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Fluigent
  • 미세유체연구장비
      • 고유량제어를위한미세유체
      • 정밀 유체 제어를 위한 미세유체 솔루션 
      • 액적생성을위한미세유체기술
      • 액적 생산을 위한 고급 솔루션
      • 장기온칩응용분야를위한미세유체기술
      • 장기 온칩 연구를 위한 첨단 솔루션  
      • 체학응용분야를위한미세유체
      • 체학 기술을 위한 고급 솔루션
  • 미세유체OEM
      • OEM 응용분야
      • 미세유체 응용을 위한 F-OEM 밸브 자동화 
      • 멀티플렉싱을 위한 국소화 현미경 검사 및 유량 제어  
      • OEM 기술​
      • 최고의 유체 제어 시스템을 위한 미세유체 압력 컨트롤러 비교 
      • 미세유체 응용 분야에서 OEM 시린지 펌프보다 OEM 압력 컨트롤러를 선택해야 하는 5가지 이유 
      • 산업 제품
      • 액체용 압력 컨트롤러 
      • OEM 미세유체 구성 요소 
      • 완전 맞춤형 미세유체 장치 
  • 마이크로유체 블로그
    • Microfluidic(미세유체) Droplet 생성 방법 
    • 마이크로유체역학 개요: 역사와 정의 
    • 약물 전달 분야의 마이크로플루이딕스: 정밀 의학의 새로운 시대
    • 왜 세포 생물학에서 전단 응력을 제어해야 할까요?
    • 오간온어칩 연구에서의 압력 제어 마이크로유체 기술
    • 미세유체 관류 최적화: 모범 사례와 혁신 
    • 신뢰성 있는 드롭렛 생성을 위한 10가지 팁
    • 미세유체에서의 흐름 제어 기술: 신뢰할 수 있는 결과를 위한 적절한 펌프 선택 
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Search results for : biology

flow-induced shear stress
Resource / 미세유체 세포 생물학

Why Control Shear Stress in Cell Biology?

Reproducing a shear-stress in-vitro is critical to better mimic the physiological conditions.

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Microfluidics in Life Science
Page

Microfluidics in Life Science

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Resource / 미세유체 칩

Application of microfluidic chip technology 

We discuss some applications where microfluidics achieves results that would be very challenging to obtain when using conventional methods.

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Flow controller stability
Resource / 압력 기반 미세유체 제품의 이점

The Importance of Flow Control Stability in Microfluidics 

This review compares different flow control systems (syringe pumps, peristaltic pumps, and pressure-based controllers) focusing on their performance in terms of stability and response times.

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automated immunolabeling ibex aria human jejunum
Resource / 사용자 사례

Automated immunolabeling to perform highly multiplexed tissue imaging with ARIA

Understanding cell-cell interactions and spatial relationships in healthy or diseased organs represents a technical challenge. Single-cell genomics is powerful but lacks spatial context. In this study, automated immunolabeling has been applied to obtain a versatile multiplex optical imaging approach for deep phenotyping and spatial analysis of cells in complex tissues.

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Resource / 미세유체 세포 생물학

Mimicking in-vivo environments: biochemical and biomechanical stimulation 

Cells are constantly exposed to biochemical stimulation from the early embryonic stage to adult life. The spatiotemporal regulation of these signals is essential as it determines cell fate, phenotype, metabolic activity as well as pathological behaviors. The fast response and high stability of Fluigent instruments make them the best solution available on the market to reproduce these complex variations in vitro.

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ooac-white-paper-visual
Resource / 기술서

A review of Organ on Chip Technology - A White Paper

Discover the concepts of OOC engineering and their applications in medical sciences.

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flow-control-white-paper-visual
Resource / 기술서

An exploration of Microfluidic technology and fluid handling 

Discover the main concepts of microfluidics

What is microfluidics? What are the main concepts of microfluidics? What are the different microfluidic flow controllers?

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technology non invasive flow control integration
Page

Non-Intrusive Flow Sensing Technology

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flow control technology: pressure controller comparison
Resource / 압력 기반 미세유체 제품의 이점

Flow Control Technologies: Comparison between peristaltic, syringe and pressure pumps for microfluidic applications 

To perform effective experiments in microfluidics, one needs to master the different flow control technologies available to use the most suitable way to control microfluidic flows. This article aims at presenting a short review of the existing techniques.

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plga nanoparticle synthesis acetone and water pva
Resource / 어플리케이션 노트

PLGA nanoparticle synthesis using 3D microfluidic hydrodynamic focusing

In this Application Note, PLGA nanoparticles with high monodispersity are generated using the Raydrop single emulsion developed and manufactured by Secoya, and Fluigent pressure-based flow controllers. The ability to synthesise PLGA nanoparticles in a more controllable and reproducible way creates possibilities to tailor surface properties and increase fields of application.

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Page

신뢰성 있는 드롭렛 생성을 위한 10가지 팁

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Resource / 산업/OEM 전문성

Key considerations for fluidic system integration 

The choice of the right method of fluid management can often determinate the success of a project, as well as the overall time and cost of manufacturing. Here is what you need to consider and be aware of when integrating fluidic control into your system.

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image omi platform
Page

오간온어칩 연구에서의 압력 제어 마이크로유체 기술

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Page

미세유체에서의 흐름 제어 기술: 신뢰할 수 있는 결과를 위한 적절한 펌프 선택 

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dropseq method
Resource / 어플리케이션 노트

Droplet Sequencing: Drop-Seq method

The Drop-Seq protocol, is a high throughput method that enables the sequencing of the mRNA from a large number of cells. With this method it is possible to create a gene expression map of the cell, or even distinguish cell populations within a tissue!

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    microfluidic flow control system
    Product

    Microfluidic Flow Control System

    MFCS™ series

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  • 장기온칩응용분야를위한미세유체기술
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