Naofumi Uesaka

Affiliations: 
Osaka University, Toyonaka-shi, Ōsaka-fu, Japan 
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"Naofumi Uesaka"
Mean distance: 15.37 (cluster 6)
 
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Publications

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Itami C, Uesaka N, Huang JY, et al. (2022) Endocannabinoid-dependent formation of columnar axonal projection in the mouse cerebral cortex. Proceedings of the National Academy of Sciences of the United States of America. 119: e2122700119
Nagahama K, Fujino S, Watanabe T, et al. (2021) Combining electrophysiology and optogenetics for functional screening of pyramidal neurons in the mouse prefrontal cortex. Star Protocols. 2: 100469
Yamashiro K, Hori K, Lai ESK, et al. (2020) AUTS2 Governs Cerebellar Development, Purkinje Cell Maturation, Motor Function and Social Communication. Iscience. 23: 101820
Sacai H, Sakoori K, Konno K, et al. (2020) Autism spectrum disorder-like behavior caused by reduced excitatory synaptic transmission in pyramidal neurons of mouse prefrontal cortex. Nature Communications. 11: 5140
Nagahama K, Sakoori K, Watanabe T, et al. (2020) Setd1a Insufficiency in Mice Attenuates Excitatory Synaptic Function and Recapitulates Schizophrenia-Related Behavioral Abnormalities. Cell Reports. 32: 108126
Nagumo Y, Ueta Y, Nakayama H, et al. (2020) Tonic GABAergic Inhibition Is Essential for Nerve Injury-Induced Afferent Remodeling in the Somatosensory Thalamus and Ectopic Sensations. Cell Reports. 31: 107797
Rai Y, Watanabe T, Matsuyama K, et al. (2020) Phospholipase C β3 is required for climbing fiber synapse elimination in aldolase C-positive compartments of the developing mouse cerebellum. Neuroscience
Saito R, Koebis M, Nagai T, et al. (2020) Comprehensive analysis of a novel mouse model of the 22q11.2 deletion syndrome: a model with the most common 3.0-Mb deletion at the human 22q11.2 locus. Translational Psychiatry. 10: 35
Kano M, Watanabe T, Uesaka N, et al. (2018) Multiple Phases of Climbing Fiber Synapse Elimination in the Developing Cerebellum. Cerebellum (London, England)
Uesaka N, Abe M, Konno K, et al. (2018) Retrograde Signaling from Progranulin to Sort1 Counteracts Synapse Elimination in the Developing Cerebellum. Neuron
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