Kazuo Kitamura, Ph.D.

Physiology University of Yamanashi 
"Kazuo Kitamura"
Mean distance: 13.85 (cluster 6)
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Hoang H, Tsutsumi S, Matsuzaki M, et al. (2023) Dynamic organization of cerebellar climbing fiber response and synchrony in multiple functional components reduces dimensions for reinforcement learning. Elife. 12
Ikezoe K, Hidaka N, Manita S, et al. (2023) Cerebellar climbing fibers multiplex movement and reward signals during a voluntary movement task in mice. Communications Biology. 6: 924
Sakamoto M, Inoue M, Takeuchi A, et al. (2022) A Flp-dependent G-CaMP9a transgenic mouse for neuronal imaging . Cell Reports Methods. 2: 100168
Hoang H, Sato MA, Shinomoto S, et al. (2020) Improved hyperacuity estimation of spike timing from calcium imaging. Scientific Reports. 10: 17844
Tsutsumi S, Hidaka N, Isomura Y, et al. (2019) Modular organization of cerebellar climbing fiber inputs during goal-directed behavior. Elife. 8
Nakao H, Kishimoto Y, Hashimoto K, et al. (2019) mGluR1 in cerebellar Purkinje cells is essential for the formation but not expression of associative eyeblink memory. Scientific Reports. 9: 7353
Inoue M, Takeuchi A, Manita S, et al. (2019) Rational Engineering of XCaMPs, a Multicolor GECI Suite for In Vivo Imaging of Complex Brain Circuit Dynamics. Cell
Tsutsumi S, Hidaka N, Isomura Y, et al. (2019) Author response: Modular organization of cerebellar climbing fiber inputs during goal-directed behavior Elife
Mizuno H, Ikezoe K, Nakazawa S, et al. (2018) Patchwork-Type Spontaneous Activity in Neonatal Barrel Cortex Layer 4 Transmitted via Thalamocortical Projections. Cell Reports. 22: 123-135
Good JM, Mahoney M, Miyazaki T, et al. (2017) Maturation of Cerebellar Purkinje Cell Population Activity during Postnatal Refinement of Climbing Fiber Network. Cell Reports. 21: 2066-2073
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