نتایج جستجو برای: flow focusing

تعداد نتایج: 575702  

Journal: :Biomicrofluidics 2014
Harisha Ramachandraiah Sahar Ardabili Asim M Faridi Jesper Gantelius Jacob M Kowalewski Gustaf Mårtensson Aman Russom

Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughput alternative to active focusing methods that require an external force field to manipulate particles. In inertial microfluidics, dominant inertial forces cause particles to move across streamlines and occupy equilibrium positions along the faces of walls in flows through straight micro channels...

Journal: :Physical review letters 2007
Alfonso M Gañán-Calvo

Electro-flow focusing, a technique combining the features of electrospray (ES) and flow focusing (FF), provides a reliable tool to reach parametrical microjetting ranges not attainable by ES or FF alone under specific operational regimes (liquid properties and flow rate). In this Letter, we provide not only a closed theoretical model predicting the diameter of a high electrical conductivity ele...

2017
Matthieu Robert de Saint Vincent Hamza Chraibi Jean-Pierre Delville

HAL is a multi-disciplinary open access archive for the deposit and dissemination of scientific research documents, whether they are published or not. The documents may come from teaching and research institutions in France or abroad, or from public or private research centers. L’archive ouverte pluridisciplinaire HAL, est destinée au dépôt et à la diffusion de documents scientifiques de niveau...

2015
D. Conchouso A. Arevalo D. Castro I. G. Foulds

Microfluidic droplet generators offer distinctive advantages to create emulsions that cannot be matched by conventional methods such as membrane or batch emulsification[1]. Since microfluidic droplets are created in a confined and controlled space in a chip, they can be used as micro-reactors to perform delicate chemical reactions that take advantage of the scaling laws associated with miniatur...

Journal: :Electrophoresis 2023

DOI: 10.1002/elps.202200230 The back cover picture shows a free-flow electrophoresis device separating and collecting different proteins. A novel velocity gradient is introduced across the chamber to counteract electrophoretic migration focus proteins at unique positions. There are several components overall profile that influence width of each protein stream, they deserve further investigation.

Journal: :Lab on a chip 2013
Steffen Cosson Simone Allazetta Matthias P Lutolf

Microfluidic gradient systems offer a very precise means to probe the response of cells to graded biomolecular signals in vitro, for example to model how morphogen proteins affect cell fate during developmental processes. However, existing gradient makers are designed for non-physiological plastic or glass cell culture substrates that are often limited in maintaining the phenotype and function ...

Journal: :Philosophical transactions. Series A, Mathematical, physical, and engineering sciences 2008
Matthew T Sullivan Howard A Stone

A model was developed for the analysis of steady and unsteady bubble generation frequencies in a microfluidic flow-focusing device. In both cases, the generation frequency depends on the downstream influence of bubbles created by the flow-focusing device, which provides a source of feedback. For steady-state generation of bubbles, this feedback explains the relationships among frequency, gas pr...

Journal: :Small 2010
Michinao Hashimoto George M Whitesides

The formation of bubbles in a flow-focusing (FF) junction comprising multiple rectangular sections is described. The simplest junctions comprise two sections (throat and orifice). Systematic investigation of the influence on the formation of bubbles of the flow of liquid and the geometry of the junction identifies regimes that generate monodisperse, bidisperse, and tridisperse trains of bubbles...

2013
Steffen Cosson Simone Allazetta Matthias P. Lutolf

Microfluidic gradient systems offer a very precise means to probe the response of cells to graded biomolecular signals in vitro, for example to model how morphogen proteins affect cell fate during developmental processes. However, existing gradient makers are designed for non-physiological plastic or glass cell culture substrates that are often limited in maintaining the phenotype and function ...

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