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Yuichi Riku

Showing results (61-70 of 78) with videos related to

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Brain Pathology (Zurich, Switzerland)|August 3, 2023
Neuropathological hallmarks in autopsied cases with mitochondrial diseases caused by the mitochondrial 3243A>G mutationHiroaki Miyahara, Chisato Tamai, Masanori Inoue, et al.
Annals of Clinical and Translational Neurology|October 22, 2020
The neural network basis of altered decision-making in patients with amyotrophic lateral sclerosisKazunori Imai, Michihito Masuda, Hirohisa Watanabe, et al.
Nature Communications|May 14, 2015
FUS regulates AMPA receptor function and FTLD/ALS-associated behaviour via GluA1 mRNA stabilizationTsuyoshi Udagawa, Yusuke Fujioka, Motoki Tanaka, et al.
Acta Neuropathologica Communications|May 2, 2023
NOTCH2NLC GGC repeat expansion causes retinal pathology with intranuclear inclusions throughout the retina and causes visual impairmentJun Sone, Shinji Ueno, Akio Akagi, et al.
Acta Neuropathologica Communications|August 29, 2020
Unclassified four-repeat tauopathy associated with familial parkinsonism and progressive respiratory failureMasayoshi Nakano, Yuichi Riku, Kenya Nishioka, et al.
Ebiomedicine|September 8, 2019
Semantic deficits in ALS related to right lingual/fusiform gyrus network involvementAya Ogura, Hirohisa Watanabe, Kazuya Kawabata, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 25, 2026
Neuronal TDP-43 regulates myelin formation via neurexin 1 mRNA stabilizationJiayi Li, Yohei Iguchi, Kenji Yoshida, et al.
Brain : a Journal of Neurology|August 10, 2020
Aberrant interaction between FUS and SFPQ in neurons in a wide range of FTLD spectrum diseasesShinsuke Ishigaki, Yuichi Riku, Yusuke Fujioka, et al.
Cell Reports|February 2, 2017
Altered Tau Isoform Ratio Caused by Loss of FUS and SFPQ Function Leads to FTLD-like PhenotypesShinsuke Ishigaki, Yusuke Fujioka, Yohei Okada, et al.
Frontiers in Aging Neuroscience|October 23, 2018
Involvement of the Precuneus/Posterior Cingulate Cortex Is Significant for the Development of Alzheimer's Disease: A PET (THK5351, PiB) and Resting fMRI StudyTakamasa Yokoi, Hirohisa Watanabe, Hiroshi Yamaguchi, et al.
Pageof 8

Showing results (61-70 of 78) with videos related to

Sort By:
Pageof 8
Brain Pathology (Zurich, Switzerland)|August 3, 2023
Neuropathological hallmarks in autopsied cases with mitochondrial diseases caused by the mitochondrial 3243A>G mutationHiroaki Miyahara, Chisato Tamai, Masanori Inoue, et al.
Annals of Clinical and Translational Neurology|October 22, 2020
The neural network basis of altered decision-making in patients with amyotrophic lateral sclerosisKazunori Imai, Michihito Masuda, Hirohisa Watanabe, et al.
Nature Communications|May 14, 2015
FUS regulates AMPA receptor function and FTLD/ALS-associated behaviour via GluA1 mRNA stabilizationTsuyoshi Udagawa, Yusuke Fujioka, Motoki Tanaka, et al.
Acta Neuropathologica Communications|May 2, 2023
NOTCH2NLC GGC repeat expansion causes retinal pathology with intranuclear inclusions throughout the retina and causes visual impairmentJun Sone, Shinji Ueno, Akio Akagi, et al.
Acta Neuropathologica Communications|August 29, 2020
Unclassified four-repeat tauopathy associated with familial parkinsonism and progressive respiratory failureMasayoshi Nakano, Yuichi Riku, Kenya Nishioka, et al.
Ebiomedicine|September 8, 2019
Semantic deficits in ALS related to right lingual/fusiform gyrus network involvementAya Ogura, Hirohisa Watanabe, Kazuya Kawabata, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 25, 2026
Neuronal TDP-43 regulates myelin formation via neurexin 1 mRNA stabilizationJiayi Li, Yohei Iguchi, Kenji Yoshida, et al.
Brain : a Journal of Neurology|August 10, 2020
Aberrant interaction between FUS and SFPQ in neurons in a wide range of FTLD spectrum diseasesShinsuke Ishigaki, Yuichi Riku, Yusuke Fujioka, et al.
Cell Reports|February 2, 2017
Altered Tau Isoform Ratio Caused by Loss of FUS and SFPQ Function Leads to FTLD-like PhenotypesShinsuke Ishigaki, Yusuke Fujioka, Yohei Okada, et al.
Frontiers in Aging Neuroscience|October 23, 2018
Involvement of the Precuneus/Posterior Cingulate Cortex Is Significant for the Development of Alzheimer's Disease: A PET (THK5351, PiB) and Resting fMRI StudyTakamasa Yokoi, Hirohisa Watanabe, Hiroshi Yamaguchi, et al.
Pageof 8