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유상근,이창규,이현정,김성혜,김용운,Yoo, S.K.,Lee, C.K.,Lee, H.J.,Kim, S.H.,Kim, Y.W. 한국전자통신연구원 2021 전자통신동향분석 Vol.36 No.5
A rapidly spreading unidentified type of pneumonia was initially reported in China in December 2019. On March 11, 2020, the World Health Organization declared the coronavirus disease 2019 (COVID-19) a global pandemic. The world is making efforts to overcome COVID-19 using the experience of each country. From the beginning, Korea has been relatively successful in managing COVID-19 according to the "3T principle," that is, test-trace-treat. To share these experiences with the international community, in June 2020, Korea launched 18 projects in an attempt to standardize the COVID-19 response technology. This paper introduces the standardization trend of Korea's response to COVID-19.
H-Y 항체에 의한 토끼배의 성조절에 관한 연구 1 . 배의 발달과 형광 발현에 의한 자 웅 수정란의 분리
이창규(C . K . Lee),정구민(K . M . Chung),김수헌(S . H . Kim),임경순(K . S . Im) 한국축산학회 1990 한국축산학회지 Vol.32 No.7
Antisera to histocompatibility (H-Y) antigen were used to immunologically presume the sex of rabbit embryos. H-Y antisera were prepared in inbred SD female rat by repeated immunization of spleen cells from males of same strain. The titre of H-Y antibody in antiserum was examined by mouse sperm cytotoxicity and biological tests. Experiments applied delaying ability of development of embryos in H-Y antiserum and binding ability of FITC labelled second antibody. After culture, embryos were observed their morphological characteristics under phase contrast microscope and detected fluorescence on embryos under fluorescence microscope. After detection of fluorescence, embryos were transfered to normal medium and observed their morphological characteristics. 1. When rabbit morula were treated with H-Y antiserum only, the rate of developed and delayed embryos was 47.2 and 52.8% respectively, and the rate of non-fluorescing and fluorescing embryos was 51.4 and 48.6%, respectively. 2. When rabbit morula were cultured in H-Y antiserum followed by complement, the rate of non-fluorescing and fluorescing embryos was 53.6 and 46.4%. respectively. 3. After detection of fluorescence, the embryos were cultured in normal medium. When embryos were treated with H-Y antiserum only, the rate of arrested and developed embryos was 20.8 and 79.2% respectively. However, when embryos were treated with H-Y antiserum followed by complement, the rate of arrested and developed embryos was 42.9 and 57.1% respectively.
Equivalent Pre- Xenon-Oscillation Method for Core Transient Simulation
송재승,이창규,이정찬,유춘성,김용래,Song, J.S.,Lee, C.K.,Lee, C.C.,Yoo, C.S.,Kim, Y.R. Korean Nuclear Society 1995 Nuclear Engineering and Technology Vol.27 No.6
노심 천 이 현상의 모사계산을 위해서는 노심상태 의 초기조건을 실제노심과 일치시켜야 하는데 특히, 제논동특성이 관심의 대상이 되는 천이현상에 있어서는 직접적인 추정이 불가능한 노심내 제논분포의 초기상태가 천이현상의 해석결과에 커다란 영향을 미치게 된다 초기상태의 노심이 정확히 제논 평형상태에 있지 않는 경우 노심의 시간에 따른 변화를 잘 예측하기 위해서는 비평형 제논분포를 모사하는 초기화가 필수적이다. 본 연구에서는 천이현상 이전에 관측된 비평형 제논진동을 등가 제논진동으로 모사하여 천이현상을 보다 정확히 예측할 수 있는 제논 초기화 기법을 개발하였으며 영광 3, 4호기 시운전 시험에서 입수된 실측자료를 통하여 그 적용성을 입증 하였다. The initial condition of a core transient should be consistent with real core state for the simulation of the core tansient. The initial xenon distribution, which can not be measured in the core, has a significant effect on the transient with xenon dynamics. In the simulation of the transient starting from non-equilibrium xenon state, the accurate initialization of the non-equilibrium xenon distribution is essential for the prediction of the core transient behavior. In this study, a xenon initialization method to predict the core transient more accurately was developed through the equivalent pre-xenon-oscillation which represents the tenon oscillation before the transient and verified by the application of the simulation for a startup test of Yonggwang Unit 3.
Al 분말의 수화 반응과 스파크 플라즈마 열처리법으로 제조된 알루미나 성형체 연구
엄영랑,이민구,이창규,Uhm Y. R.,Lee M. K.,Rhee C. K. 한국분말야금학회 2005 한국분말재료학회지 (KPMI) Vol.12 No.6
The $Al_2O_3$ with various phases were prepared by simple ex-situ hydrolysis and spark plasma sintering (SPS) process of Al powder. The nano bayerite $(\beta-Al(OH)_3)$ phase was derived by hydrolysis of commercial powder of Al with micrometer size, whereas the bohemite (AlO(OH)) phase was obtained by hydrolysis of nano Al powder synthesized by pulsed wire evaporation (PWE) method. Compaction as well as dehydration of both nano bayerite and bohemite was carried out simultaneously by SPS method, which is used to fabricate dense powder compacts with a rapid heating rate of $100^{\circ}C$ per min. under the pressure of 50MPa. After compaction treatment in the temperature ranges from $100^{\circ}C\;to\; 1100^{\circ}C$, the bayerite and bohemite phases change into various alumina phases depending on the compaction temperatures. The bayerite shows phase transition of $Al(OH)_3{\to}{\eta}-Al_2O_3{\to}{\theta}-Al_2O_3{\to}\alpha-Al_2O_3$ sequences. On the other hand, the bohemite experiences the phase transition from AlO(OH) to ${\gamma}-Al_2O_3\;at\;350^{\circ}C.$ It shows AlO(OH) ${\gamma}-Al_2O_3{\to}{\delta}-Al_2O_3{\to}{\alpha}-Al_2O_3$ sequences. The ${\gamma}-Al_2O_3$ compacted at $550^{\circ}C$ shows a high surface area $(138m^2/g)$.
이승관 ( S K Lee ),이창규 ( C K Lee ),류정록 ( J R Ryu ),검석수 ( S Su Kim ),김상섭 ( S S Kim ),김창영 ( J Y Kim ),장철수 ( Chou I Soo Chang ) 대한임상검사과학회 1993 대한임상검사과학회지(KJCLS) Vol.25 No.1
Calcium exists in serum in three forms, as the free ion and as complexes with proteins and with smaller molecules; of these, the ionized species is the one that in physiologically active. For this reason some investigators tried to find the most convenient method for estimating calcium IOns. In this study, we compared three measurements (Zeisler, Mario and Hanna method) for inoized calcium to our Nova 7 method. Patient comparison results for ISE(x) compared to the other three methods. (y) are : Zeisler=0.579x+0.944, r=0.394, n=50;Mario =0.435x+l.469, r=0.216, n=50;Hanna=O. 905x+0.749, r=0.479, n=50. In conclusion, all performance characteristics of the nomogram method evaluated in this study were found to be incompatible to the Nova 7 method for serum ionized calcium analySIS.