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Kobayashi, Kensuke*; Yasue, Ayumu*; Morooka, Satoshi; Kanematsu, Manabu*
Konkurito Kogaku Nenji Rombunshu (DVD-ROM), 44(1), p.208 - 213, 2022/07
no abstracts in English
Hua, Y.*; Narumi, Issei; Gao, G.*; Tian, B.*; Sato, Katsuya; Kitayama, Shigeru; Shen, B.*
Biochemical and Biophysical Research Communications, 306(2), p.354 - 360, 2003/06
Times Cited Count:152 Percentile:95.76(Biochemistry & Molecular Biology)We have identified a unique deinococcal gene, , as a general switch for downstream DNA repair and protection pathways, from a natural mutant, in which is disrupted by a transposon. Complete functional disruption of the gene in wild-type leads to dramatic sensitivity to ionizing radiation. Radioresistance of the disruptant could be fully restored by complementation with . In response to radiation stress, PprI can significantly and specifically induce the gene expression of and and enhance the enzyme activities of catalases. These results strongly suggest that PprI plays a crucial role in regulating multiple DNA repair and protection pathways in response to radiation stress.
*; Matsunaga, Takeshi; Amano, Hikaru
JAERI-Research 96-002, 78 Pages, 1996/02
no abstracts in English
Ugolini; Yoshikawa, Shinji; Ozawa, Kenji
PNC TN9410 95-253, 13 Pages, 1995/10
This report presents the implementation of the a model reference adaptive control system based on the artificial neural network technique (MRAC) in a fast breeder reactor (FBR) building block type (BBT) simulator representing the Monju prototype reactor. The purpose of this report is to improve the control of the outlet steam temperature of the three evaporators of the Monju prototype reactor. The connection between the MRAC system and the BBT simulator is achieved through an external shared memory accessible by both systems. The MRAC system calculates the demand for the position of the feedwater valve replacing the signal of a PID controller collocated inside the heat transport system model of the Monju prototype reactor. Two series of simulation tests havc been performed, one with one loop connected to the MRAC system (leaving the remaining two connected to the original PID controller), and the other with three loops connected to the MRAC system. In both simulation tests the MRAC system performed better than the PID controller, keeping the outlet steam temperature of the evaporators closer to the required set point value through all the transients.
; ; ; Isozaki, Tokuju;
PNC TN8450 93-004, 144 Pages, 1993/06
Generally speaking, two kinds of water plumes which have different temperature, salinity and so on are not easily mixturred and have special boundary. So, it is possible to predict ocurrence of special boundary of sea water from observation of temperature, salinity of sea water. Not only marine environmental monitoring such as radioactivity analysis of sea water, sea-bed sediment, marine products but also observation of water current, water direction, surface and ventical observation of water temperature, salinity and so on in Tokai coastal area are carried out with some observation instruments by Environmental Protection Section, Tokai Works, PNC. The results of vertical observation from 1990 to 1991 are recorded in this report.
Amano, Hikaru; C.T.Garten-Jr.*
Fusion Technology, 21, p.700 - 705, 1992/03
no abstracts in English
Horita, M.*; Furuichi, Mitsuaki*; Ito, K.*; Sudo, Ken*
PNC TJ7449 91-001VOL1, 406 Pages, 1991/05
no abstracts in English
Obara, Kenjiro; Nakamura, Kazuyuki; Murakami, Yoshio; *; *
Shinku, 31(5), p.342 - 346, 1988/05
no abstracts in English
*; *; ; ; ; *; *; *
Eisei Kagaku, 15(4), p.238 - 243, 1969/00
no abstracts in English
Fujiwara, Satoru; Matsuo, Tatsuhito; Yamada, Takeshi*; Shibata, Kaoru
no journal, ,
no abstracts in English
Wakiyama, Yoshifumi*; Manome, Ryo*; Onda, Yuichi*; Yoshimura, Kazuya
no journal, ,
大澤 崇人
not registered
【課題】多関節ロボットによって電動ピペットをハンドリングさせて、分注などの化学操作を行わせることが可能となるピペットシステムを提供する。 【解決手段】本発明に係るピペットシステムは、チップCが着脱される先端部を有し、装着されたチップCに対して液体を吸入すると共に、吸入した液体を排出する分注機構170と、先端部に装着されたチップを取り外すチップ取り外し機構270と、前記分注機構170を駆動する第1ステッピングモーター130と、前記チップ取り外し機構270を駆動する第2ステッピングモーター230と、前記第1ステッピングモーター130及び前記第2ステッピングモーター230に対して、それぞれ電気接続がなされる雌コネクタ220と、からなる電動ピペット100を含むことを特徴とする。