• 제목/요약/키워드: Go-sung

검색결과 961건 처리시간 0.028초

Gene Expression Profile and Its Interpretation in Squamous Cell Lung Cancer

  • Park, Dong-Yoon;Kim, Jung-Min;Kim, Ja-Eun;Yoo, Chang-Hyuk;Lee, Han-Yong;Song, Ji-Young;Hwang, Sang-Joon;Yoo, Jae-Cheal;Kim, Sung-Han;Park, Jong-Ho;Yoon, Jeong-Ho
    • Molecular & Cellular Toxicology
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    • 제2권4호
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    • pp.273-278
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    • 2006
  • 95 squamous cell lung carcinoma samples (normal tissue: 40 samples, tumor: 55 samples) were analyzed with 8 K cDNA microarray. 1-way ANOVA test was employed to select differentially expressed genes in tumor with FDR<0.01. Among the selected 1,655 genes, final 212 genes were chosen according to the expression fold change and used for following analysis. The expression of up-regulated 64 genes was verified with Reverse Transcription PCR and 10 genes were identified as candidates for SCC markers. In our opinion, those candidates can be exploited as diagnostic or therapeutic purposes. Gene Ontology (GO) based analysis was performed using those 212 genes, and following categories were revealed as significant biological processes: Immune response (GO: 0006955), antigen processing (GO: 0030333), inflammatory response (GO: 0006954), Cell adhesion (GO: 0007155), and Epidermis differentiation (GO: 0008544). Gene set enrichment analysis (GSEA) also carried out on overall gene expression profile with 522 functional gene sets. Glycolysis, cell cycle, K-ras and amino acid biosynthesis related gene sets were most distinguished. These results are consistent with the known characteristics of SCC and may be interconnected to rapid cell proliferation. However, the unexpected results from ERK activation in squamous cell carcinoma gripped our attention, and further studies are under progress.

고에너지 전고체 전해질을 위한 나노스케일 이종구조 계면 특성 (Nanoscale Characterization of a Heterostructure Interface Properties for High-Energy All-Solid-State Electrolytes )

  • 황성원
    • 반도체디스플레이기술학회지
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    • 제22권1호
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    • pp.28-32
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    • 2023
  • Recently, the use of stable lithium nanostructures as substrates and electrodes for secondary batteries can be a fundamental alternative to the development of next-generation system semiconductor devices. However, lithium structures pose safety concerns by severely limiting battery life due to the growth of Li dendrites during rapid charge/discharge cycles. Also, enabling long cyclability of high-voltage oxide cathodes is a persistent challenge for all-solid-state batteries, largely because of their poor interfacial stabilities against oxide solid electrolytes. For the development of next-generation system semiconductor devices, solid electrolyte nanostructures, which are used in high-density micro-energy storage devices and avoid the instability of liquid electrolytes, can be promising alternatives for next-generation batteries. Nevertheless, poor lithium ion conductivity and structural defects at room temperature have been pointed out as limitations. In this study, a low-dimensional Graphene Oxide (GO) structure was applied to demonstrate stable operation characteristics based on Li+ ion conductivity and excellent electrochemical performance. The low-dimensional structure of GO-based solid electrolytes can provide an important strategy for stable scalable solid-state power system semiconductor applications at room temperature. The device using uncoated bare NCA delivers a low capacity of 89 mA h g-1, while the cell using GO-coated NCA delivers a high capacity of 158 mA h g−1 and a low polarization. A full Li GO-based device was fabricated to demonstrate the practicality of the modified Li structure using the Li-GO heterointerface. This study promises that the lowdimensional structure of Li-GO can be an effective approach for the stabilization of solid-state power system semiconductor architectures.

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LabVIEW를 이용한 디지털 시뮬레이터 (Digital Simulator using LabVIEW)

  • 박철원;김장휘;이종주;신명철
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2005년도 제36회 하계학술대회 논문집 A
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    • pp.286-288
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    • 2005
  • This paper proposes a digital simulator using NI DAQ Device and GO s/w by LabVIEW for IED of power transformer protection. The performance of the digital simulator has been verified through WatATP 99 simulation data.

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석창포(石菖蒲) 전탕액(煎湯液)이 Glucose Oxidase에 의해 손상(損傷)된 대뇌피질(大腦皮質) 신경세포(神經細胞)에 미치는 영향(影響) (Effects of Acori Rhizoma water extract on the Cerebral Cortex Neuron injured by Glucose Oxidase)

  • 최공한;박승택;류도곤;최민호;허진영;강성도;고정수;양상철;성은경;조남수;이춘우;서의석;류영수
    • 동의생리학회지
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    • 제14권2호통권20호
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    • pp.117-126
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    • 1999
  • The purpose of this study is to examine the toxic effects caused by Glucose Oxidase(GO) and the effects of herbal extracts such as Acori Rhizoma(AR) on the treatment of the toxic effects. For this purpose, experiments with the cultured cell from the cerebrums of new born mice were done. The results of these experiments were as follows. 1. GO, a oxygen radical, decreased the survival rate of the cultured cells on NR assay and MTT assay. 2. GO, a oxygen radical, decreased the amount of neurofilaments and total protein. 3. AR have efficacy of increasing the amount of neurofilament. 4. AR have efficacy of increasing the amount of total protein. From the above results, It is concluded that AR has marked efficacy as a treatment for the damages caused in the GO-mediated oxidative process. And AR is thought to have certain pharmacological effects on controlling over aging. Further clinical study of this pharmacological effects of AR should be complemented.

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환원된 그래핀 산화물을 보호 층으로 적용한 4H-SiC 표면 거칠기 향상 연구 (Improvement of 4H-SiC surface morphology using r-GO as a capping layer)

  • 성민제;김성준;김홍기;강민재;이남석;신훈규
    • 전기전자학회논문지
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    • 제22권4호
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    • pp.1226-1229
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    • 2018
  • 본 연구에서는 이온주입 된 4H-탄화규소(SiC) 에피 층 위에 환원된 그래핀 산화물 (r-GO)을 보호 층으로 적용하여 고온 열처리 공정 중 발생하는 표면 거칠기 악화를 개선하였다. 실험에 사용 된 4H-SiC 에피 층은 $4^{\circ}$ off-axis n-형 4H-SiC 기판 위에 $10{\mu}m$ 두께로 성장되었다. $n^+$-형 4H-SiC 층을 제공하기 위해 $1.73{\times}10^{15}cm^{-2}$ 농도의 질소를 고온 고에너지 이온주입 공정으로 주입하였고, 보호 층으로 사용한 r-GO는 스프레이 코팅 방식으로 4H-SiC 층 위에 형성하였다. r-GO를 보호 층으로 적용 한 결과, 적용하지 않은 시료에 비해 고온 열처리 후 표면 거칠기 (RMS)가 10배 개선되었으며, 전기적 측정으로 추출한 누설 전류를 통해 표면 거칠기 개선으로 표면 상태가 완화되었음을 확인하였다.

리튬 이온 전지용 음극으로서의 Si@C/rGO의 합성 (Si@C/rGO Composite Anode Material for Lithium Ion Batteries)

  • 김채현;김성훈;안욱
    • 전기화학회지
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    • 제27권2호
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    • pp.73-79
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    • 2024
  • 화석 연료의 사용이 증가함에 따라 이산화탄소와 같은 온실 가스의 배출량이 함께 증가하며 발생하는 환경 문제의 해결을 위해 이차전지와 같은 친환경 에너지 저장 기술이 주목받고 있다. 리튬 이온 전지의 중대형 전지를 제작하기 위해서는 고용량과 고효율 뿐만 아니라 우수한 안정성을 지니는 배터리의 전극 소재의 개발이 필수적이다. 이를 위해 고분자의 합성을 토대로 고용량을 얻을 수 있는 실리콘과 합성한 후 reduced Graphene Oxide (rGO)를 첨가하여 전극 활 물질을 제조해 물리적 특성과 전기화학적 성능을 분석하였다. 제조한 전극은 실리콘에 고분자를 탄화시켜 코팅하고 기계적 강도와 높은 안정성을 보이는 rGO를 첨가해 실리콘에 탄소를 코팅하는 Si@C 복합체에 비해 개선된 용량과 향상된 안정성을 보이는 것을 확인했다.

Sliding Mode Control 기법을 이용한 SRM 속도 제어 (SRM Speed Control using Sliding Mode Control)

  • 임종빈;임승빈;이성구;고성철;이주
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.176-178
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    • 2006
  • This paper is intended to research the speed response of switched reluctance motor (SRM) using sliding mode control method when load is changing. The simulation compare only control by PI controller with control by PI controller and sliding mode controller. It compare with speed response using MATLAB/SIMULINK.

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