Tom Macpherson

Affiliations: 
Graduate School of Medicine Kyoto University, Kyōto-shi, Kyōto-fu, Japan 
Area:
Striatum, Basal Ganglia, Decision-Making, Reward
Google:
"Tom Macpherson"
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Publications

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Macpherson T, Dixon CI, Robertson J, et al. (2023) α4-containing GABA receptors on DRD2-neurons of the nucleus accumbens mediate instrumental responding for conditioned reinforcers, and its potentiation by cocaine. Eneuro
Attachaipanich S, Ozawa T, Macpherson T, et al. (2023) Dual roles for nucleus accumbens core dopamine D1-expressing neurons projecting to the substantia nigra pars reticulata in limbic and motor control in male mice. Eneuro
Nishioka T, Attachaipanich S, Hamaguchi K, et al. (2023) Error-related signaling in nucleus accumbens D2 receptor-expressing neurons guides inhibition-based choice behavior in mice. Nature Communications. 14: 2284
Aomine Y, Sakurai K, Macpherson T, et al. (2022) Importin α3 (KPNA3) Deficiency Augments Effortful Reward-Seeking Behavior in Mice. Frontiers in Neuroscience. 16: 905991
Macpherson T, Kim JY, Hikida T. (2022) Nucleus Accumbens Core Dopamine D2 Receptor-Expressing Neurons Control Reversal Learning but Not Set-Shifting in Behavioral Flexibility in Male Mice. Frontiers in Neuroscience. 16: 885380
Saito N, Tainaka K, Macpherson T, et al. (2020) Neurotransmission through dopamine D1 receptor is required for aversive memory formation and Arc activation in the cerebral cortex. Neuroscience Research
Hikida T, Yao S, Macpherson T, et al. (2020) Nucleus accumbens pathways control cell-specific gene expression in the medial prefrontal cortex. Scientific Reports. 10: 1838
Hikida T, Morita M, Kuroiwa M, et al. (2019) Adolescent psychosocial stress enhances sensitization to cocaine exposure in genetically vulnerable mice. Neuroscience Research
Macpherson T, Mizoguchi H, Yamanaka A, et al. (2019) Preproenkephalin-expressing ventral pallidal neurons control inhibitory avoidance learning. Neurochemistry International
Macpherson T, Hikida T. (2018) Nucleus Accumbens Dopamine D1-Receptor-Expressing Neurons Control the Acquisition of Sign-Tracking to Conditioned Cues in Mice. Frontiers in Neuroscience. 12: 418
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