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所有的文献@标签 basal_ganglia [141 articles]

当前文献的标签分类为: basal_ganglia.
  • The basal ganglia: learning new tricks and loving it.
    Curr Opin Neurobiol, Vol. 15, No. 6. (December 2005), pp. 638-644.
    by AM Graybiel
  • Using TD learning to simulate working memory performance in a model of the prefrontal cortex and basal ganglia
    Cognitive Systems Research, Vol. 8, No. 4. (December 2007), pp. 262-281.
    by Ahmed A Moustafa, Anthony S Maida
  • Different brain circuits underlie motor and perceptual representations of temporal intervals
    J. Cognitive Neuroscience, Vol. 20, No. 2. (February 2008), pp. 204-214.
    by Domenica Bueti, Vincent Walsh, Chris Frith, Geraint Rees
    posted to basal_ganglia cerebellum fmri isi motor time visual by sherdim on 2008-04-18 10:16:38 as **
  • Role of the basal ganglia and frontal cortex in selecting and producing internally guided force pulses
    NeuroImage, Vol. 36, No. 3. (1 July 2007), pp. 793-803.
    by David E Vaillancourt, Hong Yu, Mary A Mayka, Daniel M Corcos
    posted to basal_ganglia time by sherdim on 2007-09-04 17:29:02 as ** along with 1 group EPLab
  • Hold your horses: A dynamic computational role for the subthalamic nucleus in decision making.
    Neural Networks (29 August 2006)
    by Michael JJ Frank
  • Cortico–basal ganglia circuit mechanism for a decision threshold in reaction time tasks
    Nature Neuroscience, Vol. 9, No. 7. (11 June 2006), pp. 956-963.
    by Chung-Chuan Lo, Xiao-Jing Wang
  • The basal ganglia in human learning.
    Neuroscientist, Vol. 12, No. 4. (August 2006), pp. 285-290.
    by CA Seger
  • Dopamine modulation in the basal ganglia locks the gate to working memory.
    J Comput Neurosci, Vol. 20, No. 2. (April 2006), pp. 153-166.
    by AJ Gruber, P Dayan, BS Gutkin, SA Solla
  • Reward prediction in primate basal ganglia and frontal cortex
    Neuropharmacology, Vol. 37, No. 4-5. (5 April 1998), pp. 421-429.
    by Wolfram Schultz, Leon Tremblay, Jeffrey R Hollerman
  • How do memory systems interact? Evidence from human classification learning.
    Neurobiol Learn Mem, Vol. 82, No. 3. (November 2004), pp. 324-332.
  • Opposing basal ganglia processes shape midbrain visuomotor activity bilaterally
    Nature, Vol. 423, No. 6943. (26 June 2003), pp. 982-986.
    by Huai Jiang, Barry E Stein, John G Mchaffie
  • Responses to reward in monkey dorsal and ventral striatum.
    Exp Brain Res, Vol. 85, No. 3. (1991), pp. 491-500.
  • Parallel organization of functionally segregated circuits linking basal ganglia and cortex.
    Annu Rev Neurosci, Vol. 9 (1986), pp. 357-381.
    by GE Alexander, MR DeLong, PL Strick
  • Neuronal activity in the basal ganglia and thalamus in patients with dystonia.
    Clin Neurophysiol, Vol. 115, No. 11. (November 2004), pp. 2542-2557.
    by P Zhuang, Y Li, M Hallett
    posted to basal_ganglia dbs dystonia thalamus by ntvandehey on 2007-08-14 19:14:49 as **
  • The basal ganglia: Focused selection and inhibition of competing motor programs
    Progress in Neurobiology, Vol. 50 (November 1996), pp. 381-425.
    by JW Mink
    posted to basal_ganglia by ntvandehey on 2007-08-03 16:34:39 as read
  • Differential Effects of 6-OHDA Lesions of the Frontal Cortex and Caudate Nucleus on the Ability to Acquire an Attentional Set
    Cereb. Cortex, Vol. 11, No. 11. (1 November 2001), pp. 1015-1026.
    by HS Crofts, JW Dalley, P Collins, JCM Van Denderen, BJ Everitt, TW Robbins, AC Roberts
    posted to prefrontal monkey lesion dopamine basal_ganglia by nishiokov on 2008-05-20 01:39:26 as ****
  • A three-dimensional, histological and deformable atlas of the human basal ganglia. I. Atlas construction based on immunohistochemical and MRI data
    NeuroImage, Vol. 34, No. 2. (15 January 2007), pp. 618-638.
    by Jerome Yelnik, Eric Bardinet, Didier Dormont, Gregoire Malandain, Sebastien Ourselin, Dominique Tande, Carine Karachi, Nicholas Ayache, Philippe Cornu, Yves Agid
    posted to atlas basal_ganglia human structural_mri by nishiokov on 2008-02-12 00:19:13 as **** along with 1 person adick
  • Cortical connectivity after subcortical stroke assessed with functional magnetic resonance imaging
    Annals of Neurology, Vol. 63, No. 2. (2008), pp. 236-246.
    by Christian Grefkes, Dennis A Nowak, Simon B Eickhoff, Manuel Dafotakis, Jutta Küst, Hans Karbe, Gereon R Fink
    posted to basal_ganglia dcm fmri human patient by nishiokov on 2008-03-13 01:04:18 as **
  • Methylphenidate Has Differential Effects on Blood Oxygenation Level-Dependent Signal Related to Cognitive Subprocesses of Reversal Learning
    J. Neurosci., Vol. 28, No. 23. (4 June 2008), pp. 5976-5982.
    by Chris M Dodds, Ulrich Muller, Luke Clark, Anouk van Loon, Roshan Cools, Trevor W Robbins
    posted to pharmacological human fmri dopamine basal_ganglia by nishiokov on 2008-06-05 13:28:34 as **
  • Distinct basal ganglia territories are engaged in early and advanced motor sequence learning.
    Proc Natl Acad Sci U S A, Vol. 102, No. 35. (30 August 2005), pp. 12566-12571.
  • Understanding the Neural Computations of Arbitrary Visuomotor Learning through fMRI and Associative Learning Theory.
    Cereb Cortex (21 November 2007)
    by Andrea Brovelli, Nadia Laksiri, Bruno Nazarian, Martine Meunier, Driss Boussaoud
  • Role of Dopamine in the Primate Caudate Nucleus in Reward Modulation of Saccades
    J. Neurosci., Vol. 26, No. 20. (17 May 2006), pp. 5360-5369.
    by Kae Nakamura, Okihide Hikosaka
  • Basal Ganglia orient eyes to reward.
    J Neurophysiol, Vol. 95, No. 2. (February 2006), pp. 567-584.
  • Expectation of reward modulates cognitive signals in the basal ganglia.
    Nat Neurosci, Vol. 1, No. 5. (September 1998), pp. 411-416.
  • Cortical substrates for exploratory decisions in humans
    Nature, Vol. 441, No. 7095. (2006), pp. 876-879.
    by Nathaniel D Daw, John P O'Doherty, Peter Dayan, Ben Seymour, Raymond J Dolan
  • Representation of action-specific reward values in the striatum.
    Science, Vol. 310, No. 5752. (25 November 2005), pp. 1337-1340.
    by K Samejima, Y Ueda, K Doya, M Kimura
  • A Physiologically Plausible Model of Action Selection and Oscillatory Activity in the Basal Ganglia
    J. Neurosci., Vol. 26, No. 50. (13 December 2006), pp. 12921-12942.
    by Mark D Humphries, Robert D Stewart, Kevin N Gurney
  • How laminar frontal cortex and basal ganglia circuits interact to control planned and reactive saccades
    Neural Netw., Vol. 17, No. 4. (May 2004), pp. 471-510.
    by Joshua W Brown, Daniel Bullock, Stephen Grossberg
  • Effects of expectations for different reward magnitudes on neuronal activity in primate striatum.
    J Neurophysiol, Vol. 89, No. 5. (May 2003), pp. 2823-2838.
    by HC Cromwell, W Schultz
  • The basal ganglia and adaptive motor control.
    Science, Vol. 265, No. 5180. (23 September 1994), pp. 1826-1831.
    by AM Graybiel, T Aosaki, AW Flaherty, M Kimura
  • Input-output organization of the sensorimotor striatum in the squirrel monkey.
    J Neurosci, Vol. 14, No. 2. (February 1994), pp. 599-610.
    by AW Flaherty, AM Graybiel
  • Role of the basal ganglia in the control of purposive saccadic eye movements.
    Physiol Rev, Vol. 80, No. 3. (July 2000), pp. 953-978.
  • Electrophysiological localization of the substantia nigra in the parkinsonian nonhuman primate.
    J Neurosurg, Vol. 93, No. 4. (October 2000), pp. 704-710.
  • Reward-predicting activity of dopamine and caudate neurons--a possible mechanism of motivational control of saccadic eye movement.
    J Neurophysiol, Vol. 91, No. 2. (February 2004), pp. 1013-1024.
  • Activity of pallidal neurons during movement.
    J Neurophysiol, Vol. 34, No. 3. (May 1971), pp. 414-427.
    by MR DeLong
  • notes The basal ganglia: focused selection and inhibition of competing motor programs.
    Prog Neurobiol, Vol. 50, No. 4. (November 1996), pp. 381-425.
    by JW Mink
  • Functional properties of monkey caudate neurons. III. Activities related to expectation of target and reward.
    J Neurophysiol, Vol. 61, No. 4. (April 1989), pp. 814-832.
  • Functional properties of monkey caudate neurons. II. Visual and auditory responses.
    J Neurophysiol, Vol. 61, No. 4. (April 1989), pp. 799-813.
  • Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements.
    J Neurophysiol, Vol. 61, No. 4. (April 1989), pp. 780-798.
  • Role of primate substantia nigra pars reticulata in reward-oriented saccadic eye movement.
    J Neurosci, Vol. 22, No. 6. (15 March 2002), pp. 2363-2373.
    by M Sato, O Hikosaka
  • The nucleus accumbens as part of a basal ganglia action selection circuit.
    Psychopharmacology (Berl) (16 September 2006)
    by Saleem M Nicola
  • Contextual modulation of substantia nigra pars reticulata neurons.
    J Neurophysiol, Vol. 83, No. 5. (May 2000), pp. 3042-3048.
    by A Handel, PW Glimcher
  • Putting a spin on the dorsal-ventral divide of the striatum.
    Trends Neurosci, Vol. 27, No. 8. (August 2004), pp. 468-474.
  • Activity of Tonically Active Neurons in the Monkey Putamen During Initiation and Withholding of Movement
    J Neurophysiol, Vol. 95, No. 4. (1 April 2006), pp. 2391-2403.
    by Irwin H Lee, Aaron R Seitz, John A Assad
  • A neural correlate of response bias in monkey caudate nucleus.
    Nature, Vol. 418, No. 6896. (25 July 2002), pp. 413-417.
  • Dissociable roles of ventral and dorsal striatum in instrumental conditioning.
    Science, Vol. 304, No. 5669. (16 April 2004), pp. 452-454.
  • Comparison of the basal ganglia and cerebellum in shifting attention.
    J Cogn Neurosci, Vol. 13, No. 3. (1 April 2001), pp. 285-297.
    by SM Ravizza, RB Ivry
    posted to cerebellum basal_ganglia action_selection by josepe on 2007-01-29 22:25:30 as **
  • Stop-Signal Reaction-Time Task Performance: Role of Prefrontal Cortex and Subthalamic Nucleus
    Cereb. Cortex, Vol. 18, No. 1. (1 January 2008), pp. 178-188.
    by Dawn M Eagle, Christelle Baunez, Daniel M Hutcheson, Olivia Lehmann, Aarti P Shah, Trevor W Robbins
  • Selection of actions in the basal ganglia-thalamocortical circuits: review and model.
    Int J Psychophysiol, Vol. 31, No. 3. (March 1999), pp. 197-217.
    by JD Kropotov, SC Etlinger
    posted to modeling basal_ganglia action_selection by josepe on 2007-01-29 22:24:08 as **
  • A computational model of action selection in the basal ganglia. I. A new functional anatomy.
    Biol Cybern, Vol. 84, No. 6. (June 2001), pp. 401-410.
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