KR20030094280A - 어레이에 대한 마이크로유체 인터페이스 방법 및인터페이스용 시스템 - Google Patents
어레이에 대한 마이크로유체 인터페이스 방법 및인터페이스용 시스템 Download PDFInfo
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- KR20030094280A KR20030094280A KR10-2003-7011916A KR20037011916A KR20030094280A KR 20030094280 A KR20030094280 A KR 20030094280A KR 20037011916 A KR20037011916 A KR 20037011916A KR 20030094280 A KR20030094280 A KR 20030094280A
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Abstract
Description
Claims (73)
- (a) 고정된 생물학적 샘플을 포함하는 기판의 제 1 표면에 합치하는 인터페이스 표면을 갖는 메인 인터페이스층;(b) 상기 인터페이스 표면에 위치하고, 인터페이스 채널을 규정하며 관통 형성된 하나 이상의 개구를 갖는 가스켓;(c) 상기 메인 인터페이스층에 형성되고 상기 하나 이상의 개구로 열려있는 입구 채널;(d) 상기 메인 인터페이스층에 형성되고 상기 하나 이상의 개구로 열려있는 출구 채널; 및(e) 상기 인터페이스 표면에 인접한 상기 메인 인터페이스층에 형성된 하나 이상의 공기 주머니로서, 상기 공기 주머니가 팽창하면 바깥쪽으로 기울고 또는 상기 공기 주머니가 수축되면 안쪽으로 기울어질 수 있는 가요성 하부면을 갖고, 상기 메인 인터페이스층을 통과하는 하나 이상의 공기 채널과 소통되고 압력 소스와 연결되도록 적응된 하나 이상의 공기 주머니로 구성되는, 제 1 표면에 고정된 생물학적 샘플을 갖는 기판 표면과 인터페이스하기 위한 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 약 20㎛와 약 30㎛ 사이의 높이를 갖는 인터페이스 채널을 정의하는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 약 23㎛와 약 27㎛ 사이의 높이를 갖는 인터페이스 채널을 정의하는 인터페이스 장치.
- 청구항 1에 있어서, 상기 하나 이상의 공기 주머니의 상기 가요성 하부면은 상기 메인 인터페이스층의 하부면에 부착된 가요성 격막층으로 구성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 하나 이상의 공기 주머니의 상기 가요성 하부면은 상기 메인 인터페이스층의 대부분을 형성하는 강성 재질의 얇은 층으로 구성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 하나 이상의 출구 채널과 유체 소통되는 상기 메인 인터페이스층 내의 폐기물 저장소로 더 구성되는 인터페이스 장치.
- 청구항 1에 있어서, 혼합 회로, 분지 구조, 저장소, 밸브 또는 멈춤 접점 중하나 이상으로 구성되는 마이크로유체 회로로 더 구성되는 인터페이스 장치.
- 청구항 7에 있어서, 상기 마이크로유체 회로는 상기 입구 채널과 상기 하나 이상의 인터페이스 채널 사이에 유체 소통되는 인터페이스 장치.
- 청구항 7에 있어서, 상기 마이크로유체 회로는 상기 하나 이상의 인터페이스 채널과 상기 출구 사이에 유체 소통되는 인터페이스 장치.
- 청구항 7에 있어서, 상기 마이크로유체 회로는 하나 이상의 수동 밸브로 구성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 하나 이상의 인터페이스 채널은 적어도 부분적으로 상기 메인 인터페이스층의 상기 인터페이스 표면에 형성된 인터페이스 웰 또는 홈에 의해 정의되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 탄성 시트 재질로 형성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 상기 탄성 시트 재질을 상기 인터페이스 표면에 직접 적용함으로써 형성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 탄성 재질로 형성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 가소적으로 변형가능한 재질로 형성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 가스켓은 접착 재질로 형성되는 인터페이스 장치.
- 청구항 16에 있어서, 상기 접착 재질은 상기 기판의 상기 제 1 표면에 가역적으로 접착되도록 적응되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 인터페이스 장치는 다수의 층으로 구성되고, 상기 인터페이스 장치는 상기 다수 층들 중 두개 이상에 형성된 마이크로유체 회로 구조로 더 구성되는 인터페이스 장치.
- 청구항 1에 있어서, 상기 기판은 마이크로어레이 슬라이드인 인터페이스 장치.
- (a) 고정된 생물학적 샘플을 포함하는 기판의 제 1 표면에 합치하는 인터페이스 표면을 갖는 메인 인터페이스층;(b) 상기 인터페이스 표면에 위치하고, 각각이 인터페이스 채널 또는 챔버를 규정하며 관통 형성된 복수의 개구를 갖는 가스켓;(c) 상기 메인 인터페이스층에 형성되고 상기 각 개구로 열려있는 하나 이상의 입구 채널; 및(d) 상기 메인 인터페이스층에 형성되고 상기 각 개구로 열려있는 하나 이상의 출구 채널로 구성되는, 제 1 표면에 고정된 생물학적 샘플을 갖는 기판의 표면과 인터페이스하기 위한 인터페이스 장치.
- 청구항 20에 있어서, 상기 인터페이스 표면에 인접한 상기 메인 인터페이스층에 형성된 하나 이상의 공기 주머니로서, 상기 공기 주머니가 팽창하면 바깥쪽으로 기울고 또는 상기 공기 주머니가 수축되면 안쪽으로 기울어질 수 있는 가요성 하부면을 갖고, 상기 메인 인터페이스층을 통과하는 하나 이상의 상기 공기 채널과 소통되고 압력 소스와 연결되도록 적응된 하나 이상의 공기 주머니로 더 구성되는, 인터페이스 장치.
- 청구항 20에 있어서, 상기 입구와 상기 복수의 인터페이스 채널 사이에 유체 소통되고, 상기 입구로 유입되는 유체를 상기 복수의 인터페이스 채널 사이로 나누도록 적응되는 마이크로유체 분지 구조로 더 구성되는 인터페이스 장치.
- 청구항 20에 있어서, 두개 이상의 상기 인터페이스 채널과 상기 하나의 출구 사이에 유체 소통되고, 상기 두개 이상의 인터페이스 채널을 상기 출구를 통과하여 흐르는 단일의 유체 스트림으로 통합하도록 적응되는 마이크로유체 회로로 더 구성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 하나 이상의 인터페이스 채널은 적어도 부분적으로 상기 메인 인터페이스층의 상기 인터페이스 표면에 형성된 인터페이스 웰 또는 홈에 의해 정의되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 가스켓은 탄성 시트 재질로 형성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 가스켓은 상기 탄성 시트 재질을 상기 인터페이스 표면에 직접 적용함으로써 형성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 가스켓은 탄성 재질로 형성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 가스켓은 가소적으로 변형가능한 재질로 형성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 가스켓은 접착 재질로 형성되는 인터페이스 장치.
- 청구항 29에 있어서, 상기 접착 재질은 상기 기판의 상기 제 1 표면에 가역적으로 접착되도록 적응되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 인터페이스 장치는 다수의 층으로 형성되고, 상기 인터페이스 장치는 상기 다수 층들 중 두개 이상에 형성된 마이크로유체 회로 구성요소들로 구성되는 3D 마이크로유체 회로로 더 구성되는 인터페이스 장치.
- 청구항 31에 있어서, 3D 마이크로유체 회로는 겹치는 마이크로유체 회로 구조들로 구성되는 인터페이스 장치.
- 청구항 20에 있어서, 상기 기판은 마이크로어레이 슬라이드인 인터페이스 장치.
- (a) 열블록;(b) 상기 열블록과 열소통되는 하나 이상의 홈으로 구성되고 아래 (i) 및 (ii)로 구성되는 반응 장치를 수용하도록 적응되는 베이스;(i) 제 1 표면에 고정화된 생물학적 샘플을 포함하는 기판; 및(ii) 상기 제 1 표면에 밀봉되어 상기 생물학적 샘플을 함유하는 하나 이상의 인터페이스 채널 또는 웰을 형성하도록 적응되는 인터페이스 장치(c) 온도 제어 신호를 상기 열블록으로 보내도록 적응되는 히터 제어기;(d) 기판 처리용 기구 및 상기 인터페이스 장치 중 하나 이상에 위치하며 상기 인터페이스 채널내에서 유체의 교반을 일으킬 수 있는 혼합 요소; 및(e) 혼합 제어 신호를 상기 혼합 요소에 보내도록 적응되는 혼합 제어기로 구성되는, 제 1 표면에 고정화된 생물학적 샘플을 포함하는 기판 처리용 기구.
- 청구항 34에 있어서, 상기 혼합 요소는 상기 하나 이상의 인터페이스 채널에 인접한 상기 인터페이스 장치 내에 위치하는 하나 이상의 공기 주머니로 구성되고, 상기 혼합 제어기는 상기 공기 주머니를 팽창 및 수축하는데 사용되는 양의 공기압 및 음의 공기압 발생을 제어하는, 기판 처리용 기구.
- 청구항 34에 있어서, 상기 혼합 요소는 압전기 요소로 구성되고, 상기 혼합 제어기는 상기 압전기 요소의 동작을 일으키는 전압 신호의 발생을 제어하는, 기판 처리용 기구.
- 청구항 34에 있어서, 상기 인터페이스 장치는 전기 접속을 갖는 하나 이상의 활성 요소로 더 구성되고, 상기 기구는 상기 하나 이상의 활성 요소로부터의 전기 신호를 수신하거나 보내도록 적응되는 하나 이상의 추가 구성 요소로 더 구성되는 것을 특징으로 하는, 기판 처리용 기구.
- 청구항 34에 있어서, 상기 활성 요소는 전극으로 구성되고, 상기 하나 이상의 추가 구성 요소는 전기 신호를 상기 전극으로 보내는, 기판 처리용 기구.
- 청구항 34에 있어서, 상기 활성 요소는 센서로 구성되고, 상기 하나 이상의 추가 구성 요소는 상기 센서로부터의 전기 신호를 수신하는 기판 처리용 기구.
- 청구항 34에 있어서, 상기 반응 장치에 유체 결합됨으로써 유체가 상기 기구로부터 상기 반응 장치의 상기 인터페이스 채널 또는 웰로 전달될 수 있도록 하는 어댑터로 더 구성되는 기판 처리용 기구.
- 청구항 34에 있어서, 각각이 하나의 상기 반응 장치를 수용하도록 적응된 복수의 홈으로 구성된 기판 처리용 기구.
- 청구항 41에 있어서, 상기 복수의 홈에 수용된 반응 장치들에 유체 결합됨으로써, 유체가 상기 기구로부터 상기 반응 장치 각각의 상기 인터페이스 채널 또는 웰로 전달될 수 있도록 하는 복수의 어댑터로 더 구성되는 기판 처리용 기구.
- (a) 실험실 히터에 끼워맞춰지도록 적응된 열블록; 및(b) 상기 열블록과 열소통되고, (i) 제 1 표면에 고정화된 생물학적 샘플을 포함하는 기판; 및 (ii) 상기 제 1 표면에 밀봉되어 상기 생물학적 샘플을 함유하는 하나 이상의 인터페이스 채널을 형성하도록 적응되는 인터페이스 장치로 구성되는 반응 장치를 수용하도록 적응되는 하나 이상의 홈으로 구성되는, 제 1 표면에고정화된 생물학적 샘플을 포함하는 기판 처리용 기구.
- 청구항 43에 있어서,(a) 기판 처리용 기구 및 상기 인터페이스 장치 중 하나 이상에 위치하며 상기 인터페이스 채널내에서 유체의 교반을 일으킬 수 있는 혼합 요소; 및(e) 혼합 제어 신호를 상기 혼합 요소에 보내도록 적응되는 혼합 제어기로 더 구성되는 기판 처리용 기구.
- 청구항 44에 있어서, 상기 혼합 요소는 상기 하나 이상의 인터페이스 채널에 인접한 상기 인터페이스 장치 내에 위치하는 하나 이상의 공기 주머니로 구성되고, 상기 혼합 제어기는 상기 공기 주머니를 팽창 및 수축하는데 사용되는 양의 공기압 및 음의 공기압 발생을 제어하는, 기판 처리용 기구.
- 청구항 45에 있어서, 상기 혼합 요소는 상기 하나 이상의 인터페이스 채널의 마주보는 끝단에 위치하는 두개의 공기 주머니로 구성되며, 상기 혼합 제어기는 상기 두개의 공기 주머니를 상반되게 팽창 및 수축시켜서 상기 하나 이상의 인터페이스 채널내에서 유체의 교반을 일으키는, 기판 처리용 기구.
- 청구항 44에 있어서, 상기 혼합 요소는 압전기 요소로 구성되고, 상기 혼합 제어기는 상기 압전기 요소의 동작을 일으키는 전압 신호의 발생을 제어하는, 기판 처리용 기구.
- (a) 제 1 표면에 고정된 생물학적 샘플을 포함하는 기판; 및(b) 상기 생물학적 샘플을 함유하는 하나 이상의 인터페이스 채널을 형성하기 위하여 상기 기판의 상기 제 1 표면에 밀봉되도록 적응되고,(i) 강성 재질로 형성되고 상기 기판의 상기 제 1 표면에 합치하는 인터페이스 표면을 갖는 메인 인터페이스층;(ii) 상기 인터페이스 표면에 위치하고, 인터페이스 채널 또는 챔버를 규정하며 관통 형성된 하나 이상의 개구를 갖는 가스켓;(iii) 상기 메인 인터페이스층을 통과하고 상기 하나 이상의 개구로 열려있는 입구 채널; 및(iv) 상기 메인 인터페이스층을 통과하고 상기 하나 이상의 개구로 열려있는 출구 채널로 구성되는 인터페이스 장치로 구성되는, 고정 생물학적 샘플을 포함하는 기판의 표면으로 유체의 조절된 전달을 제공하기 위한 반응 장치.
- 청구항 48에 있어서, 상기 기판은 마이크로어레이 슬라이드로 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 가스켓은 약 20㎛와 약 30㎛ 사이의 높이를 갖는 인터페이스 채널 또는 챔버를 정의하는 반응 장치.
- 청구항 48에 있어서, 상기 가스켓은 약 23㎛와 약 27㎛ 사이의 높이를 갖는 인터페이스 채널 또는 챔버를 정의하는 반응 장치.
- 청구항 48에 있어서, 상기 기판을 수용하도록 적응된 홈을 갖는 베이스로 더 구성되는 반응 장치.
- 청구항 52에 있어서, 상기 베이스, 기판 및 인터페이스 장치를 함께 클램프하여 상기 인터페이스 장치를 상기 기판에 밀봉하기 위한 클램프 메카니즘으로 더 구성되는 반응 장치.
- 청구항 53에 있어서, 상기 클램프 메카니즘은 상기 베이스에 선회하도록 장착된 두개의 c-채널 클램프로 구성되고, 상기 c-채널 클램프는 상기 베이스에 수용되는 상기 기판의 평면에서 바깥쪽 측면으로 선회하는 반응 장치.
- 청구항 48에 있어서, 상기 베이스는 마이크로어레이 슬라이드를 처리하기 위해 적응되는 기구의 일부로 구성되고, 상기 기구는 상기 베이스에 대항하여 상기 기판 및 상기 인터페이스 장치를 가압하기 위해 적응되는 클램프 메카니즘으로 더 구성되는, 반응 장치.
- 청구항 48에 있어서, 외부 제어 모듈로 더 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 베이스는 가열 요소 및 압전기 혼합 요소로부터 선택되는 활성 요소로 더 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 기판과 밀봉 관계로 상기 인터페이스 장치를 유지하기 위해 적응되는 클램프 메카니즘으로 더 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 인터페이스 장치에 인접한 상기 메인 인터페이스층에 형성된 하나 이상의 공기 주머니로서, 상기 공기 주머니가 팽창하면 바깥쪽으로 기울고 또는 상기 공기 주머니가 수축되면 안쪽으로 기울어질 수 있는 가요성 하부면을 갖고, 상기 메인 인터페이스층을 통과하는 하나 이상의 공기 채널과 소통되고 압력 소스와 연결되도록 적응된 하나 이상의 공기 주머니로 더 구성되는 반응 장치.
- 청구항 59에 있어서, 상기 하나 이상의 공기 주머니의 상기 가요성 하부면은 상기 메인 인터페이스층의 하부면에 부착된 가요성 격막층으로 구성되는 반응 장치.
- 청구항 59에 있어서, 상기 하나 이상의 공기 주머니의 상기 가요성 하부면은 상기 메인 인터페이스층의 대부분을 형성하는 강성 재질의 얇은 층으로 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 인터페이스 층은 상기 하나 이상의 출구 채널과 유체 소통되는 상기 메인 인터페이스층 내의 폐기물 저장소로 더 구성되는 반응 장치.
- 청구항 48에 있어서, 상기 하나 이상의 개구는 루프 구성을 갖는 루프 채널을 정의하고, 상기 루프 채널을 통하여 유체가 순환되며, 상기 루프내 및 루프 둘레의 유체의 순환은 수동 밸브에 의하여 조절되는 반응 장치.
- 청구항 48에 있어서, 상기 반응 장치의 제 1 부분은 사용 후 버릴 수 있으며, 상기 반응 장치의 제 2 부분은 재사용 가능한 반응 장치.
- 청구항 52에 있어서, 상기 베이스는 상기 인터페이스 장치에 밀봉되어 상기 기판 둘레로 습기 챔버를 형성함으로써, 상기 기판과 상기 인터페이스 장치 사이의 상기 밀봉이 습한 환경에 노출될 수 있도록 적응되는 반응 장치.
- 청구항 48에 있어서, 상기 인터페이스 채널 또는 챔버의 부피는 상기 인터페이스 채널 또는 챔버로 충진재를 유동시켜 상기 기판에 마주보는 상기 인터페이스 채널 또는 챔버의 피부의 일부를 채움으로써 감소되고, 상기 충진재는 상기 인터페이스 채널 또는 챔버로 도입될 유체와 혼합되지 않는 반응 장치.
- (a) 고정된 분자들을 포함하는 기판을 제공하고;(b) 입구부 및 출구부로 구성되는 인터페이스 장치를 상기 기판에 대하여 배치하고;(c) 상기 인터페이스 장치를 상기 기판으로 클램프함으로써 상기 인터페이스 장치를 상기 기판에 밀봉하여, 상기 인터페이스 장치 및 상기 기판 사이의 인터페이스에 제 1 끝단 및 제 2 끝단을 갖는 인터페이스 채널을 형성하고, 여기서 상기 인터페이스 채널은 상기 제 1 끝단에 있는 상기 입구부 및 상기 제 2 끝단에 있는 상기 출구부와 소통하며, 고정된 분자를 포함하는 상기 기판의 적어도 일부를 함유하며;(d) 반응물을 함유하는 유체를 상기 인터페이스 장치의 입구부를 통해 상기 인터페이스 채널로 도입하고;(e) 상기 유체내 상기 반응물을 상기 인터페이스 채널내 상기 고정된 분자들과 반응시키는 단계로 구성되는, 기판상에 고정된 분자들과의 화학 반응 실행 방법.
- (a) 고정된 제 1 화합물을 포함하는 기판을 제공하고;(b) 상기 기판에 대하여 인터페이스 장치를 밀봉하여, 입구 및 출구를 갖고 상기 고정된 제 1 화합물을 포함하는 상기 기판의 일부로 구성되는 인터페이스 채널을 형성하고, 여기서 상기 인터페이스 장치는 상기 인터페이스 장치를 통과하고 상기 입구를 통해 상기 인터페이스 채널과 소통되는 하나 이상의 입구 채널로 구성되며;(c) 봉쇄 용액을 함유하는 용액을 상기 입구 채널을 거쳐 인터페이스 채널 내로 도입하고;(d) 상기 기판상의 비특이성 결합 부위를 봉쇄하기 위하여 상기 기판의 상기 부분상의 상기 봉쇄 용액을 배양하고;(e) 상기 입구 채널을 통해 상기 인터페이스 채널 내로 제 1 세척 용액을 도입하고, 상기 봉쇄 용액은 상기 제 1 세척 용액이 상기 인터페이스 채널로 유입됨에 따라 상기 출구를 거쳐 상기 인터페이스 채널을 빠져 나가며;(f) 제 2 화학적 화합물을 함유하는 결합 용액을 상기 입구 채널을 거쳐 상기 인터페이스 채널로 도입하고, 상기 세척 용액은 상기 결합 용액이 상기 인터페이스 채널로 유입됨에 따라 상기 출구를 거쳐 상기 인터페이스 채널 밖으로 나가며;(g) 상기 기판의 상기 부분에서 상기 결합 용액을 배양하여 상기 제 2 화학적 화합물이 상기 제 1 화학적 화합물에 결합되도록 하며;(h) 상기 입구 채널을 거쳐 제 2 세척 용액을 상기 인터페이스 채널로 도입하고, 상기 결합 용액은 상기 제 2 세척 용액이 상기 인터페이스 채널에 유입됨에 따라 상기 출구를 거쳐 상기 인터페이스 채널을 빠져 나가는 단계들로 구성되는, 두 화학적 화합물 사이의 결합 반응을 실행하는 방법.
- 청구항 68에 있어서, 상기 결합 용액을 상기 입구 채널로 도입하기 전에 상기 결합 용액내의 상기 제 2 화학적 화합물을 라벨링하는 예비-처리 단계로 더 구성되는 결합반응 실행 방법.
- 청구항 68에 있어서, 상기 결합 용액을 상기 입구 채널로 도입하기 전에 상기 결합 용액으로부터 불순물을 정제하는 예비-처리 단계로 더 구성되는 결합반응 실행 방법.
- 청구항 68에 있어서, 상기 제 1 화학적 화합물은 제 1 폴리뉴클레오티드로 구성되며, 상기 제 2 화학적 화합물은 제 2 뉴클레오티드로 구성되고, 상기 봉쇄용액은 예비-하이브리디제이션 버퍼이고, 상기 제 2 화학적 화합물의 상기 제 1 화학적 화합물에 대한 결합은 하이브리디제이션 반응으로 구성되는 결합반응 실행 방법.
- 청구항 68에 있어서, 상기 기판 상에서의 상기 제 1 화학적 화합물과 상기 제 2 화학적 화합물의 결합을 검출하는 단계로 더 구성되는 결합반응 실행 방법.
- 청구항 68에 있어서, 상기 인터페이스 채널내에서의 유체의 혼합은 상기 방법의 단계들 중 하나 이상을 수행하는 동안 제공되는 결합반응 실행 방법.
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| PCT/US2002/007113 WO2002072264A1 (en) | 2001-03-09 | 2002-03-08 | Method and system for microfluidic interfacing to arrays |
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| US (3) | US7223363B2 (ko) |
| EP (1) | EP1372848A4 (ko) |
| JP (1) | JP4148778B2 (ko) |
| KR (1) | KR100916074B1 (ko) |
| CA (1) | CA2450676C (ko) |
| WO (1) | WO2002072264A1 (ko) |
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Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR100612879B1 (ko) * | 2004-12-06 | 2006-08-14 | 삼성전자주식회사 | 폐쇄 시스템에서 펌프와 밸브의 제어를 통한 혼성화 장치 |
| KR100790881B1 (ko) * | 2006-07-06 | 2008-01-02 | 삼성전자주식회사 | 미세유체 반응칩 및 이의 제조방법 |
| KR20110074515A (ko) * | 2008-10-10 | 2011-06-30 | 사이틱 코포레이션 | 세포학적 시료들을 준비하는 마이크로유체 기구 및 방법 |
| KR101248189B1 (ko) * | 2010-06-10 | 2013-03-27 | 주식회사 제이오텍 | 유전자 칩을 이용한 검사 장치 |
| KR101044363B1 (ko) * | 2010-08-23 | 2011-06-29 | 주식회사 월드퍼니처 | 기계적 강도가 개선된 친환경 황토패널 |
| KR20140129181A (ko) * | 2012-02-27 | 2014-11-06 | 에꼴 뽈리떼끄닉 뻬데랄 드 로잔느 (으뻬에프엘) | 분리 가능한 슬라이드를 갖는 표본 가공 장치 |
Also Published As
| Publication number | Publication date |
|---|---|
| KR100916074B1 (ko) | 2009-09-08 |
| CA2450676A1 (en) | 2002-09-19 |
| US20050019898A1 (en) | 2005-01-27 |
| US20040037739A1 (en) | 2004-02-26 |
| EP1372848A1 (en) | 2004-01-02 |
| US7235400B2 (en) | 2007-06-26 |
| US20020192701A1 (en) | 2002-12-19 |
| WO2002072264A1 (en) | 2002-09-19 |
| CA2450676C (en) | 2010-03-30 |
| EP1372848A4 (en) | 2006-08-09 |
| JP2004533605A (ja) | 2004-11-04 |
| US7223363B2 (en) | 2007-05-29 |
| JP4148778B2 (ja) | 2008-09-10 |
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