Takatoshi Hikida, M.D., Ph.D.
Affiliations: | Graduate School of Medicine | Kyoto University, Kyōto-shi, Kyōto-fu, Japan |
Area:
Pathophysiology of schizophrenia, regulatory mechanism of basal ganglia circuitWebsite:
http://kyouindb.iimc.kyoto-u.ac.jp/e/gR5uKGoogle:
"Takatoshi Hikida"Mean distance: 15.98 (cluster 32) | S | N | B | C | P |
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Publications
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Park J, Shimbo H, Tamura S, et al. (2024) Impact of feeding age on cognitive impairment in mice with Disrupted-In-Schizophrenia 1 (Disc1) mutation under a high sucrose diet. Behavioural Brain Research. 476: 115291 |
Nomiya H, Sakurai K, Miyamoto Y, et al. (2024) A Kpna1-deficient psychotropic drug-induced schizophrenia model mouse for studying gene-environment interactions. Scientific Reports. 14: 3376 |
Macpherson T, Niwa M, Morishita H, et al. (2023) Editorial: Circuit, molecular, and developmental mechanisms in decision-making behavior. Frontiers in Neuroscience. 17: 1192237 |
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 |
Jaaro-Peled H, Kumar S, Hughes D, et al. (2022) Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit. Molecular Psychiatry |
Sakurai K, Itou T, Morita M, et al. (2021) Effects of Importin α1/KPNA1 deletion and adolescent social isolation stress on psychiatric disorder-associated behaviors in mice. Plos One. 16: e0258364 |
Nishioka T, Hamaguchi K, Yawata S, et al. (2020) Chemogenetic Suppression of the Subthalamic Nucleus Induces Attentional Deficits and Impulsive Action in a Five-Choice Serial Reaction Time Task in Mice. Frontiers in Systems Neuroscience. 14: 38 |
Anan M, Higa R, Shikano K, et al. (2020) Cocaine has some effect on neuromedin U expressing neurons related to the brain reward system. Heliyon. 6: e03947 |
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 |