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Nishioka, Motomu,Nishiuma, Hajime,Miyake, Masato,Asada, Yasuo,Shimizu, Kazuyuki,Taya, Masahito The Korean Society for Biotechnology and Bioengine 2002 Biotechnology and Bioprocess Engineering Vol.7 No.5
To understand the utilization property of light energy, Synechococcus sp. MA19, a poly-${\beta}$-hydroxybutyrate (PHB) producer, was cultivated at the different incident light intensities of 15.3, 50.0 and 78.2 W/$m^2$ using media with and without phosphate. From the results of metabolic flux analysis, it was found that the cell yield based on ATP synthesis was estimated as $3.5{\times}10^{-3}$ kg-biomass/mol-ATP in these cultures. Under the examined conditions, there were no significant differences in the efficiency of light energy conversion to chemical energies estimated as ATP synthesis and reducing potential (NADH + NADPH) formation whether the PHB synthesis took place or not. The energy converted from light to ATP was kept relatively high around the energy absorbed by the cells of $2.5-3.0{\times}10^{6} J\;h^{-1}\;kg^{-1}$, whereas the energy of reducing potential was hardly changed in the examined range of the energy absorbed by the cells.
Lightpath Management System for IP-over-CWDM Networks with ROADMs
Raja Zahilah,Soichiro Nishiuma,Tomoyuki Taira,Satoshi Kawase,Osanori Koyama,Yutaka Katsuyama 한국멀티미디어학회 2009 한국멀티미디어학회 국제학술대회 Vol.2009 No.-
A lightpath management system has been designed and implemented for IP-over-CWDM networks with ROADMs. The system can search possible lightpaths made by ROADMs with specified switch states. The function is based on an equivalent graph method proposed for representing the ROADMs, and can output lightpaths in the network together with the total loss values. The system functions enable the network administrators to manage the lightpath reconfigurations effectively without errors by avoiding making unlinked lightpaths through routes with higher losses to connect nodes, before the reconfiguration.
Masahito Taya,Motomu Nishioka,Hajime Nishiuma,Masato Miyake,Yasuo Asada,Kazuyuki Shimizu 한국생물공학회 2002 Biotechnology and Bioprocess Engineering Vol.7 No.5
To understand the utilization property of light energy, Synechococcus sp. MA19, a poly-b-hydroxybutyrate (PHB) producer, was cultivated at the different incident light intensities of 15.3, 50.0 and 78.2 W/m2 using media with and without phosphate. From the results of metabolic flux analysis, it was found that the cell yield based on ATP synthesis was estimated as 3.5×10-3 kg-biomass/mol-ATP in these cultures. Under the examined conditions, there were no significant differences in the efficiency of light energy conversion to chemical energies estimated as ATP synthesis and reducing potential (NADH + NADPH) formation whether the PHB synthesis took place or not. The energy converted from light to ATP was kept relatively high around the energy absorbed by the cells of 2.5-3.0 x 106 J h-1 kg-1, whereas the energy of reducing potential was hardly changed in the examined range of the energy absorbed by the cells.