiya Matsuzaka, Jun Tanji. Nat Neurosci 2009
Akihisa Mita, Hajime Mushiake, Keisetsu Shima, Yoshiya Matsuzaka, Jun Tanji. Nat Neurosci 2009
19
Roles of the primate motor thalamus in the generation of antisaccades.
Jun Kunimatsu, Masaki Tanaka. J Neurosci 2010
Jun Kunimatsu, Masaki Tanaka. J Neurosci 2010
19
Measuring time with different neural chronometers during a synchronization-continuation task.
Hugo Merchant, Wilbert Zarco, Oswaldo Pérez, Luis Prado, Ramón Bartolo. Proc Natl Acad Sci U S A 2011
Hugo Merchant, Wilbert Zarco, Oswaldo Pérez, Luis Prado, Ramón Bartolo. Proc Natl Acad Sci U S A 2011
19
Alteration of the timing of self-initiated but not reactive saccades by electrical stimulation in the supplementary eye field.
Jun Kunimatsu, Masaki Tanaka. Eur J Neurosci 2012
Jun Kunimatsu, Masaki Tanaka. Eur J Neurosci 2012
30
Neural antecedents of self-initiated actions in secondary motor cortex.
Masayoshi Murakami, M Inês Vicente, Gil M Costa, Zachary F Mainen. Nat Neurosci 2014
Masayoshi Murakami, M Inês Vicente, Gil M Costa, Zachary F Mainen. Nat Neurosci 2014
19
Neural basis of the perception and estimation of time.
Hugo Merchant, Deborah L Harrington, Warren H Meck. Annu Rev Neurosci 2013
Hugo Merchant, Deborah L Harrington, Warren H Meck. Annu Rev Neurosci 2013
19
Cerebellar Roles in Self-Timing for Sub- and Supra-Second Intervals.
Shogo Ohmae, Jun Kunimatsu, Masaki Tanaka. J Neurosci 2017
Shogo Ohmae, Jun Kunimatsu, Masaki Tanaka. J Neurosci 2017
20
Dissociation between contingent negative variation (CNV) and Bereitschaftspotential (BP) in patients with parkinsonism.
A Ikeda, H Shibasaki, R Kaji, K Terada, T Nagamine, M Honda, J Kimura. Electroencephalogr Clin Neurophysiol 1997
A Ikeda, H Shibasaki, R Kaji, K Terada, T Nagamine, M Honda, J Kimura. Electroencephalogr Clin Neurophysiol 1997
16
Thalamic relay nuclei of the basal ganglia form both reciprocal and nonreciprocal cortical connections, linking multiple frontal cortical areas.
Nikolaus R McFarland, Suzanne N Haber. J Neurosci 2002
Nikolaus R McFarland, Suzanne N Haber. J Neurosci 2002
16
Subcortical input to the smooth and saccadic eye movement subregions of the frontal eye field in Cebus monkey.
Tian, J C Lynch. J Neurosci 1997
Tian, J C Lynch. J Neurosci 1997
16
Contextual modulation of central thalamic delay-period activity: representation of visual and saccadic goals.
Melanie T Wyder, Dino P Massoglia, Terrence R Stanford. J Neurophysiol 2004
Melanie T Wyder, Dino P Massoglia, Terrence R Stanford. J Neurophysiol 2004
16
What makes us tick? Functional and neural mechanisms of interval timing.
Catalin V Buhusi, Warren H Meck. Nat Rev Neurosci 2005
Catalin V Buhusi, Warren H Meck. Nat Rev Neurosci 2005
16
Neuronal activities in the primate motor fields of the agranular frontal cortex preceding visually triggered and self-paced movement.
K Okano, J Tanji. Exp Brain Res 1987
K Okano, J Tanji. Exp Brain Res 1987
16
A representation of the hazard rate of elapsed time in macaque area LIP.
Peter Janssen, Michael N Shadlen. Nat Neurosci 2005
Peter Janssen, Michael N Shadlen. Nat Neurosci 2005
16
Brain circuits for the internal monitoring of movements.
Marc A Sommer, Robert H Wurtz. Annu Rev Neurosci 2008
Marc A Sommer, Robert H Wurtz. Annu Rev Neurosci 2008
16
What the brain stem tells the frontal cortex. II. Role of the SC-MD-FEF pathway in corollary discharge.
Marc A Sommer, Robert H Wurtz. J Neurophysiol 2004
Marc A Sommer, Robert H Wurtz. J Neurophysiol 2004
16
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
16
Neural basis of a perceptual decision in the parietal cortex (area LIP) of the rhesus monkey.
M N Shadlen, W T Newsome. J Neurophysiol 2001
M N Shadlen, W T Newsome. J Neurophysiol 2001
13
Role of primate basal ganglia and frontal cortex in the internal generation of movements. III. Neuronal activity in the supplementary motor area.
R Romo, W Schultz. Exp Brain Res 1992
R Romo, W Schultz. Exp Brain Res 1992
13
Look away: the anti-saccade task and the voluntary control of eye movement.
Douglas P Munoz, Stefan Everling. Nat Rev Neurosci 2004
Douglas P Munoz, Stefan Everling. Nat Rev Neurosci 2004
13
Role of the basal ganglia in the control of purposive saccadic eye movements.
O Hikosaka, Y Takikawa, R Kawagoe. Physiol Rev 2000
O Hikosaka, Y Takikawa, R Kawagoe. Physiol Rev 2000
13
Neuronal correlates for preparatory set associated with pro-saccades and anti-saccades in the primate frontal eye field.
S Everling, D P Munoz. J Neurosci 2000
S Everling, D P Munoz. J Neurosci 2000
13
13
The role of the human thalamus in processing corollary discharge.
C Bellebaum, I Daum, B Koch, M Schwarz, K-P Hoffmann. Brain 2005
C Bellebaum, I Daum, B Koch, M Schwarz, K-P Hoffmann. Brain 2005
13
Enhanced modulation of neuronal activity during antisaccades in the primate globus pallidus.
Atsushi Yoshida, Masaki Tanaka. Cereb Cortex 2009
Atsushi Yoshida, Masaki Tanaka. Cereb Cortex 2009
13
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.