Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Sho Murata"'
Autor:
Shun Takeuchi, Hideaki Goto, Rinako Motoyoshi, Yasuhiro Kumahara, Takashi Nakata, Sho Murata, Tomoru Yamanaka, Yoshiya Iwasa, Shoichiro Uchiyama
Publikováno v:
Journal of Disaster Research. 14:894-902
Record-breaking heavy rainfall in July 2018 caused an extremely large number of slope movements over a broad area of western Japan. We mapped the distribution of slope movements in the southern part of Hiroshima Prefecture through an interpretation o
Autor:
Murata, Sho, Tachibana, Yasuhiko, Murata, Katsutoshi, Kamagata, Koji, Hori, Masaaki, Andica, Christina, Suzuki, Michimasa, Wada, Akihiko, Kumamaru, Kanako, Hagiwara, Akifumi, Irie, Ryusuke, Sato, Shuji, Hamasaki, Nozomi, Fukunaga, Issei, Hoshito, Haruyoshi, Aoki, Shigeki, Sho, Murata, Yasuhiko, Tachibana
Publikováno v:
Japanese Journal of Radiology. 37(8):579-589
Image contrast differs between conventional multislice turbo spin echo (conventional TSE) and multiband turbo spin echo (SMS-TSE). Difference in time interval between excitations for adjacent slices (SETI) might cause this difference. This study aime
Publikováno v:
Social Studies Education in East Asian Contexts
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::a16b3c6e09a147998eac27e4ecc3cc50
https://doi.org/10.4324/9780429053313-7
https://doi.org/10.4324/9780429053313-7
Autor:
Yuta Yagi, Yasuo Uchida, Katsuaki Ito, Kazuki Sato, Masanori Tachikawa, Sho Murata, Takashi Suzuki, Pierre Olivier Couraud, Tetsuya Terasaki, T. Yamakawa, Tomohito Sumiya, Alice Stephan, Sumio Ohtsuki
Publikováno v:
Molecular Neurobiology. 56:2039-2056
It is important to understand the molecular mechanisms of barrier disruption in the central nervous system (CNS) of patients with multiple sclerosis (MS). The purpose of the present study was to clarify whether claudin-11 is involved in the disruptio
Publikováno v:
Journal of Biotechnology. 160:222-228
In the present study, we used proteomic research technology to develop a method for the screening and evaluation of material-binding peptides for protein immobilization. Using this screening method, soluble Escherichia coli proteins that preferential
Autor:
Hideaki Goto, Yasuhiro Kumahara, Shoichiro Uchiyama, Yoshiya Iwasa, Tomoru Yamanaka, Rinako Motoyoshi, Shun Takeuchi, Sho Murata, Takashi Nakata
Publikováno v:
Journal of Disaster Research; Sep2019, Vol. 14 Issue 6, p894-902, 9p
Autor:
Tetsuya Terasaki, Yuki Katsukura, Miho Funaki, Sho Murata, Masanori Tachikawa, Shingo Ito, Sumio Ohtsuki, Hiroya Suzuki
Publikováno v:
Journal of Alzheimer's disease : JAD. 38(1)
Cerebral clearance of amyloid-β peptide (Aβ), which is implicated in Alzheimer's disease, involves elimination across the blood-brain barrier (BBB), and we previously showed that an insulin-sensitive process is involved in the case of Aβ1-40. The
Publikováno v:
Fluids and Barriers of the CNS, Vol 8, Iss 1, p 20 (2011)
Fluids and Barriers of the CNS
Fluids and Barriers of the CNS
Background Cerebrovascular dysfunction has been considered to cause impairment of cerebral amyloid-β peptide (Aβ) clearance across the blood-brain barrier (BBB). Further, low levels of vitamin D are associated with increased risk of Alzheimer's dis
Autor:
Masayoshi Tasaki, Yu Su, Yuko Tanabe, Hirofumi Jono, Konen Obayashi, Yohei Misumi, Yukio Ando, Sho Murata, Satoru Shinriki, Sho Ochiai, Xuguo Sun, Makoto Shono, Mitsuharu Ueda
Publikováno v:
Biochemical and biophysical research communications. 400(4)
Recent studies clearly demonstrated that several types of pathogenic amyloid proteins acted as agents that could transmit amyloidosis by means of a prion-like mechanism. Systemic AA amyloidosis is one of the most severe complications of chronic infla
Autor:
Sho Murata, Miho Funaki, Shingo Ito, Akihiko Sugino, Sumio Ohtsuki, Yusuke Koitabashi, Yuki Katsukura, Tetsuya Terasaki
Publikováno v:
Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism. 31(2)
Cerebral atrial natriuretic peptide (ANP), which is generated in the brain, has functions in the regulation of brain water and electrolyte balance, blood pressure and local cerebral blood flow, as well as in neuroendocrine functions. However, cerebra