Mark Molliver

Johns Hopkins University, Baltimore, MD 
Neurotoxicity, serotonin
"Mark Molliver"
Mean distance: 13.47 (cluster 6)
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Molliver ME, Welker E, Clarke PG. (1994) Hendrik Van der Loos(1929–1993) Trends in Neurosciences. 17: 93-94
Wilson MA, Mamounas LA, Fasman KH, et al. (1993) Reactions of 5-HT neurons to drugs of abuse: neurotoxicity and plasticity. Nida Research Monograph. 136: 155-78; discussion 1
Mamounas LA, Mullen CA, O'Hearn E, et al. (1991) Dual serotoninergic projections to forebrain in the rat: morphologically distinct 5-HT axon terminals exhibit differential vulnerability to neurotoxic amphetamine derivatives. The Journal of Comparative Neurology. 314: 558-86
Wilson MA, Molliver ME. (1991) The organization of serotonergic projections to cerebral cortex in primates: regional distribution of axon terminals. Neuroscience. 44: 537-53
Wilson MA, Molliver ME. (1991) The organization of serotonergic projections to cerebral cortex in primates: retrograde transport studies. Neuroscience. 44: 555-70
Kitt CA, Walker LC, Molliver ME, et al. (1989) Serotoninergic neurites in senile plaques in cingulate cortex of aged nonhuman primate. Synapse (New York, N.Y.). 3: 12-8
O'Hearn E, Battaglia G, De Souza EB, et al. (1988) Methylenedioxyamphetamine (MDA) and methylenedioxymethamphetamine (MDMA) cause selective ablation of serotonergic axon terminals in forebrain: immunocytochemical evidence for neurotoxicity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 8: 2788-803
D'Amato RJ, Blue ME, Largent BL, et al. (1987) Ontogeny of the serotonergic projection to rat neocortex: transient expression of a dense innervation to primary sensory areas. Proceedings of the National Academy of Sciences of the United States of America. 84: 4322-6
Fritschy JM, Lyons WE, Mullen CA, et al. (1987) Distribution of locus coeruleus axons in the rat spinal cord: a combined anterograde transport and immunohistochemical study. Brain Research. 437: 176-80
Kosofsky BE, Molliver ME. (1987) The serotoninergic innervation of cerebral cortex: different classes of axon terminals arise from dorsal and median raphe nuclei. Synapse (New York, N.Y.). 1: 153-68
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