Updated on 2026/08/25

写真a

 
KAMEYAMA Katsuro
 
Organization
Academic Assembly Institute of Medicine and Dentistry - Assistant Professor
Graduate School of Medicine, Dentistry and Health Sciences Assistant Professor
Title
Assistant Professor
External link

Degree

  • 博士(医学) ( 2006.1   大阪大学 )

Research Areas

  • Life Science / Neuroscience-general

Research History (researchmap)

  • Niigata University   Assistant Professor

    2026.4

      More details

  • Tottori University   Assistant Professor

    2008.4 - 2026.3

      More details

  • 理化学研究所   研究員

    2007.4 - 2008.3

      More details

  • 科学技術振興事業団   研究員

    2003.4 - 2007.3

      More details

Research History

  • Niigata University   Institute of Medicine and Dentistry, Academic Assembly   Assistant Professor

    2026.4

  • Niigata University   Graduate School of Medical and Dental Sciences   Assistant Professor

    2026.4

Professional Memberships

 

Papers

  • Layer specific regulation of critical period timing and maturation of mouse visual cortex by endocannabinoids Reviewed

    Taisuke Yoneda, Katsuro Kameyama, Takahiro Gotou, Keiko Terata, Masahiro Takagi, Yumiko Yoshimura, Kenji Sakimura, Masanobu Kano, Yoshio Hata

    iScience   27 ( 6 )   110145 - 110145   2024.6

     More details

    Authorship:Lead author   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.isci.2024.110145

    researchmap

  • Dark rearing promotes the recovery of visual cortical responses but not the morphology of geniculocortical axons in amblyopic cat. Reviewed International journal

    Gotou T, Kameyama K, Kobayashi A, Okamura K, Ando T, Terata K, Yamada C, Ohta H, Morizane A, Hata Y

    Frontiers in Neural Circuits   15   637638 - 637638   2021.4

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    Monocular deprivation (MD) of vision during early postnatal life induces amblyopia, and most neurons in the primary visual cortex lose their responses to the closed eye. Anatomically, the somata of neurons in the closed-eye recipient layer of the lateral geniculate nucleus (LGN) shrink and their axons projecting to the visual cortex retract. Although it has been difficult to restore visual acuity after maturation, recent studies in rodents and cats showed that a period of exposure to complete darkness could promote recovery from amblyopia induced by prior MD. However, in cats, which have an organization of central visual pathways similar to humans, the effect of dark rearing only improves monocular vision and does not restore binocular depth perception. To determine whether dark rearing can completely restore the visual pathway, we examined its effect on the three major concomitants of MD in individual visual neurons, eye preference of visual cortical neurons and soma size and axon morphology of LGN neurons. Dark rearing improved the recovery of visual cortical responses to the closed eye compared with the recovery under binocular conditions. However, geniculocortical axons serving the closed eye remained retracted after dark rearing, whereas reopening the closed eye restored the soma size of LGN neurons. These results indicate that dark rearing incompletely restores the visual pathway, and thus exerts a limited restorative effect on visual function.

    DOI: 10.3389/fncir.2021.637638

    PubMed

    researchmap

  • The influence of illumination color on the subjective visual recognition of biological specimens. Reviewed

    Kameyama K, Ohbayashi T, Uehara K, Koga A, Hata Y

    Yonago Acta Medica   63 ( 4 )   266 - 271   2020.11

     More details

    Authorship:Lead author   Publishing type:Research paper (scientific journal)   Publisher:Tottori University Faculty of Medicine  

    DOI: 10.33160/yam.2020.11.004

    researchmap

  • Distribution of the cannabinoid type 1 receptor and ocular dominance plasticity in the primary visual cortex.

    Kameyama K, Yoneda T, Hata Y

    Adaptation Biology and Medicine   8   327 - 336   2017

     More details

    Authorship:Lead author   Language:English  

    researchmap

  • Latent TGF-beta binding protein-2 is essential for the development of ciliary zonule microfibrils Reviewed

    Tadashi Inoue, Tetsuya Ohbayashi, Yusuke Fujikawa, Hideyuki Yoshida, Tomoya O. Akama, Kazuo Noda, Masahito Horiguchi, Katsuro Kameyama, Yoshio Hata, Kanji Takahashi, Kenji Kusumoto, Tomoyuki Nakamura

    HUMAN MOLECULAR GENETICS   23 ( 21 )   5672 - 5682   2014.11

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1093/hmg/ddu283

    Web of Science

    researchmap

  • Developmental and visual input-dependent regulation of the CB1 cannabinoid receptor in the mouse visual cortex. Reviewed International journal

    Yoneda T, Kameyama K, Esumi K, Daimyo Y, Watanabe M, Hata Y

    PLoS One   8 ( 1 )   e53082   2013

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    The mammalian visual system exhibits significant experience-induced plasticity in the early postnatal period. While physiological studies have revealed the contribution of the CB1 cannabinoid receptor (CB1) to developmental plasticity in the primary visual cortex (V1), it remains unknown whether the expression and localization of CB1 is regulated during development or by visual experience. To explore a possible role of the endocannabinoid system in visual cortical plasticity, we examined the expression of CB1 in the visual cortex of mice. We found intense CB1 immunoreactivity in layers II/III and VI. CB1 mainly localized at vesicular GABA transporter-positive inhibitory nerve terminals. The amount of CB1 protein increased throughout development, and the specific laminar pattern of CB1 appeared at P20 and remained until adulthood. Dark rearing from birth to P30 decreased the amount of CB1 protein in V1 and altered the synaptic localization of CB1 in the deep layer. Dark rearing until P50, however, did not influence the expression of CB1. Brief monocular deprivation for 2 days upregulated the localization of CB1 at inhibitory nerve terminals in the deep layer. Taken together, the expression and the localization of CB1 are developmentally regulated, and both parameters are influenced by visual experience.

    DOI: 10.1371/journal.pone.0053082

    PubMed

    researchmap

  • Difference in binocularity and ocular dominance plasticity between GABAergic and excitatory cortical neurons. Reviewed International journal

    Kameyama K, Sohya K, Ebina T, Fukuda A, Yanagawa Y, Tsumoto T

    The Journal of Neuroscience   30 ( 4 )   1551 - 1559   2010

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    Neuronal circuits in the cerebral cortex consist mainly of glutamatergic/excitatory and GABAergic/inhibitory neurons. In the visual cortex, the binocular responsiveness of neurons is modified by monocular visual deprivation during the critical period of postnatal development. Although GABAergic neurons are considered to play a key role in the expression of the critical period, it is not known whether their binocular responsiveness and ocular dominance plasticity are different from those of excitatory neurons. Recently, the end of the critical period was found to be not strict so that cortical neurons in the adult still have some ocular dominance plasticity. It is not known, however, which type of neurons or both maintain such plasticity in adulthood. To address these issues, we applied in vivo two-photon functional Ca(2+) imaging to transgenic mice whose GABAergic neurons express a yellow fluorescent protein called Venus. We found that GABAergic neurons are more binocular than excitatory neurons in the normal visual cortex, and both types of neurons show the same degree of modifiability to monocular visual deprivation during the critical period, but the modifiability of GABAergic neurons is stronger than that of excitatory neurons after the end of the critical period.

    DOI: 10.1523/JNEUROSCI.5025-09.2010

    PubMed

    researchmap

  • GABAergic neurons are less selective to stimulus orientation than excitatory neurons in layer II/III of visual cortex, as revealed by in vivo functional Ca2+ imaging in transgenic mice Reviewed

    Sohya K, Kameyama K, Yanagawa Y, Obata K, Tsumoto T

    The Journal of Neuroscience   27 ( 8 )   2145 - 2149   2007.2

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1523/JNEUROSCI.4641-06.2007

    Web of Science

    researchmap

  • Recovery of binocular responses after brief monocular deprivation in kittens Reviewed

    Kameyama K, Hata Y, Tsumoto T

    NeuroReport   16 ( 13 )   1447 - 1450   2005.9

     More details

    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    Web of Science

    researchmap

  • Neural networks handling sequential patterns Reviewed

    Yamasaki T, Kataoka Y, Kameyama K, Nakano K

    Information Sciences   159 ( 3-4 )   141 - 154   2004.2

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1016/j.ins.2003.02.001

    Web of Science

    researchmap

  • Activity-dependent changes in the protein level of brain-derived neurotrophic factor but no change in other neurotrophins in the visual cortex of young and adult ferrets. Reviewed

    Ichisaka S, Katoh-Semba R, Hata Y, Ohshima M, Kameyama K, Tsumoto T

    Neuroscience   117   361 - 371   2003

     More details

    Language:English  

    researchmap

  • Chronic electrical stimulation of afferents from one eye changes ocular dominance of visual cortical neurons in kittens Reviewed

    Ohshima M, Hata Y, Ichisaka S, Wakita M, Fukuda M, Kameyama K, Tsumoto T

    Journal of Neurophysiology   88 ( 4 )   2147 - 2151   2002.10

     More details

    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1152/jn.00300.2002

    Web of Science

    researchmap

  • 発達脳視覚野へのBDNF投与による外側膝状体ニューロンの軸索形態への影響

    大島 稔, 畠 義郎, 一坂 吏志, 亀山 克朗, 津本 忠治

    神経化学   40 ( 2-3 )   320 - 320   2001.9

     More details

    Language:Japanese   Publisher:(一社)日本神経化学会  

    researchmap

▶ display all

Books

  • 小児の弱視と視機能発達

    亀山克朗, 畠義郎, (三木淳司、荒木俊介 編)(弱視の研究)

    三輪書店  2020.9 

     More details

MISC

  • ニューロトロフィン受容体抑制による発達期視覚野眼優位可塑性の阻害

    蒋敏海, 亀山克朗, 一坂吏志, 畠義郎, 津本忠治

    日本神経科学大会プログラム・抄録集   25th   2002

  • 発達脳視覚野へのBDNF投与による外側膝状体ニューロンの軸索形態への影響

    大島稔, 畠義郎, 一坂吏史, 亀山克朗, 津本忠治

    日本神経科学大会プログラム・抄録集   24th   2001

Research Projects

  • 弱視をモデルとした神経回路可塑性の活性化による神経発達障害の治療法開発

    Grant number:24K14273

    2024.4 - 2027.3

    System name:科学研究費助成事業

    Research category:基盤研究(C)

    Awarding organization:日本学術振興会

    畠 義郎, 亀山 克朗

      More details

    Grant amount:\4550000 ( Direct Cost: \3500000 、 Indirect Cost:\1050000 )

    researchmap

  • 希少難病「網膜色素変性」の失明患者に対する光電変換色素薄膜型人工網膜OUReP植込み手術の探索的医師主導治験

    Grant number:24ek0109726s0001

    2024.4 - 2027.3

    System name:難治性疾患実用化研究事業

    Awarding organization:AMED(国立研究開発法人日本医療研究開発機構)

    松尾 俊彦, 内田 哲也, 櫻井 淳, 石金 浩史, 畠 義郎, 亀山 克朗

      More details

  • 内因性カンナビノイドによる脳発達の臨界期制御メカニズム

    2018 - 2021

    System name:科学研究費補助金(基盤研究(C))

    Awarding organization:文部科学省

    畠 義郎

      More details

    Grant type:Competitive

    researchmap

  • 片眼摘出による対称なレチノトピー形成メカニズムの解明

    2013 - 2015

    System name:科学研究費補助金(若手研究(B))

    Awarding organization:文部科学省

    亀山 克朗

      More details

    Authorship:Principal investigator  Grant type:Competitive

    researchmap

  • RNA干渉の応用による視覚野可塑性への神経栄養因子関与機序の解明

    2007 - 2008

    System name:科学研究費補助金(基盤研究(B))

    Awarding organization:文部科学省

    津本 忠治

      More details

    Grant type:Competitive

    researchmap

  • 大脳におけるコラム構造の形成機構 研究課題

    2001 - 2002

    System name:科学研究費補助金(特別研究員奨励費)

    Awarding organization:文部科学省

    亀山 克朗

      More details

    Authorship:Principal investigator  Grant type:Competitive

    researchmap

▶ display all