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Biomedical Chemistry: Current Trends and Developments
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Vertes, R. P. and A. M. Crane (1997). Distribution, quantification, and morphological characteristics of serotonin-immunoreactive cells of the supralemniscal nucleus (B9) and pontomesencephalic reticular formation in the rat. Journal of Comparative Neurology, 378(3), 411-424. Vertes, R. P., W. J. Fortin, et al. (1999). Projections of the median raphe nucleus in the rat. Journal of Comparative Neurology, 407(4), 555-582. Volkow, N. D., J. S. Fowler, et al. (2002). Role of dopamine, the frontal cortex and memory circuits in drug addiction: insight from imaging studies. Neurobiology of Learning & Memory, 78(3), 610-624. Voorn, P. (1988). The dopaminergic innervation of the striatum in th rat. Department of Anatomy and Embryology. Amsterdam, Vrije Universiteit, 175 p. Walker, R. H., C. Moore, et al. (2012). ā€œEffects of subthalamic nucleus lesions and stimulation upon corticostriatal afferents in the 6-hydroxydopamine-lesioned rat.ā€ PloS one 7(3): e32919. Wang, D. D. and A. R. Kriegstein (2011). Blocking early GABA depolarization with bumetanide results in permanent alterations in cortical circuits and sensorimotor gating deficits. Cerebral cortex, 21(3), 574-587. Wasterlain, C. G., J. M. Bronstein, et al. (1992). Translocation and autophosphorylation of brain calmodulin kinase II in status epilepticus. Epilepsy Research. Supplement, 9, 231-238. Wasterlain, C. G., H. Liu, et al. (2009). Molecular basis of self-sustaining seizures and pharmacoresistance during status epilepticus: The receptor trafficking hypothesis revisited. Epilepsia, 50 Suppl 12, 16-18. Weinberger, D. R., K. F. Berman, et al. (1988). Mesocortical dopaminergic function and human cognition. Annual of the New york Academy of Sciences, 537, 330-338. Willner, P., A. S. Hale, et al. (2005). Dopaminergic mechanism of antidepressant action in depressed patients. Journal of Affective Disorders, 86(1), 37-45. Winder, D. G., R. E. Egli, et al. (2002). Synaptic plasticity in drug reward circuitry. Current Molecular Medicine, 2(7), 667-676. Woodward, D. J., J. Y. Chang, et al. (1999). Mesolimbic neuronal activity across behavioral states. Ann N Y Acad Sci, 877, 91-112. Wu, Y., D. Liu, et al. (2014). Neuronal networks and energy bursts in epilepsy. Neuroscience. Yadid, G., Y. Fraenkel, et al. (1998). Strychnine, glycine, and adrenomedullary secretion. Advances in Pharmacology, 42, 604-606. Yao, W. D., R. R. Gainetdinov, et al. (2004). Identification of PSD-95 as a regulator of dopamine- mediated synaptic and behavioral plasticity. Neuron, 41(4), 625-638. Ziemann, U., W. Paulus, et al. (2008). Consensus: Motor cortex plasticity protocols. Brain Stimulation, 1(3), 164-182. Zoghbi, H. Y. and H. T. Orr (2000). Glutamine repeats and neurodegeneration. Annual Review of Neuroscience, 23, 217-247. *Corresponding author: Teresa Summavielle: Addiction Biology Group, Instituto de Investigação e Inovação em SaĆŗde (I3S), Universidade do Porto, Rua Alfredo Allen, 208 | 4200-135 Porto,
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Biomedical Chemistry: Current Trends and Developments
Title
Biomedical Chemistry: Current Trends and Developments
Author
Nuno Vale
Publisher
De Gruyter Open Ltd
Date
2016
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-11-046887-8
Size
21.0 x 29.7 cm
Pages
427
Keywords
Physical Sciences, Engineering and Technology, Chemistry, Organic Chemistry, Green Chemistry
Categories
Naturwissenschaften Chemie
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Biomedical Chemistry: Current Trends and Developments