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PMID: 15143275 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Continuous particle separation through deterministic lateral displacement.

Science (New York, N.Y.) ·Vol. 304 ·No. 5673 ·2004-05-14 ·Pages 987-90

Huang LR, Cox EC, Austin RH, Sturm JC

Abstract

We report on a microfluidic particle-separation device that makes use of the asymmetric bifurcation of laminar flow around obstacles. A particle chooses its path deterministically on the basis of its size. All particles of a given size follow equivalent migration paths, leading to high resolution. The microspheres of 0.8, 0.9, and 1.0 micrometers that were used to characterize the device were sorted in 40 seconds with a resolution of approximately 10 nanometers, which was better than the time and resolution of conventional flow techniques. Bacterial artificial chromosomes could be separated in 10 minutes with a resolution of approximately 12%.

MeSH Terms
Chemical Fractionation/instrumentation,methods Chemical Phenomena Chemistry, Physical Chromosomes, Artificial, Bacterial Diffusion Electricity Fractionation, Field Flow/instrumentation,methods Microfluidics Microscopy, Fluorescence Microspheres Miniaturization Particle Size Rheology
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Huang Lotien Richard
Department of Electrical Engineering, Princeton Institute for the Science and Technology of Materials (PRISM), Princeton University, Princeton, NJ 08544, USA.
Cox Edward C
Austin Robert H
Sturm James C
Article Info
Journal
Science (New York, N.Y.)
Abbr.
Science
ISSN
1095-9203
Published
2004-05-14
Pages
987-90
Language
English
Region
United States
NLM ID
0404511
Subset
IM
Grants
NHGRI NIH HHS · HG01506 · United States
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