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The proportion of neurons in the rat neostriatum that project to the substantia nigra demonstrated using horseradish peroxidase conjugated with wheatgerm agglutinin.
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Ultrastructure of degenerating cerebellothalamic terminals in the ventral medial nucleus of the cat.
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The organization of the efferent projections of the substantia nigra in the rat. A retrograde fluorescent double labeling study.
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Idea of a new anatomy of the thalamus.
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Relations between the ventrolateral thalamic nucleus and motor cortex and their possible role in the central organization of motor control.
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Monosynaptic inhibition of thalamic neurons produced by stimulation of the substantia nigra.
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Ionic basis for the electro-responsiveness and oscillatory properties of guinea-pig thalamic neurones in vitro.
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Thalamic bursting mechanism: an inward slow current revealed by membrane hyperpolarization.
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The striatum and substantia nigra: a commentary on their relationships.
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The influence of atropine and scopolamine on the central effects of DFP.
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Electrophysiological analysis of pathways connecting the medial preoptic area with the mesencephalic central grey matter in rats.
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Cholinergic mechanisms involved in cortical activation during arousal.
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An autoradiographic study on the terminal distribution of cerebellothalamic fibers in the cat.
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The cerebellofugal projections in the brachium conjunctivum of the rat I. The contralateral ascending pathway.
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The prefrontal cortex of the rat. I. Cortical projection of the mediodorsal nucleus. II. Efferent connections.
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THE ROLE OF INHIBITION IN THE PHASING OF SPONTANEOUS THALAMO-CORTICAL DISCHARGE.
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The mole of pallido-thalamic transmission investigated with intracellular recording from cat thalamus.
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Regulation of unit activity in nucleus reticularis thalami by the mesencephalic reticular formation and the frontal granular cortex.
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Nigrothalamic pathway in the cat demonstrated by autoradiography and electron microscopy.
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Evidence for two organizational plans within the somatic sensory-motor cortex of the rat.
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Electrophysiology of mammalian thalamic neurones in vitro.
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