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Titlebook: Dopamine in the CNS I; Gaetano Chiara Book 2002 Springer-Verlag Berlin Heidelberg 2002 Brain.Cell Biology.Central Nervous System.Dopamine.

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Dopamine in the CNS I978-3-642-56051-4Series ISSN 0171-2004 Series E-ISSN 1865-0325
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Brain Dopamine: A Historical Perspective,esented aspects of both scientific and clinical importance. Although on several points DA shares this characteristic with the other two catecholamines, adrenaline and noradrenaline (NA), what sets DA apart is the tightness of the interdigitation between its basic research and the clinical implicatio
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Birth of Dopamine: A Cinderella Saga,icance became evident through the discovery of dopa decarboxylase in mammalian tissue by . et al. (1938) and through its identification as a normal urinary constituent (Holtz et al. 1942). In 1939 it was proposed to be an intermediate in the biosynthesis of adrenaline (Blaschko et al. 1957). However
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Synaptology of Dopamine Neurons,control, autonomic function, reproductive behavior, light/dark adaptation, and cognitive processes such as reward learning and working memory. The synaptology of DA cells reflects the richness of these diverse functions by exhibiting a continuum of morphological specializations that ranges from comp
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D1-Like Dopamine Receptors: Molecular Biology and Pharmacology,C), respectively (Spano et al 1978; Kebabian and Calne 1979), endured in substance for approximately a decade until the molecular cloning of D. and D. receptors provided additional criteria for distinguishing these two receptors in terms of genomic structure/localization, primary structure and mRNA
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The Dopamine D3 Receptor and Its Implication in Neuropsychiatry Disorders and Their Treatments,ult from interaction with only two dopamine receptors termed D. and D.. In spite of previous suggestions of additional dopamine receptors, the discovery of the D. receptor (Sokoloff et al. 1990) was rather unexpected, as were those of the D. and D. receptors that followed (Sunahara et al. 1991; Van
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