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Hiroki R Ueda

Showing results (51-60 of 163) with videos related to

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Proceedings of the National Academy of Sciences of the United States of America|March 18, 2022
The 103,200-arm acceleration dataset in the UK Biobank revealed a landscape of human sleep phenotypesMachiko Katori, Shoi Shi, Koji L Ode, et al.
Iscience|March 3, 2025
A design principle for neuronal firing with up-down oscillation through Na<sup>+</sup> dynamicsTomohide R Sato, Koji L Ode, Fukuaki L Kinoshita, et al.
Annual Review of Cell and Developmental Biology|June 15, 2016
Chemical Principles in Tissue Clearing and Staining Protocols for Whole-Body Cell ProfilingKazuki Tainaka, Akihiro Kuno, Shimpei I Kubota, et al.
Plos Biology|June 12, 2025
A unified framework to model synaptic dynamics during the sleep-wake cycleFukuaki L Kinoshita, Rikuhiro G Yamada, Koji L Ode, et al.
The Journal of Antibiotics|February 6, 2009
JBIR-26, a novel natural compound from Streptomyces sp. AK-AH76, regulates mammalian circadian clockMiho Izumikawa, Hideki Ukai, Motoki Takagi, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|April 30, 2013
FASTER: an unsupervised fully automated sleep staging method for miceGenshiro A Sunagawa, Hiroyoshi Séi, Shigeki Shimba, et al.
BMC Research Notes|October 5, 2020
Rapid and easy-to-use ES cell manipulation device with a small groove near culturing wellsShun-Ichi Funano, Daisuke Tone, Hideki Ukai, et al.
STAR Protocols|December 30, 2020
Protocol for Imaging and Analysis of Mouse Tumor Models with CUBIC Tissue ClearingKei Takahashi, Shimpei I Kubota, Shogo Ehata, et al.
Synthetic and Systems Biotechnology|June 15, 2018
Cell-free synthesis of stable isotope-labeled internal standards for targeted quantitative proteomicsRyohei Narumi, Keiko Masuda, Takeshi Tomonaga, et al.
The Journal of Biological Chemistry|February 21, 2002
Genome-wide transcriptional orchestration of circadian rhythms in DrosophilaHiroki R Ueda, Akira Matsumoto, Miho Kawamura, et al.
Pageof 17

Showing results (51-60 of 163) with videos related to

Sort By:
Pageof 17
Proceedings of the National Academy of Sciences of the United States of America|March 18, 2022
The 103,200-arm acceleration dataset in the UK Biobank revealed a landscape of human sleep phenotypesMachiko Katori, Shoi Shi, Koji L Ode, et al.
Iscience|March 3, 2025
A design principle for neuronal firing with up-down oscillation through Na<sup>+</sup> dynamicsTomohide R Sato, Koji L Ode, Fukuaki L Kinoshita, et al.
Annual Review of Cell and Developmental Biology|June 15, 2016
Chemical Principles in Tissue Clearing and Staining Protocols for Whole-Body Cell ProfilingKazuki Tainaka, Akihiro Kuno, Shimpei I Kubota, et al.
Plos Biology|June 12, 2025
A unified framework to model synaptic dynamics during the sleep-wake cycleFukuaki L Kinoshita, Rikuhiro G Yamada, Koji L Ode, et al.
The Journal of Antibiotics|February 6, 2009
JBIR-26, a novel natural compound from Streptomyces sp. AK-AH76, regulates mammalian circadian clockMiho Izumikawa, Hideki Ukai, Motoki Takagi, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|April 30, 2013
FASTER: an unsupervised fully automated sleep staging method for miceGenshiro A Sunagawa, Hiroyoshi Séi, Shigeki Shimba, et al.
BMC Research Notes|October 5, 2020
Rapid and easy-to-use ES cell manipulation device with a small groove near culturing wellsShun-Ichi Funano, Daisuke Tone, Hideki Ukai, et al.
STAR Protocols|December 30, 2020
Protocol for Imaging and Analysis of Mouse Tumor Models with CUBIC Tissue ClearingKei Takahashi, Shimpei I Kubota, Shogo Ehata, et al.
Synthetic and Systems Biotechnology|June 15, 2018
Cell-free synthesis of stable isotope-labeled internal standards for targeted quantitative proteomicsRyohei Narumi, Keiko Masuda, Takeshi Tomonaga, et al.
The Journal of Biological Chemistry|February 21, 2002
Genome-wide transcriptional orchestration of circadian rhythms in DrosophilaHiroki R Ueda, Akira Matsumoto, Miho Kawamura, et al.
Pageof 17