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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Lai ESK, Uesaka N, Miyazaki T, et al. (2025) Reduced GABAergic inhibition and impaired synapse elimination by neuroligin-2 deletion from Purkinje cells of the developing cerebellum. Frontiers in Neural Circuits. 19: 1530141
Tanigawa M, Liu M, Sekiguchi M, et al. (2024) Nasal obstruction during development leads to defective synapse elimination, hypersynchrony, and impaired cerebellar function. Communications Biology. 7: 1381
Nakayama H, Miyazaki T, Abe M, et al. (2024) Direct and indirect pathways for heterosynaptic interaction underlying developmental synapse elimination in the mouse cerebellum. Communications Biology. 7: 806
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
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