Zobrazeno 1 - 10
of 28
pro vyhledávání: '"Kiichi Kaminaga"'
Autor:
Hisanori Fukunaga, Kiichi Kaminaga, Takuya Sato, Karl T. Butterworth, Ritsuko Watanabe, Noriko Usami, Takehiko Ogawa, Akinari Yokoya, Kevin M. Prise
Publikováno v:
Scientific Reports, Vol 9, Iss 1, Pp 1-10 (2019)
Abstract Microbeam radiotherapy (MRT) is based on a spatial fractionation of synchrotron X-ray microbeams at the microscale level. Although the tissue-sparing effect (TSE) in response to non-uniform radiation fields was recognized more than one centu
Externí odkaz:
https://doaj.org/article/4359fc8125a84c17ae1d481fc0cd10d4
Autor:
Hisanori Fukunaga, Kiichi Kaminaga, Eri Hirose, Ritsuko Watanabe, Noriko Usami, Kevin M. Prise, Akinari Yokoya
Publikováno v:
International Journal of Molecular Sciences, Vol 22, Iss 23, p 12785 (2021)
The non-targeted effects of radiation have been known to induce significant alternations in cell survival. Although the effects might govern the progression of tumor sites following advanced radiotherapy, the impacts on the intercellular control of t
Externí odkaz:
https://doaj.org/article/79af8e2f8f544416b6b3f55355b14cb4
Publikováno v:
Nanomaterials, Vol 10, Iss 11, p 2282 (2020)
Fluorescent nanodiamonds containing nitrogen-vacancy centers have attracted attention as nanoprobes for temperature measurements in microenvironments, potentially enabling the measurement of intracellular temperature distributions and temporal change
Externí odkaz:
https://doaj.org/article/9a2d519b46ec40f89b2f2f84c6082f49
Publikováno v:
RADIOISOTOPES. 71:35-40
Autor:
Takeshi Ohshima, Tatsuhiko Imaoka, Takuma Sugi, Hiroshi Abe, Wataru Kada, Osamu Hanaizumi, Hiroki Yamamoto, Shizuko Kakinuma, Ryuji Igarashi, Akihiro Kuwahata, Kiichi Kaminaga, Masaki Sekino, Tamami Yanagi, Michiyo Suzuki
Publikováno v:
ACS Nano. 15:12869-12879
Fluorescence imaging is a critical tool to understand the spatial distribution of biomacromolecules in cells andiin vivo/i, providing information on molecular dynamics and interactions. Numerous valuable insights into biological systems have been pro
Autor:
Yanagi, Tamami, Kaminaga, Kiichi, Suzuki, Michiyo, Abe, Hiroshi, Yamamoto, Hiroki, Ohshima, Takeshi, Kuwahata, Akihiro, Sekino, Masaki, Imaoka, Tatsuhiko, Kakinuma, Shizuko, Sugi, Takuma, Kada, Wataru, Hanaizumi, Osamu, Igarashi, Ryuji, Tamami, Yanagi, Kiichi, Kaminaga, Michiyo, Suzuki, Hiroshi, Abe, Hiroki, Yamamoto, Takeshi, Ohshima, Tatsuhiko, Imaoka, Shizuko, Kakinuma, Wataru, Kada, Ryuji, Igarashi
Publikováno v:
ACS Nano. 15(8):12869-12879
Fluorescence imaging is a critical tool to understand the spatial distribution of biomacromolecules in cells and in vivo, providing information on molecular dynamics and interactions. Numerous valuable insights into biological systems have been provi
Autor:
Kiichi Kaminaga, Masahiro Shirakawa, Takuya Genjo, Takamitsu Morioka, Hiromi Yanagihara, Hiroshi Abe, Shizuko Kakinuma, Takeshi Ohshima, Ryuji Igarashi
Publikováno v:
Biomaterials Science. 9:7049-7053
We constructed a highly sensitive fluorescence wide-field imaging system with a microwave source, implanted fluorescent diamond microparticles ("microdiamonds") subcutaneously into the dorsal skin of a mouse after sacrifice, and demonstrated the feas
Autor:
Fukunaga, Hisanori, Kaminaga, Kiichi, Sato, Takuya, T. Butterworth, Karl, Yokoya, Ritsuko, Watanabe, Ritsuko, Usami, Noriko, Ogawa, Takehiko, Yokoya, Akinari, M. Prise, Kevin, Kiichi, Kaminaga, Ritsuko, Yokoya, Akinari, Yokoya
Publikováno v:
Radiation Research. 194(6):698-706
Spatially fractionated radiation therapy (SFRT) has been based on the delivery of a single high-dose fraction to a large treatment area that has been divided into several smaller fields, reducing the overall toxicity and adverse effects. Complementar
Autor:
Kaminaga, Kiichi, Hamada, Ryo, Usami, Noriko, Suzuki, Keiji, Yokoya, Akinari, Kiichi, Kaminaga, Ryo, Hamada, Akinari, Yokoya
Publikováno v:
Radiation Research. 194(5):511-518
Several studies have demonstrated that mitochondria are critically involved in the pleiotropic manifestation of radiation effects. While conventional whole-cell irradiation compromises the function of mitochondria, the effects of subcellular targeted
エンドサイトーシスを利用した従来の導入法では、ナノダイヤモンドがエンドソームにトラップされ、目的の箇所まで到達できないことが問題となっている。そこで本研究では、膜融合
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=jairo_______::a391983dcefdc6d315413ba21a2089b8
https://repo.qst.go.jp/records/84623
https://repo.qst.go.jp/records/84623