Hiromichi Sato

Affiliations: 
Osaka University, Toyonaka-shi, Ōsaka-fu, Japan 
Area:
neurophysiology
Website:
http://www.vision.hss.osaka-u.ac.jp/
Google:
"Hiromichi Sato"
Mean distance: 13.76 (cluster 6)
 
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Publications

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Osaki H, Naito T, Soma S, et al. (2017) Receptive field properties of cat perigeniculate neurons correlate with excitatory and inhibitory connectivity to LGN relay neurons. Neuroscience Research
Shimegi S, Kimura A, Sato A, et al. (2016) Cholinergic and serotonergic modulation of visual information processing in monkey V1. Journal of Physiology, Paris
Naito T, Suematsu N, Matsumoto E, et al. (2014) Relative spatial frequency tuning and its contrast dependency in human perception. Journal of Vision. 14: 23
Shimegi S, Ishikawa A, Kida H, et al. (2014) Spatiotemporal characteristics of surround suppression in primary visual cortex and lateral geniculate nucleus of the cat. Journal of Neurophysiology. 112: 603-19
Naito T, Kasamatsu T, Sato H. (2014) Spike synchronization in cat primary visual cortex depends on similarity of surround-suppression magnitude. The European Journal of Neuroscience. 39: 934-45
Suematsu N, Naito T, Miyoshi T, et al. (2013) Spatiotemporal receptive field structures in retinogeniculate connections of cat. Frontiers in Systems Neuroscience. 7: 103
Naito T, Okamoto M, Sadakane O, et al. (2013) Effects of stimulus spatial frequency, size, and luminance contrast on orientation tuning of neurons in the dorsal lateral geniculate nucleus of cat. Neuroscience Research. 77: 143-54
Soma S, Shimegi S, Suematsu N, et al. (2013) Modulation-specific and laminar-dependent effects of acetylcholine on visual responses in the rat primary visual cortex. Plos One. 8: e68430
Kimura A, Shimegi S, Hara S, et al. (2013) Role of GABAergic inhibition in shaping the spatial frequency tuning of neurons and its contrast dependency in the dorsal lateral geniculate nucleus of cat. The European Journal of Neuroscience. 37: 1270-83
Soma S, Shimegi S, Suematsu N, et al. (2013) Cholinergic modulation of response gain in the rat primary visual cortex. Scientific Reports. 3: 1138
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