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Michiko Shigyo

Showing results (1-10 of 11) with videos related to

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Scientific Reports|June 22, 2016
Extracellular vimentin is a novel axonal growth facilitator for functional recovery in spinal cord-injured miceMichiko Shigyo, Chihiro Tohda
BMC Research Notes|June 4, 2014
New reliable scoring system, Toyama mouse score, to evaluate locomotor function following spinal cord injury in miceMichiko Shigyo, Norio Tanabe, Tomoharu Kuboyama, et al.
Scientific Reports|July 15, 2015
Extracellular vimentin interacts with insulin-like growth factor 1 receptor to promote axonal growthMichiko Shigyo, Tomoharu Kuboyama, Yusuke Sawai, et al.
British Journal of Pharmacology|September 18, 2012
A novel compound, denosomin, ameliorates spinal cord injury via axonal growth associated with astrocyte-secreted vimentinKiyoshi Teshigawara, Tomoharu Kuboyama, Michiko Shigyo, et al.
Experimental Neurology|December 19, 2017
Roles of Cdc42 and Rac in Bergmann glia during cerebellar corticogenesisIsao Sakamoto, Takehiko Ueyama, Masakazu Hayashibe, et al.
Phytotherapy Research : PTR|October 28, 2014
Comparing the effects of kamikihito in Japan and kami-guibi-tang in Korea on memory enhancement: working towards the development of a global studyHidetoshi Watari, Michiko Shigyo, Norio Tanabe, et al.
The Journal of Biological Chemistry|December 13, 2016
A Novel Rac1-GSPT1 Signaling Pathway Controls Astrogliosis Following Central Nervous System InjuryTaiji Ishii, Takehiko Ueyama, Michiko Shigyo, et al.
Cell Transplantation|March 24, 2023
Derivation of Sendai-Virus-Reprogrammed Human iPSCs-Neuronal Precursors: <i>In Vitro</i> and <i>In Vivo</i> Post-grafting Safety CharacterizationMichiko Shigyo, Yoshiomi Kobayashi, Oleksandr Platoshyn, et al.
Cell Transplantation|April 24, 2023
Expandable Sendai-Virus-Reprogrammed Human iPSC-Neuronal Precursors: <i>In Vivo</i> Post-Grafting Safety Characterization in Rats and Adult PigYoshiomi Kobayashi, Michiko Shigyo, Oleksandr Platoshyn, et al.
Nano Letters|August 2, 2019
Selective Formation of Porous Pt Nanorods for Highly Electrochemically Efficient Neural Electrode InterfacesMehran Ganji, Angelique C Paulk, Jimmy C Yang, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Scientific Reports|June 22, 2016
Extracellular vimentin is a novel axonal growth facilitator for functional recovery in spinal cord-injured miceMichiko Shigyo, Chihiro Tohda
BMC Research Notes|June 4, 2014
New reliable scoring system, Toyama mouse score, to evaluate locomotor function following spinal cord injury in miceMichiko Shigyo, Norio Tanabe, Tomoharu Kuboyama, et al.
Scientific Reports|July 15, 2015
Extracellular vimentin interacts with insulin-like growth factor 1 receptor to promote axonal growthMichiko Shigyo, Tomoharu Kuboyama, Yusuke Sawai, et al.
British Journal of Pharmacology|September 18, 2012
A novel compound, denosomin, ameliorates spinal cord injury via axonal growth associated with astrocyte-secreted vimentinKiyoshi Teshigawara, Tomoharu Kuboyama, Michiko Shigyo, et al.
Experimental Neurology|December 19, 2017
Roles of Cdc42 and Rac in Bergmann glia during cerebellar corticogenesisIsao Sakamoto, Takehiko Ueyama, Masakazu Hayashibe, et al.
Phytotherapy Research : PTR|October 28, 2014
Comparing the effects of kamikihito in Japan and kami-guibi-tang in Korea on memory enhancement: working towards the development of a global studyHidetoshi Watari, Michiko Shigyo, Norio Tanabe, et al.
The Journal of Biological Chemistry|December 13, 2016
A Novel Rac1-GSPT1 Signaling Pathway Controls Astrogliosis Following Central Nervous System InjuryTaiji Ishii, Takehiko Ueyama, Michiko Shigyo, et al.
Cell Transplantation|March 24, 2023
Derivation of Sendai-Virus-Reprogrammed Human iPSCs-Neuronal Precursors: <i>In Vitro</i> and <i>In Vivo</i> Post-grafting Safety CharacterizationMichiko Shigyo, Yoshiomi Kobayashi, Oleksandr Platoshyn, et al.
Cell Transplantation|April 24, 2023
Expandable Sendai-Virus-Reprogrammed Human iPSC-Neuronal Precursors: <i>In Vivo</i> Post-Grafting Safety Characterization in Rats and Adult PigYoshiomi Kobayashi, Michiko Shigyo, Oleksandr Platoshyn, et al.
Nano Letters|August 2, 2019
Selective Formation of Porous Pt Nanorods for Highly Electrochemically Efficient Neural Electrode InterfacesMehran Ganji, Angelique C Paulk, Jimmy C Yang, et al.
Pageof 2