Kenta M. Hagihara
Affiliations: | Neurobiology | Friedrich Miescher Institute/University of Basel |
Area:
Emotional system, Visual system, Physiology, ImagingGoogle:
"Kenta Hagihara"Mean distance: 15.93 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorKenichi Ohki | research assistant | 2011-2014 | Kyushu University |
Andreas Lüthi | grad student | 2015-2021 | Friedrich Meischer Institute / University of Basel |
Karel Svoboda | post-doc | 2022- | Allen Institute for Neural Dynamics |
Collaborators
Sign in to add collaboratorYoshi Tagawa | collaborator | 2011- | |
Andrew Holmes | collaborator | 2017- |
BETA: Related publications
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Publications
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Hagihara KM, Lüthi A. (2024) Bidirectional valence coding in amygdala intercalated clusters: A neural substrate for the opponent-process theory of motivation. Neuroscience Research |
Massi L, Hagihara KM, Courtin J, et al. (2023) Disynaptic specificity of serial information flow for conditioned fear. Science Advances. 9: eabq1637 |
Tezuka Y, Hagihara KM, Ohki K, et al. (2022) Developmental stage-specific spontaneous activity contributes to callosal axon projections. Elife. 11 |
Hagihara KM, Bukalo O, Zeller M, et al. (2021) Intercalated amygdala clusters orchestrate a switch in fear state. Nature |
Hagihara KM, Ishikawa AW, Yoshimura Y, et al. (2020) Long-Range Interhemispheric Projection Neurons Show Biased Response Properties and Fine-Scale Local Subnetworks in Mouse Visual Cortex. Cerebral Cortex (New York, N.Y. : 1991) |
Yuste R, Hawrylycz M, Aalling N, et al. (2020) A community-based transcriptomics classification and nomenclature of neocortical cell types. Nature Neuroscience |
Nishiyama M, Matsui T, Murakami T, et al. (2019) Cell-Type-Specific Thalamocortical Inputs Constrain Direction Map Formation in Visual Cortex. Cell Reports. 26: 1082-1088.e3 |
Hagihara KM, Murakami T, Yoshida T, et al. (2015) Neuronal activity is not required for the initial formation and maturation of visual selectivity. Nature Neuroscience |
Hagihara KM, Ohki K. (2013) Long-term down-regulation of GABA decreases orientation selectivity without affecting direction selectivity in mouse primary visual cortex. Frontiers in Neural Circuits. 7: 28 |