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Titlebook: Regulatory Mechanisms of Synaptic Transmission; Ricardo Tapia,Carl W. Cotman Book 1981 Plenum Press, New York 1981 brain.catecholamines.mu

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Enkephalin Release from the Globus Pallidus: In Vitro and in Vivo Studies, the central nervous system (17) and the immunohistochemical evidence for their location in fibers and cell bodies (6) first supported their consideration as putative central neurotransmitters. The search for a model system to study the central neurobiology of the enkephalins has led to the striatum
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Acidic Amino Acids as Excitatory Transmitters,are many new candidates, new regulatory mechanisms and new findings on the pathways which employ known transmitters. Curiously, though, most of the clearly identified neurotransmitters are inhibitory. Little is known about the excitatory pathways except that glutamate and aspartate are the major tra
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Glutamergic Neurons: Localization and Release of the Transmitter,5,6,10,26,27). Glutamate is the most important candidate as an excitatory neurotransmitter. But it has several other important functions to fulfill and the problem is therefore to locate the transmitter pool of glutamate. By analogy to other amino acids and amines that function as neurotransmitters,
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Gabaergic Synapses: Distribution and Interaction with Other Neurotransmitter Systems in the Brain,(DA) neuronal systems, due to their biological peculiarities, have attracted a considerable attention (for references see 34,53,64). The DA systems are, from an anatomical point of view, very well defined. Several ascending DA-pathways originating in the ventral mid-brain tegmentum (areas A9 and A10
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