• Title/Summary/Keyword: 미세유체 시스템

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Enhancement of DNA Microarray Hybridization using Microfluidic Biochip (미세유체 바이오칩을 이용한 DNA 마이크로어레이 Hybridization 향상)

  • Lee, H.H.;Kim, Y.S.
    • KSBB Journal
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    • v.22 no.6
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    • pp.387-392
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    • 2007
  • Recently, microfluidic biochips for DNA microarray are providing a number of advantages such as, reduction in reagent volume, high-throughput parallel sample screening, automation of processing, and reduction in hybridization time. Particularly, the enhancement of target probe hybridization by decrease of hybridization time is an important aspect highlighting the advantage of microfluidic DNA microarray platform. Fundamental issues to overcome extremely slow diffusion-limited hybridization are based on physical, electrical or fluidic dynamical mixing technology. So far, there have been some reports on the enhancement of the hybridization with the microfluidic platforms. In this review, their principle, performance, and outreaching of the technology are overviewed and discussed for the implementation into many bio-applications.

Integrated microfluidic device with polymer-based micropump and microvalve for $\mu$-TAS devices (마이크로 펌프, 밸브가 집적된 폴리머 기반의 미세 유체제어 시스템의 기계적 특성 강화)

  • Ra, Gyu-Sik;Jha, Sandeep Kumar;Yoon, Tae-Sik;Lee, Hyun-Ho;Kim, Yong-Sang
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1458-1459
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    • 2008
  • 미세 유체 제어 시스템 (마이크로 펌프, 마이크로 밸브, 마이크로 채널, 마이크로 믹서 등)의 집적은 화학 및 바이오 유체를 제어하는 Lab-on-a-chip 의 일부분으로서 사용되며 이러한 시스템의 집적은 Lab-on-a-chip 개발을 위해 필수적으로 요구된다. 본 논문에서는 이러한 microchip을 구현하기 위해서 초미세 유체 제어 소자인 마이크로 펌프와 마이크로 밸브를 같은 기판 위에 Polydimethylsiloxane (PDMS)와 indium tin oxade (ITO)를 사용하여 집적하였다. 그리고 밸브의 반복 작동 시 계속적인 유량의 감소를 줄이기 위해 PDMS 의 혼합비를 달리하여 PDMS membrane 의 기계적 특성을 강화시켰다.

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미세유체시스템을 이용한 신경조직 연구

  • An, Jung-Ho;Jeon, Nu-Ri
    • Journal of the KSME
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    • v.54 no.9
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    • pp.31-34
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    • 2014
  • 이 글은 내피세포(endothelial cell)의 생리 병리학적 중요성에 대해 알아보고, 미세혈관기반의 생체 외(in vitro)모델을 소개하며 그 연구 동향에 대해 소개하고자 한다.

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CaCO3 Biomineralization in Microfluidic Crystallizer (미세유체 결정화기를 이용한 탄산칼슘 Biomineralization)

  • Seo, Seung Woo;Ko, Kwan Young;Lee, Chang Soo;Kim, In Ho
    • Korean Chemical Engineering Research
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    • v.51 no.1
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    • pp.151-156
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    • 2013
  • Crystallization of $CaCO_3$ is practiced on a polymethylsiloxane (PDMS) - based microfluidic system. Liquid- liquid reaction was investigated by mixing calcium chloride ($CaCl_2$) and sodium carbonate ($Na_2CO_3$) solution to crystallize $CaCO_3$. Aspartic acid (Asp) was added to investigate the morphology change such as vaterite and calcite. Suitable ratio of $Na_2CO_3$ and $CaCl_2$ was searched for initial seed formation. Christmas tree model was used as microfluidic device to form concentration gradient of $Na_2CO_3$ and $CaCl_2$. After observing microfluidic channel by using optical microscope, we found that seeds of $CaCO_3$ were formed under the condition that the ratio of $Na_2CO_3$ and $CaCl_2$ was 2:1. Morphology of crystals were also observed as $CaCO_3$ crystals grow. When Asp was added, vaterite crystal was more frequently found in two morphologies (vaterite and calcite) and seed formation and crystal growth were inhibited.

Fabrication of PDMS microlens for optical detection (광학적 검출을 위한 PDMS 마이크로렌즈의 제작)

  • Park, Se-Wan;Kim, Hyeon-Cheol;Chun, Kuk-Jin
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.46 no.4
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    • pp.15-20
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    • 2009
  • In a detection system based on laser light scattering, focusing an excitation laser beam into a focal point of a channel in a microfluidic chip is important for obtaining the highest excitation intensity, and consequently for obtaining a laser light scattering signal using a photodetector with a high efficiency. In this paper, we present a polydimethylsiloxane (PDMS) microfluidic chip consisting of an integrated PDMS microlens for cell detection based on laser light scattering. We fabricated PDMS microlens for optical detection system by simply putting down on PDMS chips. The PDMS microlens was fabricated by photoresist reflow and replica molding. This fabrication technique is simple and has an excellent property in terms of the microlens and a high-dimensional accuracy. The PDMS microlens integrated on the PDMS microfluidic chip has been verified to improve the laser intensity, and accordingly, the signal-to-noise ratio and sensitivity of laser light scattering detection for red blood cells(RBCs)

Stagnation of Droplet for Efficient Merging in Microfluidic System (미세유체의 효율적인 액적 합류를 위한 정체현상 조절)

  • Jin, Si Hyung;Kim, Jongmin;Jang, Sung-Chan;Noh, Young Moo;Lee, Chang-Soo
    • Korean Chemical Engineering Research
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    • v.52 no.1
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    • pp.106-112
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    • 2014
  • Here, we demonstrated the optimum design of pillar microstructure for efficient microdroplet merging. The microfluidic device mainly consisted of programmable microvalves and pillar microstructures. Based on the system, aqueous droplets were continuously generated at T-junction using actuating of integrated programmable microvalaves under the immiscible continuous fluid (mineral oil containing 0.5 wt% Span 80). The principle of merging process depended on the competitive correlation of hydraulic pressure of continuous phase and Laplace pressure of the droplet. We found that the design of the micropillars controls above two pressures. Finally, it was demonstrated that the microfluidic system could be able to efficient biochemical reaction. We expect that the microfluidic system is useful analytical or reaction tools in fundamental science, biotechnology, and chemical engineering.

HAR-MEMS 공정과 그를 이용한 미세 열유체 응용 연구

  • 이승섭
    • Ceramist
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    • v.7 no.3
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    • pp.28-33
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    • 2004
  • 1987년 미국 버클리 대학의 연구진은 반도체 미세공정 기술을 이용해 머릿카락 굵기의 초소형 모터를 발표하였다(Fig. 1).1) 이는 MEMS(Micro Electro Mechanical System, 혹은 MST , Micro System Technology)라는 새로운 학문 분야의 실질적 효시로, 명실공히 마이크론 단위의 기계-전자 시스템의 구현이라는 새로운 장을 열게되었다. (중략)

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Effects of Cell Wall on the Transformation of Microalgae by a Digital Microfluidic System (디지털 미세유체를 이용한 미세녹조류 형질전환에서의 세포벽의 영향 분석)

  • Im, Do Jin
    • Clean Technology
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    • v.21 no.2
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    • pp.90-95
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    • 2015
  • Digital microfluidic electroporation system was used for the transformation of microalgae and we have obtained higher transformation efficiency and viability than that of conventional method. Key parameters of electroporation such as pulse voltage, number, and duration time were systematically investigated for two different microalgal strains with and without cell wall. We have found that cell wall does not always have negative effects on the gene transformation of microalgae. Parallel processing of proposed digital microfluidic electroporation was demonstrated together with on chip culture of microalgae.

Fabrication and application of a microcantilever biosensor for a protein detection (단백질 검출을 위한 mirocantilever 바이오센서의 제작과 응용)

  • Kim, Jun-Hyuk;Yoo, Kyung-Ah;Joung, Seung-Ryong;Kim, Han-Soo;Kim, Jae-Wan;Choi, Y.J.;Kang, C.J.;Kim, Yong-Sang
    • Proceedings of the KIEE Conference
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    • 2006.07c
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    • pp.1647-1648
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    • 2006
  • 화학적, 생물학적 분석, 즉 특정 물질의 존재 유무를 측정하기 위해 마이크로캔틸레버라는 구조체를 제작하여 이를 바이오센서로 응용하였다. 마이크로캔틸레버의 장점은 분석하고자 하는 시료의 양이 적더라도 감지가 가능하고 이를 통하여 분석시간을 단축할 수 있다는 장점을 가지고 있다. 마이크로캔틸레버 구조물 제작을 위해 보편적으로 많이 이용되는 bulk 미세 가공 기술을 대신하여 표면 미세 가공기술을 이용하였다. 이러한 표면 미세 가공기술은 bulk 미세 가공기술에 비해 공정이 간단하고 값이 싸다는 장점이 있다. 또 액상 실험을 위하여 polydimethylsiloxane (PDMS)와 fused silica glass를 사용한 유체 제어 시스템을 제작하였다. 본 연구에서는 자기조림 이라는 특성을 이용하여 생물분자를 유체 제어 시스템 내의 마이크로캔틸레버 상단에 immobilization 시킨 후 마이크로캔틸레버 상, 하단의 표면 스트레스 차이에 따른 마이크로캔틸레버 자체의 휘어지는 정도를 측정하였다. 이러한 휘어지는 현상을 관찰함으로서 마이크로캔틸레버의 바이오센서로 응용 가능성을 확인한 수 있었다.

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