Yoshihiko Tsukamoto, Ph.D

Affiliations: 
Biology Hyogo College of Medicine, Nishinomiya-shi, Hyōgo-ken, Japan 
Area:
Retinal biology
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"Yoshihiko Tsukamoto"
Bio:

Expertise of retinal with Electron Microscope. Ribbon synapse and retinal micro circuit

Mean distance: 17.31 (cluster 11)
 
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Publications

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Okawa H, Yu WQ, Matti U, et al. (2019) Dynamic assembly of ribbon synapses and circuit maintenance in a vertebrate sensory system. Nature Communications. 10: 2167
Tsukamoto Y. (2018) Morphological Survey from Neurons to Circuits of the Mouse Retina. Methods of Molecular Biology. 1753: 3-25
Tsukamoto Y, Omi N. (2017) Classification of Mouse Retinal Bipolar Cells: Type-Specific Connectivity with Special Reference to Rod-Driven AII Amacrine Pathways Frontiers in Neuroanatomy. 11: 92
Tsukamoto Y, Omi N. (2016) ON Bipolar Cells in Macaque Retina: Type-Specific Synaptic Connectivity with Special Reference to OFF Counterparts. Frontiers in Neuroanatomy. 10: 104
Tsukamoto Y, Omi N. (2015) Corrigendum: (1) Some OFF Bipolar Cell Types Make Contact With Both Rods and Cones in Macaque and Mouse Retinas; (2) OFF Bipolar Cells in Macaque Retina: Type-specific Connectivity in the Outer and Inner Synaptic Layers. Frontiers in Neuroanatomy. 9: 144-144
Tsukamoto Y, Omi N. (2015) OFF bipolar cells in macaque retina: Type-specific connectivity in the outer and inner synaptic layers Frontiers in Neuroanatomy. 9
Tsukamoto Y, Omi N. (2014) Effects of mGluR6-deficiency on photoreceptor ribbon synapse formation: Comparison of electron microscopic analysis of serial sections with random sections Visual Neuroscience. 31: 39-46
Tsukamoto Y, Omi N. (2014) Some OFF bipolar cell types make contact with both rods and cones in macaque and mouse retinas Frontiers in Neuroanatomy. 8
Tsukamoto Y, Omi N. (2013) Functional allocation of synaptic contacts in microcircuits from rods via rod bipolar to AII amacrine cells in the mouse retina Journal of Comparative Neurology. 521: 3541-3555
Tsukamoto Y, Omi N. (2011) Reconvergence of a rod signal to an AII amacrine cell through divergence to a pair of rod bipolar cells in the mouse retina Neuroscience Research. 71
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