Ko Matsui, Ph.D.

Affiliations: 
2017- Super-network Brain Physiology Tohoku University Graduate School of Life Sciences 
Area:
Synaptic transmission, Neuron-glia interaction, Glial cells, Retina, Cerebellum
Website:
http://www.ims.med.tohoku.ac.jp/matsui/
Google:
"Ko Matsui"
Bio:

1996-2001 University of Tokyo, Japan (Grad School)
2001-2006 Vollum Institute, USA (Postdoc)
2006-2013 National Institute for Physiological Sciences, Japan (Assistant Prof)
2013-2017 Tohoku University, Graduate School of Medicine, Japan (Associate Prof)
2017- Tohoku University, Graduate School of Life Sciences, Japan (Professor)

Mean distance: 13.46 (cluster 11)
 
SNBCP
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Publications

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Kawana Y, Imai J, Morizawa YM, et al. (2023) Optogenetic stimulation of vagal nerves for enhanced glucose-stimulated insulin secretion and β cell proliferation. Nature Biomedical Engineering
Kanaya T, Ito R, Morizawa YM, et al. (2023) Glial modulation of the parallel memory formation. Glia
Ikoma Y, Takahashi Y, Sasaki D, et al. (2023) Properties of REM sleep alterations with epilepsy. Brain : a Journal of Neurology
Ikoma Y, Sasaki D, Matsui K. (2022) Local brain environment changes associated with epileptogenesis. Brain : a Journal of Neurology
Morizawa YM, Matsumoto M, Nakashima Y, et al. (2022) Synaptic pruning through glial synapse engulfment upon motor learning. Nature Neuroscience. 25: 1458-1469
Shimoda Y, Beppu K, Ikoma Y, et al. (2021) Optogenetic stimulus-triggered acquisition of seizure resistance. Neurobiology of Disease. 163: 105602
Matsui K. (2021) [Function and Breakdown of the Neuron-Glia Dual-Layer Super-Network]. Brain and Nerve = Shinkei Kenkyu No Shinpo. 73: 769-779
Beppu K, Kubo N, Matsui K. (2021) Glial amplification of synaptic signals. The Journal of Physiology
Onodera M, Meyer J, Furukawa K, et al. (2021) Exacerbation of epilepsy by astrocyte alkalization and gap junction uncoupling. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Takata N, Sugiura Y, Yoshida K, et al. (2018) Optogenetic astrocyte activation evokes BOLD fMRI response with oxygen consumption without neuronal activity modulation. Glia
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