Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Natsumi Yamamoto"'
Autor:
Chiho Suzuki-Minakuchi1,2 csmina@g.ecc.u-tokyo.ac.jp, Natsumi Yamamoto1, Saki Takahira1, Masataka Yamaguchi3, Yutaro Takeda1, Kazunori Okada1, Shinsuke Shigeto3, Hideaki Nojiri1,2 anojiri@g.ecc.u-tokyo.ac.jp
Publikováno v:
Applied & Environmental Microbiology. Feb2024, Vol. 90 Issue 2, p1-17. 17p.
Publikováno v:
熊本大学教育実践研究. 35(増刊号):27-34
Autor:
Natsumi YAMAMOTO, Yasutomo UETUJI
Publikováno v:
The Proceedings of Mechanical Engineering Congress, Japan. 2021:J045-05
Autor:
Natsumi Yamamoto, Hiraku Onishi, Yoshiyuki Hattori, Yuki Yoshiike, Takuto Kikuchi, Kei-ichi Ozaki
Publikováno v:
Journal of Drug Delivery Science and Technology. 35:40-49
Previously, we developed a novel small interfering RNA (siRNA) transfer method for the liver by sequential intravenous injection of an anionic polymer and cationic liposome/siRNA complex (cationic lipoplex). In this study, we examined the effects of
Autor:
Ikuo Mizuuchi, Natsumi Yamamoto
Publikováno v:
RO-MAN
User preferences for robots differ according to the robot shape and how it moves. This paper proposes a method for generating motions that will be pleasing to a user of a modular robot that can be configured arbitrarily. We propose a preference estim
Autor:
Tatsuya Ito, Tomas Kozak, Tadashi Asaoka, Shohei Ogata, Natsumi Yamamoto, Yuya Tsuneoka, Ikuo Mizuuchi, Takatoshi Hondo
Publikováno v:
Humanoids
We have developed a whole-body elastic humanoid named "Baneoid," which has seventeen joints including thirteen series elastic joints. This paper presents the aims of the humanoid, describes the design concept, and shows a preliminary experiment of it
Publikováno v:
Journal of Cell Science. 119:4623-4633
Here we address the molecular mechanism of serum-independent survival and growth of human bladder carcinoma cell line 5637. Serum starvation promoted tyrosine phosphorylation of a 145-kDa protein and activation of the tyrosine kinase Src and the rece
Publikováno v:
Journal of the Korean Physical Society. 63:296-298
We report ab initio calculations of atom substitute in the graphene and atomic adsorption on the graphene with the defect. We calculated local stable structure, the bond energy and magnetic moment when N, Al, Ga and In atom are adsorbed to the point