TY - GEN
T1 - Medical radiograph of nano-magnetic fluid used by spring-8 synchrotron radiation X-ray
AU - Makino, Ken Ichi
AU - Nakano, Masahiro
AU - Matsuura, Hiroyuki
AU - Koide, Kazuharu
AU - Noda, Nobuo
AU - Ju, Dong Ying
AU - Bian, Pei
AU - Kumazawa, Takashi
AU - Akutsu, Mitsuo
AU - Masuyama, Kazunori
AU - Uozumi, Yusuke
AU - Tonohata, Nobuhito
AU - Kimura, Shinzo
AU - Kondoh, Takeshi
PY - 2008
Y1 - 2008
N2 - Nano Drug Delivery System (nano-DDS) is a new medical technology. We studied medical use used by about 7 [nm] ferromagnetic fluids. We searched good energy condition offerrofluid contrast medium radiograph image used by SPring-8 synchrotron radiation X-ray. As results, in case of low photon energy 15.0 [KeV] (λ = 0.8 Å). We showedferrofluid in Acryl amid gel and taro leaf and mugwort. #1. We found Low photon energy could show vascular tissue and ferrofluid distribution respectively. In case of medium photon energy 20.0 [KeV] (λ = 0.6 Å). We observed ferrofluid in rat ear lobe and rat stomach and rat foot. #2. We found medium photon energy could see several organizations by changing exposure. In case of high photon energy 25.0 [KeV] (λ = 0.5 Å). We showed ferrofluid in chicken egg and pork. #3. We found high proton energy was suitable for observing ferrofluid distribution in plain organization, but was not suitable for observing ferrofluid distribution in complicate organization.
AB - Nano Drug Delivery System (nano-DDS) is a new medical technology. We studied medical use used by about 7 [nm] ferromagnetic fluids. We searched good energy condition offerrofluid contrast medium radiograph image used by SPring-8 synchrotron radiation X-ray. As results, in case of low photon energy 15.0 [KeV] (λ = 0.8 Å). We showedferrofluid in Acryl amid gel and taro leaf and mugwort. #1. We found Low photon energy could show vascular tissue and ferrofluid distribution respectively. In case of medium photon energy 20.0 [KeV] (λ = 0.6 Å). We observed ferrofluid in rat ear lobe and rat stomach and rat foot. #2. We found medium photon energy could see several organizations by changing exposure. In case of high photon energy 25.0 [KeV] (λ = 0.5 Å). We showed ferrofluid in chicken egg and pork. #3. We found high proton energy was suitable for observing ferrofluid distribution in plain organization, but was not suitable for observing ferrofluid distribution in complicate organization.
UR - http://www.scopus.com/inward/record.url?scp=52649128314&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=52649128314&partnerID=8YFLogxK
U2 - 10.1109/ICICIC.2008.353
DO - 10.1109/ICICIC.2008.353
M3 - Conference contribution
AN - SCOPUS:52649128314
SN - 9780769531618
T3 - 3rd International Conference on Innovative Computing Information and Control, ICICIC'08
BT - 3rd International Conference on Innovative Computing Information and Control, ICICIC'08
T2 - 3rd International Conference on Innovative Computing Information and Control, ICICIC'08
Y2 - 18 June 2008 through 20 June 2008
ER -