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Experimental Neurology
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December 1, 1978
Effects of caudate nuclei or frontal cortical ablations in kittens: motor activity and visual discrimination performance in neonatal and juvenile kittens
M S Levine, C D Hull, N A Buchwald, et al.
Brain Research
|
November 5, 1986
Neurons of origin of striatonigral axons in the cat: connectivity and Golgi markers of somatodendritic architecture
R S Fisher, N A Buchwald, C D Hull, et al.
Brain Research
|
September 21, 1979
Intracellular analysis of the development of responses of caudate neurons to stimulation of cortex, thalamus and substantia nigra in the kitten
R Morris, M S Levine, E Cherubini, et al.
Brain Research
|
July 20, 1979
Projections to the neostriatum from the cat precruciate cortex. Anatomy and physiology
E Garcia-Rill, A Nieto, A Adinolfi, et al.
Brain Research
|
September 14, 1979
Caudate neuronal responses evoked by cortical stimulation: contribution of an indirect corticothalamic pathway
E Cherubini, G Novack, C D Hull, et al.
Neuroscience Letters
|
August 10, 1984
Interhemispheric organization of corticocaudate projections in the cat: a retrograde double-labelling study
R S Fisher, C Shiota, M S Levine, et al.
Experimental Neurology
|
December 1, 1979
Development of responses of globus pallidus and entopeduncular nucleus neurons to stimulation of the caudate nucleus and precruciate cortex
M S Levine, E Cherubini, G D Novack, et al.
Brain Research
|
August 14, 1989
Intracellular neurophysiological analysis reveals alterations in excitation in striatal neurons in aged rats
C Cepeda, J P Walsh, C D Hull, et al.
Brain Research
|
June 20, 1974
The spontaneous firing pattern of forebrain neurons. I. The effects of dopamine and non-dopamine depleting lesions on caudate unit firing patterns
C D Hull, M S Levine, N A Buchwald, et al.
Experimental Neurology
|
August 1, 1983
Effects of neonatal destruction of the medial forebrain bundle in the cat: long-term neurochemical, locomotor, and regulatory deficits
M S Levine, C D Hull, R S Fisher, et al.
Page
of 8
Search research articles
Search
Showing results (41-50 of 76) with videos related to
Sort By:
Page
of 8
Experimental Neurology
|
December 1, 1978
Effects of caudate nuclei or frontal cortical ablations in kittens: motor activity and visual discrimination performance in neonatal and juvenile kittens
M S Levine, C D Hull, N A Buchwald, et al.
Brain Research
|
November 5, 1986
Neurons of origin of striatonigral axons in the cat: connectivity and Golgi markers of somatodendritic architecture
R S Fisher, N A Buchwald, C D Hull, et al.
Brain Research
|
September 21, 1979
Intracellular analysis of the development of responses of caudate neurons to stimulation of cortex, thalamus and substantia nigra in the kitten
R Morris, M S Levine, E Cherubini, et al.
Brain Research
|
July 20, 1979
Projections to the neostriatum from the cat precruciate cortex. Anatomy and physiology
E Garcia-Rill, A Nieto, A Adinolfi, et al.
Brain Research
|
September 14, 1979
Caudate neuronal responses evoked by cortical stimulation: contribution of an indirect corticothalamic pathway
E Cherubini, G Novack, C D Hull, et al.
Neuroscience Letters
|
August 10, 1984
Interhemispheric organization of corticocaudate projections in the cat: a retrograde double-labelling study
R S Fisher, C Shiota, M S Levine, et al.
Experimental Neurology
|
December 1, 1979
Development of responses of globus pallidus and entopeduncular nucleus neurons to stimulation of the caudate nucleus and precruciate cortex
M S Levine, E Cherubini, G D Novack, et al.
Brain Research
|
August 14, 1989
Intracellular neurophysiological analysis reveals alterations in excitation in striatal neurons in aged rats
C Cepeda, J P Walsh, C D Hull, et al.
Brain Research
|
June 20, 1974
The spontaneous firing pattern of forebrain neurons. I. The effects of dopamine and non-dopamine depleting lesions on caudate unit firing patterns
C D Hull, M S Levine, N A Buchwald, et al.
Experimental Neurology
|
August 1, 1983
Effects of neonatal destruction of the medial forebrain bundle in the cat: long-term neurochemical, locomotor, and regulatory deficits
M S Levine, C D Hull, R S Fisher, et al.
Page
of 8