Basal ganglia neural mechanisms of natural movement sequences.
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J. W. Aldridge | K. Berridge | Kent C Berridge | J Wayne Aldridge | A. Rosen | Alyssa R Rosen | J. Aldridge | Résumé | A. R. Rosen | Kent C. Berridge | Alyssa R Rosen
[1] S P Wise,et al. Obsessive-compulsive disorder: evidence for basal ganglia dysfunction. , 1988, Psychopharmacology bulletin.
[2] K. Berridge,et al. Implementation of Action Sequences by a Neostriatal Site: A Lesion Mapping Study of Grooming Syntax , 1996, The Journal of Neuroscience.
[3] P. Teitelbaum,et al. "Warm-up" along dimensions of movement in the ontogeny of exploration in rats and other infant mammals. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[4] J. Cummings,et al. Gilles de la Tourette syndrome and the neurological basis of obsessions and compulsions , 1985, Biological Psychiatry.
[5] R. Zweig. Functions of the basal ganglia. , 1995, Brain : a journal of neurology.
[6] D. M. Schroeder,et al. Localization of motor- and nonmotor-related neurons within the matrix-striosome organization of rat striatum , 1996, Brain Research.
[7] P. Lieberman. Human Language and Our Reptilian Brain , 2002 .
[8] Kent C. Berridge,et al. Comparative Fine Structure of Action: Rules of Form and Sequence in the Grooming Patterns of Six Rodent Species , 1990 .
[9] J. W. Aldridge,et al. Substantia nigra pars reticulata neurons code initiation of a serial pattern: implications for natural action sequences and sequential disorders , 2002, The European journal of neuroscience.
[10] R C BOLLES,et al. Grooming behavior in the rat. , 1960, Journal of comparative and physiological psychology.
[11] K. Berridge,et al. Super‐stereotypy II: Enhancement of a complex movement sequence by intraventricular dopamine D1 agonists , 2000, Synapse.
[12] K. Berridge,et al. Super‐stereotypy I: Enhancement of a complex movement sequence by systemic dopamine D1 agonists , 2000, Synapse.
[13] S. Charpier,et al. The lamellar organization of the rat substantia nigra pars reticulata: Segregated patterns of striatal afferents and relationship to the topography of corticostriatal projections , 1996, Neuroscience.
[14] P. Lieberman. Human Language and Our Reptilian Brain: The Subcortical Bases of Speech, Syntax, and Thought , 2001, Perspectives in biology and medicine.
[15] G. Richmond,et al. Grooming in Norway Rats: the Development and Adult Expression of a Complex Motor Pattern , 1980 .
[16] Bernice W. Polemis. Nonparametric Statistics for the Behavioral Sciences , 1959 .
[17] K. Lashley. The problem of serial order in behavior , 1951 .
[18] J. Volkmann,et al. Impairment of temporal organization of speech in basal ganglia diseases , 1992, Brain and Language.
[19] K. Berridge,et al. Ontogeny of action syntax in altricial and precocial rodents : Grooming sequences of rat and guinea pig pups , 1996 .
[20] Rapoport Jl,et al. Obsessive-compulsive disorder: evidence for basal ganglia dysfunction. , 1988 .
[21] I. Golani. A mobility gradient in the organization of vertebrate movement: The perception of movement through symbolic language , 1992, Behavioral and Brain Sciences.
[22] D. Evered,et al. Functions of the basal ganglia , 1984 .
[23] J. C. Fentress,et al. Natural syntax rules control action sequence of rats , 1987, Behavioural Brain Research.
[24] C D Marsden,et al. Which motor disorder in Parkinson's disease indicates the true motor function of the basal ganglia? , 2008, Ciba Foundation symposium.
[25] J. C. Fentress,et al. Deafferentation does not disrupt natural rules of action syntax , 1987, Behavioural Brain Research.
[26] D. Harrington,et al. Sequencing in Parkinson's disease. Abnormalities in programming and controlling movement. , 1991, Brain : a journal of neurology.
[27] D J Woodward,et al. A region in the dorsolateral striatum of the rat exhibiting single-unit correlations with specific locomotor limb movements. , 1990, Journal of neurophysiology.
[28] J. W. Aldridge,et al. Coding of Serial Order by Neostriatal Neurons: A “Natural Action” Approach to Movement Sequence , 1998, The Journal of Neuroscience.