La maladie de Parkinson au Canada (serveur d'exploration) - Merge (Accueil)

Index « Auteurs » - entrée « Philip Seeman »
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List of bibliographic references

Number of relevant bibliographic references: 32.
[0-20] [0 - 20][0 - 32][20-31][20-40]
Ident.Authors (with country if any)Title
000430 (2016) Serdar Durdagi [Turquie] ; Ramin Ekhteiari Salmas [Turquie] ; Matthias Stein [Allemagne] ; Mine Yurtsever [Turquie] ; Philip SeemanBinding Interactions of Dopamine and Apomorphine in D2High and D2Low States of Human Dopamine D2 Receptor Using Computational and Experimental Techniques.
000602 (2015) Philip Seeman [Canada]Parkinson's disease treatment may cause impulse-control disorder via dopamine D3 receptors.
000983 (2014) Craig J. Hudson [Canada] ; Philip Seeman [Canada] ; Mary V. Seeman [Canada]Parkinson's Disease: Low-Dose Haloperidol Increases Dopamine Receptor Sensitivity and Clinical Response
000B28 (2014) Philip Seeman [Canada]Clozapine, a fast-off-D2 antipsychotic.
000C55 (2013) James B. Koprich [Canada] ; Philippe Huot ; Susan H. Fox ; Keith Jarvie ; Anthony E. Lang ; Philip Seeman ; Jonathan M. BrotchieThe effects of fast-off-D2 receptor antagonism on L-DOPA-induced dyskinesia and psychosis in parkinsonian macaques.
001051 (2013) James B. Koprich [Canada] ; Philippe Huot [Canada] ; Susan H. Fox [Canada] ; Keith Jarvie [Canada] ; Anthony E. Lang [Canada] ; Philip Seeman [Canada] ; Jonathan M. Brotchie [Canada]The effects of fast-off-D2 receptor antagonism on L-DOPA-induced dyskinesia and psychosis in parkinsonian macaques
001078 (2013) Philip Seeman [Canada] ; Michele Tinazzi [Italie]Loss of dopamine neuron terminals in antipsychotic-treated schizophrenia; relation to tardive dyskinesia
001491 (2012) Terence K. Y. Lai [Canada] ; Philip Seeman [Canada] ; Fang Liu [Canada]Cell membrane lytic action of metoclopramide and its relation to tardive dyskinesia
001967 (2011) Sheng Chen [Canada] ; Philip Seeman [Canada] ; Fang Liu [Canada]Antipsychotic drug binding in the substantia nigra: An examination of high metoclopramide binding in the brains of normal, Alzheimer's disease, Huntington's disease, and Multiple Sclerosis patients, and its relation to tardive dyskinesia
002155 (2009) Philip Seeman [Canada] ; Hong-Chang Guan [Canada]Glutamate agonists for treating schizophrenia have affinity for dopamine D2High and D3 receptors
002156 (2009) Philip Seeman [Canada] ; Hong-Chang Guan [Canada]Glutamate agonist LY404,039 for treating schizophrenia has affinity for the dopamine D2High receptor
002172 (2009) Philip Seeman [Canada]Dopamine D2High receptors measured ex vivo are elevated in amphetamine‐sensitized animals
002498 (2008) Philip Seeman [Canada] ; Carla Caruso [Argentine] ; Mercedes Lasaga [Argentine]Memantine agonist action at dopamine D2High receptors
002526 (2008) Philip Seeman [Canada]Dopamine D2High receptors on intact cells
002527 (2008) Philip Seeman [Canada]Dopamine D2High receptors moderately elevated by sertindole
002528 (2008) Philip Seeman [Canada]Dopamine D2High receptors moderately elevated by bifeprunox and aripiprazole
002819 (2007) Philip Seeman [Canada] ; Patrick N. Mccormick [Canada] ; Shitij Kapur [Canada]Increased dopamine D2High receptors in amphetamine‐sensitized rats, measured by the agonist [3H](+)PHNO
002855 (2007) Philip Seeman [Canada]Antiparkinson therapeutic potencies correlate with their affinities at dopamine D2High receptors
002A91 (2006) Philip Seeman [Canada] ; Johannes Schwarz [Allemagne] ; Jiang-Fan Chen [États-Unis] ; Henry Szechtman [Canada] ; Melissa Perreault [Canada] ; G. Stanley Mcknight [États-Unis] ; John C. Roder [Canada] ; Rémi Quirion [Canada] ; Patricia Boksa [Canada] ; Lalit K. Srivastava [Canada] ; Kazuhiko Yanai [Japon] ; David Weinshenker [États-Unis] ; Tomiki Sumiyoshi [Japon]Psychosis pathways converge via D2High dopamine receptors
002D29 (2005) Philip Seeman [Canada] ; Françoise Ko ; Matth Us Willeit ; Patrick Mccormick ; Nathalie GinovartAntiparkinson concentrations of pramipexole and PHNO occupy dopamine D2(high) and D3(high) receptors.
003423 (2002) Philip Seeman [Canada]Atypical antipsychotics: mechanism of action.

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