• 제목/요약/키워드: Array chip

검색결과 533건 처리시간 0.024초

전기화학적 방법에 의한 바이오칩의 SNP 검출 (SNP Detection of Biochip Using Electrochemical System)

  • 최용성;박대희
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 C
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    • pp.2128-2130
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    • 2004
  • High throughput analysis using a DNA chip microarray is powerful tool in the post genome era. Less labor-intensive and lower cost-performance is required. Thus, this paper aims to develop the multi-channel type label-free DNA chip and detect SNP (Single nucleotide polymorphisms). At first, we fabricated a high integrated type DNA chip array by lithography technology. Various probe DNAs were immobilized on the microelectrode array. We succeeded to discriminate of DNA hybridization between target DNA and mismatched DNA on microarray after immobilization of a various probe DNA and hybridization of label-free target DNA on the electrodes simultaneously. This method is based on redox of an electrochemical ligand.

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MLP분류법을 적용한 가스분류기능의 칩 설계 및 응용 (Chip design and application of gas classification function using MLP classification method)

  • 장으뜸;서용수;정완영
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 하계종합학술대회 논문집(2)
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    • pp.309-312
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    • 2001
  • A primitive gas classification system which can classify limited species of gas was designed and simulated. The 'electronic nose' consists of an array of 4 metal oxide gas sensors with different selectivity patterns, signal collecting unit and a signal pattern recognition and decision Part in PLD(programmable logic device) chip. Sensor array consists of four commercial, tin oxide based, semiconductor type gas sensors. BP(back propagation) neutral networks with MLP(Multilayer Perceptron) structure was designed and implemented on CPLD of fifty thousand gate level chip by VHDL language for processing the input signals from 4 gas sensors and qualification of gases in air. The network contained four input units, one hidden layer with 4 neurons and output with 4 regular neurons. The 'electronic nose' system was successfully classified 4 kinds of industrial gases in computer simulation.

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Hardware Implementation of a Neural Network Controller with an MCU and an FPGA for Nonlinear Systems

  • Kim Sung-Su;Jung Seul
    • International Journal of Control, Automation, and Systems
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    • 제4권5호
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    • pp.567-574
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    • 2006
  • This paper presents the hardware implementation of a neural network controller for a nonlinear system with a micro-controller unit (MCU) and a field programmable gate array (FPGA) chip. As an on-line learning algorithm of a neural network, the reference compensation technique has been implemented on an MCU, while PID controllers with other functions such as counters and PWM generators are implemented on an FPGA chip. Interface between an MCU and a field programmable gate array (FPGA) chip has been developed to complete hardware implementation of a neural controller. The developed neural control hardware has been tested for balancing the inverted pendulum while controlling a desired trajectory of a cart as a nonlinear system.

미소전극어레이형 DNA칩을 이용한 유전자다형의 전기화학적 검출 (Electrochemical Detection of Single Nucleotide Polymorphism (SNP) Using Microelectrode Array on a DNA Chip)

  • 최용성;권영수;박대희
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제53권5호
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    • pp.286-292
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    • 2004
  • In this study, an integrated microelectrode array was fabricated on glass slide using microfabrication technology. Probe DNAs consisting of mercaptohexyl moiety at their 5-end were spotted on the gold electrode using micropipette or DNA arrayer utilizing the affinity between gold and sulfur. Cyclic voltammetry in 5mM ferricyanide/ferrocyanide solution at 100 ㎷/s confirmed the immobilization of probe DNA on the gold electrodes. When several DNAs were detected electrochemically, there was a difference between target DNA and control DNA in the anodic peak current values. It was derived from specific binding of Hoechst 33258 to the double stranded DNA due to hybridization of target DNA. It suggested that this DNA chip could recognize the sequence specific genes. It suggested that multichannel electrochemical DNA microarray is useful to develop a portable device for clinical gene diagnostic System.

Hoechst 33258 Groove Binder를 이용한 DNA칩 (Genome Detection Using Hoechst 33258 Groove Binder)

  • 최용성;이경섭
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 하계학술대회 논문집 Vol.7
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    • pp.372-373
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    • 2006
  • In this paper, a DNA chip with a microelectrode array was fabricated using microfabrication technology. Several probe DNAs consisting of mercaptohexyl moiety at their 5 end were immobilized on the gold electrodes by DNA arrayer. Then target DNAs were hybridized and reacted with Hoechst 33258, which is a DNA minor groove binder and electrochemically active dye. Linear sweep voltammetry or cyclic voltammetry showed a difference between target DNA and control DNA in the anodic peak current values. It was derived from Hoechst 33258 concentrated at the electrode surface through association with formed hybrid. It suggested that this DNA chip could recognize the sequence specific genes.

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퍼지적분을 이용한 단백질패턴에 관한 특징추출 (Feature Extraction for Protein Pattern Using Fuzzy Integral)

  • 송영준;권혁봉;김미혜
    • 한국콘텐츠학회논문지
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    • 제7권1호
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    • pp.40-47
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    • 2007
  • 단백질 매크로 어레이 영상에서 단백질 칩 각각의 특징을 규명하는 것은 중요한 것이다. 사람의 시각에 의한 판단은 많은 단백질 칩 영상을 실험할 경우, 장시간의 관찰과 그로 인한 오류가 발생할 수 있다. 따라서 시뮬레이터를 통한 특성 파악이 필요하게 되고, 매크로 어레이 스캔 영상에 대해 특성 분석을 할 경우 효율을 극대화할 수 있다. 형광 스캔 영상에 있어서, 각 셀의 반응도는 컬러 영상의 R, G, B 분포에 의존하여 왔다. 그러나 중첩되는 영상의 경우는 한쪽으로 구분하여 분류하기가 어렵다. 본 논문은 이러한 단점을 극복하기 위해 사용자가 원하는 색상에 대한 퍼지 측도 값을 적용한 퍼지 적분 값으로서 단백질 칩의 반응색상을 구분 지었다. Scan Array 5000에 의해 구성된 매크로 어레이 형광 영상들에 대해 실험한 결과, 퍼지 적분을 사용한 제안 방법이 모호한 색상에 대해 결정을 내릴 수 있는 요소가 됨을 보여 주었다.

자기력에 의한 단백질칩 (Protein Chip Using Magnetic Force)

  • 최용성;문종대;이경섭
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 하계학술대회 논문집 Vol.7
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    • pp.386-387
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    • 2006
  • This research describes a new constructing method of multifunctional biosensor using many kinds of biomaterials. A metal particle and an array was fabricated by photolithographic. Biomaterials were immobilized on the metal particle. The array and the particles were mixed in a buffer solution, and were arranged by magnetic force interaction and self-assembly. A quarter of total Ni dots were covered by the particles. The binding direction of the particles was controllable, and condition of particles was almost with Au surface on top. The particles were successfully arranged on the array. The biomaterial activities were detected by chemiluminescence and electrochemical methods.

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A Disposable BioChip for Single Cell Manipulation

  • Yoon, Euisik
    • 한국반도체및디스플레이장비학회:학술대회논문집
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    • 한국반도체및디스플레이장비학회 2004년도 International Symposium
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    • pp.1-15
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    • 2004
  • o Various microfluidic components including mixromixers and micropumps have been developed for disposable biochip applications. o Single cell capturing, positioning and nanoliter drug injection chip has been demostrated. o Multi-channel, two-dimensional micro-well array has been fabricated and cell capturing and specific reagent injection have been performed.

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Lateral Flow Membrane를 이용한 인유두종 바이러스 DNA Array의 개발 (Development of Human Papillomavirus DNA Array by Using Lateral Flow Membrane Assay)

  • 김기황;이형구;조홍범
    • 미생물학회지
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    • 제44권4호
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    • pp.346-351
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    • 2008
  • 본 연구에서는 임신진단등의 간편 현장진단(point of care test, POCT)에 주로 사용되고 있는 멤브레인 측면흐름 분석기법을 사용하여 인유두종 바이러스(Human papillomavirus, HPV)의 특정 서열을 검출할 수 있는 DNA array를 개발하였다. HPV type 6, 11, 16, 18, 31, 45에 특이적인 DNA 탐침들을 측면흐름 분석용 멤브레인 표면에 고정하고, biotin이 label된 MY09/11 primer를 사용하여 얻어진 HPV PCR 반응 결과물과 탐침 사이에 hybridization 반응을 유도하였다. 이후 streptavidin이 label된 colloidal gold가 교잡물의 biotin과 반응함으로써 DNA hybridization 결과를 육안으로 확인할 수 있었다. 본 연구를 통해 개발된 HPV DNA lateral flow membrane array는 기존의 HPV DNA chip 기법과 비교하여 경제적이고 편리하게 주요 HPV type을 확인할 수 있음을 보여주었다.

집적형 DNA칩 미소 전극 어레이 및 비수식화 표적 DNA를 이용한 유전자 검출 (Genome Detection Using an Integrated type DNA Chip Microelectrode-array and Non-labeling Target DNA)

  • 최용성;이혜연;전중유행;전중수화;권영수;천합지이
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 추계학술대회 논문집 전기물성,응용부문
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    • pp.274-276
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    • 2001
  • This research aims to develop the multiple channel electrochemical DNA chip using microfabrication technology. At first, we fabricated a high integration type DNA chip array by lithography technology. Several probe DNAs consisting of thiol group at their 5-end were immobilized on the sold electrodes. Then target DNAs were hybridized and reacted. Cyclic voltammetry showed a difference between target DNA and control DNA in the anodic peak current values. Therefore, it is able to detect a plural genes electrochemically after immobilization of a plural probe DNA and hybridization of non-labeling target DNA on the electrodes simultaneously. It suggested that this DNA chip could recognize the sequence specific genes.

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