Keyword search (4,163 papers available)

"Leyton M" Authored Publications:

Title Authors PubMed ID
1 Decriminalization or more treatment? Comparing 2 approaches to the drug overdose crisis Caswell C; Krausz RM; Leyton M; 40541419
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2 A multimodal neuroimaging study of youth at risk for substance use disorders: Functional magnetic resonance imaging and [18F]fallypride positron emission tomography Nikolic M; Cox SML; Jaworska N; Castellanos-Ryan N; Dagher A; Vitaro F; Brendgen M; Parent S; Boivin M; Côté S; Tremblay RE; Séguin JR; Leyton M; 39725679
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3 Ending the overdose epidemic by ending the war on drug users: Can this work? Leyton M; Krausz RM; 38383036
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4 Mesocorticolimbic function in cocaine polydrug users: A multimodal study of drug cue reactivity and cognitive regulation Scala SG; Kang MS; Cox SML; Rosa-Neto P; Massarweh G; Leyton M; 38221806
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5 Learning from opioid withdrawal: Effects on striatal dopamine (Commentary on Ahn et al., 2023) Leyton M; Nikolic M; 38129315
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6 Brain PET Imaging in Small Animals: Tracer Formulation, Data Acquisition, Image Reconstruction, and Data Analysis Bdair H; Kang MS; Ottoy J; Aliaga A; Kunach P; Singleton TA; Blinder S; Soucy JP; Leyton M; Rosa-Neto P; Kostikov A; 38006502
PERFORM
7 Cocaine cue-induced mesocorticolimbic activation in cocaine users: Effects of personality traits, lifetime drug use, and acute stimulant ingestion D' Amour-Horvat V; Cox SML; Dagher A; Kolivakis T; Jaworska N; Leyton M; 34463411
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8 Why did the kitten cross the road? A meditation on positive versus negative reinforcement in addiction. Leyton M 33497168
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9 Metabotropic glutamate type 5 receptor binding availability during dextroamphetamine sensitization in mice and humans. Smart K, Nagano-Saito A, Milella MS, Sakae DY, Favier M, Vigneault E, Louie L, Hamilton A, Ferguson SSG, Rosa-Neto P, Narayanan S, El Mestikawy S, Leyton M, Benkelfat C 32559027
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10 mGlu5 receptor availability in youth at risk for addictions: effects of vulnerability traits and cannabis use. Cox SML, Tippler M, Jaworska N, Smart K, Castellanos-Ryan N, Durand F, Allard D, Benkelfat C, Parent S, Dagher A, Vitaro F, Boivin M, Pihl RO, Côté S, Tremblay RE, Séguin JR, Leyton M 32413893
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11 Extra-striatal D2/3 receptor availability in youth at risk for addiction. Jaworska N, Cox SML, Tippler M, Castellanos-Ryan N, Benkelfat C, Parent S, Dagher A, Vitaro F, Boivin M, Pihl RO, Côté SM, Tremblay RE, Séguin JR, Leyton M 32259831
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12 Cannabis legalization: Did we make a mistake? Update 2019 Leyton M 31452361
PSYCHOLOGY
13 Legalizing marijuana. Leyton M 26898727
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14 Cocaine cue-induced dopamine release in the human prefrontal cortex. Milella MS, Fotros A, Gravel P, Casey KF, Larcher K, Verhaeghe JA, Cox SM, Reader AJ, Dagher A, Benkelfat C, Leyton M 26900792
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15 Dopamine and light: effects on facial emotion recognition. Cawley E, Tippler M, Coupland NJ, Benkelfat C, Boivin DB, Aan Het Rot M, Leyton M 28633582
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16 Are people with psychiatric disorders violent? Leyton M 29688170
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17 Are people with psychiatric disorders violent? Leyton M 29947604
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18 Neuroimaging tests for clinical psychiatry: Are we there yet? Leyton M, Kennedy SH 28639935
IMAGING
19 Dopamine cross-sensitization between psychostimulant drugs and stress in healthy male volunteers. Booij L, Welfeld K, Leyton M, Dagher A, Boileau I, Sibon I, Baker GB, Diksic M, Soucy JP, Pruessner JC, Cawley-Fiset E, Casey KF, Benkelfat C 26905412
PSYCHOLOGY
20 Effect of (Z)-isomer content on [11C]ABP688 binding potential in humans. Smart K, Cox SML, Kostikov A, Shalai A, Scala SG, Tippler M, Jaworska N, Boivin M, Séguin JR, Benkelfat C, Leyton M 30607444
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21 Sex differences in [11C]ABP688 binding: a positron emission tomography study of mGlu5 receptors. Smart K, Cox SML, Scala SG, Tippler M, Jaworska N, Boivin M, Séguin JR, Benkelfat C, Leyton M 30627817
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22 Posterior dopamine D2/3 receptors and brain network functional connectivity. Nagano-Saito A, Lissemore JI, Gravel P, Leyton M, Carbonell F, Benkelfat C 28700819
PERFORM

 

Title:Dopamine and light: effects on facial emotion recognition.
Authors:Cawley ETippler MCoupland NJBenkelfat CBoivin DBAan Het Rot MLeyton M
Link:https://www.ncbi.nlm.nih.gov/pubmed/28633582?dopt=Abstract
DOI:10.1177/0269881117711707
Publication:Journal of psychopharmacology (Oxford, England)
Keywords:Seasonal affective disorderacute phenylalanine/tyrosine depletionbright lightnegative biasphototherapy
PMID:28633582 Category:J Psychopharmacol Date Added:2019-06-20
Dept Affiliation: CSBN
1 1 Department of Psychiatry, McGill University, Montreal, Canada.
2 2 Association of Atlantic Universities, Halifax Nova Scotia, Canada.
3 3 Department of Psychiatry, University of Alberta, Edmonton, Canada.
4 4 Department of Psychology and School of Behavioral and Cognitive Neurosciences, University of Groningen, Groningen, The Netherlands.
5 5 Center for Studies in Behavioral Neurobiology, Concordia University, Montreal, Canada.

Description:

Dopamine and light: effects on facial emotion recognition.

J Psychopharmacol. 2017 09;31(9):1225-1233

Authors: Cawley E, Tippler M, Coupland NJ, Benkelfat C, Boivin DB, Aan Het Rot M, Leyton M

Abstract

Bright light can affect mood states and social behaviours. Here, we tested potential interacting effects of light and dopamine on facial emotion recognition. Participants were 32 women with subsyndromal seasonal affective disorder tested in either a bright (3000 lux) or dim light (10 lux) environment. Each participant completed two test days, one following the ingestion of a phenylalanine/tyrosine-deficient mixture and one with a nutritionally balanced control mixture, both administered double blind in a randomised order. Approximately four hours post-ingestion participants completed a self-report measure of mood followed by a facial emotion recognition task. All testing took place between November and March when seasonal symptoms would be present. Following acute phenylalanine/tyrosine depletion (APTD), compared to the nutritionally balanced control mixture, participants in the dim light condition were more accurate at recognising sad faces, less likely to misclassify them, and faster at responding to them, effects that were independent of changes in mood. Effects of APTD on responses to sad faces in the bright light group were less consistent. There were no APTD effects on responses to other emotions, with one exception: a significant light × mixture interaction was seen for the reaction time to fear, but the pattern of effect was not predicted a priori or seen on other measures. Together, the results suggest that the processing of sad emotional stimuli might be greater when dopamine transmission is low. Bright light exposure, used for the treatment of both seasonal and non-seasonal mood disorders, might produce some of its benefits by preventing this effect.

PMID: 28633582 [PubMed - indexed for MEDLINE]





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