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Hidetake Hara,Hiroshi Muraishi,Hiroki Matsuzawa,Toshiyuki Inoue,Yasuo Nakajima,Hitoshi Satoh,Shinji Abe 한국물리학회 2015 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.67 No.1
We have recently developed a phantom that simulates acute ischemic stroke. We attempted to visualize an acute-stage cerebral infarction by using dual-energy Computed tomography (DECT) to obtain virtual monochromatic images of this phantom. Virtual monochromatic images were created by using DECT voltages from 40 to 100 keV in steps of 10 keV and from 60 to 80 keV in steps of 1 keV, under three conditions of the tube voltage with thin (Sn) filters. Calculation of the CNR values allowed us to evaluate the visualization of acute-stage cerebral infarction. The CNR value of a virtual monochromatic image was the highest at 68 keV under 80 kV / Sn 140 kV, at 72 keV under 100 kV / Sn 140 kV, and at 67 keV under 140 kV / 80 kV. The CNR values of virtual monochromatic images at voltages between 65 and 75 keV were significantly higher than those obtained for all other created images. Therefore, the optimal conditions for visualizing acute ischemic stroke were achievable.
Unstructured Information Management Projects at IBM Tokyo Research Laboratory
Takeda, Koichi,Watanabe, Hideo,Uramoto, Naohiko,Nomiyama, Hiroshi,Matsuzawa, Hirofumi,Nasukawa, Tetsuya,Nagano, Tohru,Murakami, Akiko,Takeuchi, Hironori,Kanayama, Hiroshi,Kobayashi, Mei,Aono, Masaki,I 한국정보처리학회 2004 정보처리학회지 Vol.11 No.2
Kim, Dong-Wook,Lee, Young-Choon,Matsuzawa, Hiroshi 東亞大學校附設遺傳工學硏究所 1998 遺傳工學硏究 Vol.- No.5
Aqualysin I is a subtilisin-type serine protease secreted into the medium by Thermus aquaticus YT-1. Thermus thermophilus cells harboring a plasmid for the aqualysin I precursor secreted pro-aqualysin I with the C-terminal pro-sequence into the culture medium, and the precursor was then processed to the mature enzyme during the cultivation. However, the extracellular levels of aqualysin I in T.thermophuilus cells harboring plasmids for deletion mutants as to the C-terminal pro-sequence were about 10-20% in comparison with the level of wild-type. Only the mature enzyme could be detected in the medium, while pro-aqualysin I with the C-terminal pro-sequence could not. These results suggest that the C-terminal pro-sequence of aqualysin I plays an important role in the extracellular secretion of aqualysin I.