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Otemachi(大手町) Sequential Urban Redevelopment Project
Itoh, Toshio Land and Housing Institute 2017 LHI journal of land, housing, and urban affairs Vol.8 No.2
Otemachi(大手町) is the region where it plays a pivotal role in Japanese economy as representative head offices of companies including financial insurance, general trading, information and communication newspaper media are concentrated. However, regenerating the entire region from worn-out infrastructures of buildings and city into the fresh and vibrant foothold in international business was the problem to be solved. In this situation, <Sequential Urban Redevelopment Project> was examined on the basis of administrative agencies and relevant enterprises to reconstruct office buildings in phases without ceasing business functions and activities by utilizing the large-scale vacant land occurred from the relocation of the national public institutions. The independent administrative institution 'Urban Renaissance Agency(UR)' has completed the examination of industrialization and participation request for the commencement of the project. In this article, The overview of <Otemachi Sequential Urban Redevelopment Project>, the new form of project promoted and cooperated by officials and people, is introduced by UR (Urban Renaissance Agency) reorganizing the land exchange and infrastructure through the land readjustment project, and at the same time, procuring capital and building office buildings in solidarity with private development enterprises and financial institutions.
Won, Young Suk,Vandamme, Peter,Yoon, Jung Hoon,Park, Yong Ho,Hyun, Byung Hwa,Kim, Hyoung Chin,Itoh, Toshio,Tanioka, Yoshikuni,Choi, Yang Kyu Oxford University Press 2007 FEMS microbiology letters Vol.271 No.2
<P>A slowly growing microaerophilic Helicobacter species was isolated from the feces of the common marmoset (Callithrix jacchus). This bacterium possessed a pair of nonsheathed bipolar flagella, was positive for oxidase, catalase and alkaline phosphatase activities, but was negative for gamma-glutamyltranspeptidase and urease activity and for nitrate reduction. The bacterium was susceptible to nalidixic acid and resistant to cephalotine and did not hydrolyze hippurate. On the basis of phenotypic characteristics, 16S rRNA gene sequence analysis and whole-cell protein profiles, the isolate represents a new species of the genus Helicobacter, for which the name Helicobacter callitrichis sp. nov. is proposed; the type strain of the new species is R-204(T) (GenBank accession number AY192526).</P>