Search Results - "Hishida, Ryuichi"

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  1. 1

    The Extrageniculate Visual Pathway Generates Distinct Response Properties in the Higher Visual Areas of Mice by Tohmi, Manavu, Meguro, Reiko, Tsukano, Hiroaki, Hishida, Ryuichi, Shibuki, Katsuei

    Published in Current biology (17-03-2014)
    “…Visual information conveyed through the extrageniculate visual pathway, which runs from the retina via the superior colliculus (SC) and the lateral posterior…”
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  2. 2

    Visualization of cortical activation in human brain by flavoprotein fluorescence imaging by Mitsuhashi, Daiju, Hishida, Ryuichi, Oishi, Makoto, Hiraishi, Tetsuya, Natsumeda, Manabu, Shibuki, Katsuei, Fujii, Yukihiko

    Published in Journal of neurosurgery (01-10-2022)
    “…To develop an innovative brain mapping and neuromonitoring method during neurosurgery, the authors set out to establish intraoperative flavoprotein…”
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  3. 3

    Multimodal cortical sensory pathways revealed by sequential transcranial electrical stimulation in mice by Hishida, Ryuichi, Kudoh, Masaharu, Shibuki, Katsuei

    Published in Neuroscience research (01-10-2014)
    “…•Sequential transcranial electrical stimulations revealed cortical pathways in mice.•Activity originating in three different sensory systems converged on area…”
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  4. 4

    Feedback inhibition derived from the posterior parietal cortex regulates the neural properties of the mouse visual cortex by Hishida, Ryuichi, Horie, Masao, Tsukano, Hiroaki, Tohmi, Manavu, Yoshitake, Kohei, Meguro, Reiko, Takebayashi, Hirohide, Yanagawa, Yuchio, Shibuki, Katsuei

    Published in The European journal of neuroscience (01-09-2019)
    “…Feedback regulation from the higher association areas is thought to control the primary sensory cortex, contribute to the cortical processing of sensory…”
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  5. 5

    Delineation of a frequency-organized region isolated from the mouse primary auditory cortex by Tsukano, Hiroaki, Horie, Masao, Bo, Takeshi, Uchimura, Arikuni, Hishida, Ryuichi, Kudoh, Masaharu, Takahashi, Kuniyuki, Takebayashi, Hirohide, Shibuki, Katsuei

    Published in Journal of neurophysiology (01-04-2015)
    “…The primary auditory cortex (AI) is the representative recipient of information from the ears in the mammalian cortex. However, the delineation of the AI is…”
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  6. 6

    Direct Relay Pathways from Lemniscal Auditory Thalamus to Secondary Auditory Field in Mice by Ohga, Shinpei, Tsukano, Hiroaki, Horie, Masao, Terashima, Hiroki, Nishio, Nana, Kubota, Yamato, Takahashi, Kuniyuki, Hishida, Ryuichi, Takebayashi, Hirohide, Shibuki, Katsuei

    Published in Cerebral cortex (New York, N.Y. 1991) (01-12-2018)
    “…Abstract Tonotopy is an essential functional organization in the mammalian auditory cortex, and its source in the primary auditory cortex (A1) is the incoming…”
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  7. 7

    Higher visual responses in the temporal cortex of mice by Nishio, Nana, Tsukano, Hiroaki, Hishida, Ryuichi, Abe, Manabu, Nakai, Junichi, Kawamura, Meiko, Aiba, Atsushi, Sakimura, Kenji, Shibuki, Katsuei

    Published in Scientific reports (24-07-2018)
    “…The visual cortex of mice is a useful model for investigating the mammalian visual system. In primates, higher visual areas are classified into two parts, the…”
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  8. 8

    Reciprocal connectivity between secondary auditory cortical field and amygdala in mice by Tsukano, Hiroaki, Hou, Xubin, Horie, Masao, Kitaura, Hiroki, Nishio, Nana, Hishida, Ryuichi, Takahashi, Kuniyuki, Kakita, Akiyoshi, Takebayashi, Hirohide, Sugiyama, Sayaka, Shibuki, Katsuei

    Published in Scientific reports (23-12-2019)
    “…Recent studies have examined the feedback pathway from the amygdala to the auditory cortex in conjunction with the feedforward pathway from the auditory cortex…”
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  9. 9

    Auditory cortical field coding long-lasting tonal offsets in mice by Baba, Hironori, Tsukano, Hiroaki, Hishida, Ryuichi, Takahashi, Kuniyuki, Horii, Arata, Takahashi, Sugata, Shibuki, Katsuei

    Published in Scientific reports (30-09-2016)
    “…Although temporal information processing is important in auditory perception, the mechanisms for coding tonal offsets are unknown. We investigated cortical…”
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  10. 10

    Auditory cortical activity elicited by infrared laser irradiation from the outer ear in Mongolian gerbils by Tamai, Yuta, Ito, Yuki, Furuyama, Takafumi, Horinouchi, Kensuke, Murashima, Nagomi, Michimoto, Itsuki, Hishida, Ryuichi, Shibuki, Katsuei, Hiryu, Shizuko, Kobayasi, Kohta I

    Published in PloS one (15-10-2020)
    “…Infrared neural stimulation has been studied for its potential to replace an electrical stimulation of a cochlear implant. No studies, however, revealed how…”
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  11. 11

    Tomographic optical imaging of cortical responses after crossing nerve transfer in mice by Maniwa, Keiichi, Yamashita, Haruyoshi, Tsukano, Hiroaki, Hishida, Ryuichi, Endo, Naoto, Shibata, Minoru, Shibuki, Katsuei

    Published in PloS one (14-02-2018)
    “…To understand the neural mechanisms underlying the therapeutic effects of crossing nerve transfer for brachial plexus injuries in human patients, we…”
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  12. 12

    Associative responses to visual shape stimuli in the mouse auditory cortex by Ogi, Manabu, Yamagishi, Tatsuya, Tsukano, Hiroaki, Nishio, Nana, Hishida, Ryuichi, Takahashi, Kuniyuki, Horii, Arata, Shibuki, Katsuei

    Published in PloS one (03-10-2019)
    “…Humans can recall various aspects of a characteristic sound as a whole when they see a visual shape stimulus that has been intimately associated with the…”
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  13. 13

    Dual compartments of the ventral division of the medial geniculate body projecting to the core region of the auditory cortex in C57BL/6 mice by Horie, Masao, Tsukano, Hiroaki, Hishida, Ryuichi, Takebayashi, Hirohide, Shibuki, Katsuei

    Published in Neuroscience research (01-08-2013)
    “…•MGv of mice is divided into medio lateral differentiated dual compartments.•The medial part of MGv projects to AAF, and the lateral part of MGv projects to…”
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  14. 14

    Independent tonotopy and thalamocortical projection patterns in two adjacent parts of the classical primary auditory cortex in mice by Tsukano, Hiroaki, Horie, Masao, Takahashi, Kuniyuki, Hishida, Ryuichi, Takebayashi, Hirohide, Shibuki, Katsuei

    Published in Neuroscience letters (10-01-2017)
    “…•The classical AI is divided into two tonotopic regions, the AI and DM.•In previous works, we did not determine the low frequency area in the DM.•Here, we…”
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  15. 15

    Reconsidering Tonotopic Maps in the Auditory Cortex and Lemniscal Auditory Thalamus in Mice by Tsukano, Hiroaki, Horie, Masao, Ohga, Shinpei, Takahashi, Kuniyuki, Kubota, Yamato, Hishida, Ryuichi, Takebayashi, Hirohide, Shibuki, Katsuei

    Published in Frontiers in neural circuits (28-02-2017)
    “…The auditory thalamus and auditory cortex (AC) are pivotal structures in the central auditory system. However, the thalamocortical mechanisms of processing…”
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  16. 16

    Visual Map Shifts based on Whisker-Guided Cues in the Young Mouse Visual Cortex by Yoshitake, Kohei, Tsukano, Hiroaki, Tohmi, Manavu, Komagata, Seiji, Hishida, Ryuichi, Yagi, Takeshi, Shibuki, Katsuei

    Published in Cell reports (Cambridge) (01-12-2013)
    “…Mice navigate nearby space using their vision and whiskers, and young mice learn to integrate these heterogeneous inputs in perceptual space. We found that…”
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  17. 17

    Molecular diversity of clustered protocadherin-α required for sensory integration and short-term memory in mice by Yamagishi, Tatsuya, Yoshitake, Kohei, Kamatani, Daiki, Watanabe, Kenji, Tsukano, Hiroaki, Hishida, Ryuichi, Takahashi, Kuniyuki, Takahashi, Sugata, Horii, Arata, Yagi, Takeshi, Shibuki, Katsuei

    Published in Scientific reports (25-06-2018)
    “…Clustered protocadherins (Pcdhs) are neuronal cell adhesion molecules characterized by homophilic adhesion between the tetramers of 58 distinct isoforms in…”
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  18. 18

    Auditory cortical areas activated by slow frequency-modulated sounds in mice by Honma, Yuusuke, Tsukano, Hiroaki, Horie, Masao, Ohshima, Shinsuke, Tohmi, Manavu, Kubota, Yamato, Takahashi, Kuniyuki, Hishida, Ryuichi, Takahashi, Sugata, Shibuki, Katsuei

    Published in PloS one (17-07-2013)
    “…Species-specific vocalizations in mice have frequency-modulated (FM) components slower than the lower limit of FM direction selectivity in the core region of…”
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  19. 19

    Transcranial flavoprotein fluorescence imaging of mouse cortical activity and plasticity by Tohmi, Manavu, Takahashi, Kuniyuki, Kubota, Yamato, Hishida, Ryuichi, Shibuki, Katsuei

    Published in Journal of neurochemistry (01-05-2009)
    “…Endogenous fluorescence signals derived from mitochondria reflect activity-dependent changes in brain metabolism and may be exploited in functional brain…”
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  20. 20

    Dynamic imaging of somatosensory cortical activity in the rat visualized by flavoprotein autofluorescence by Shibuki, Katsuei, Hishida, Ryuichi, Murakami, Hiroatsu, Kudoh, Masaharu, Kawaguchi, Tadashi, Watanabe, Masatoshi, Watanabe, Shunsuke, Kouuchi, Takeshi, Tanaka, Ryuichi

    Published in The Journal of physiology (15-06-2003)
    “…We used autofluorescence of mitochondrial flavoproteins to image cortical neural activity in the rat. Green autofluorescence in blue light was examined in…”
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