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Acoustic tweezers: patterning cells and microparticles using standing surface acoustic waves (SSAW)

Lab on a Chip · 2009 · Vol. 9(20) · pp. 2890–2890
Jinjie ShiDaniel AhmedXiaole MaoSz‐Chin Steven LinAitan LawitTony Jun Huang

Abstract

Here we present an active patterning technique named "acoustic tweezers" that utilizes standing surface acoustic wave (SSAW) to manipulate and pattern cells and microparticles. This technique is capable of patterning cells and microparticles regardless of shape, size, charge or polarity. Its power intensity, approximately 5x10(5) times lower than that of optical tweezers, compares favorably with those of other active patterning methods. Flow cytometry studies have revealed it to be non-invasive. The aforementioned advantages, along with this technique's simple design and ability to be miniaturized, render the "acoustic tweezers" technique a promising tool for various applications in biology, chemistry, engineering, and materials science.

Microfluidic and Bio-sensing TechnologiesMicrofluidic and Capillary Electrophoresis ApplicationsElectrowetting and Microfluidic TechnologiesTweezersOptical tweezersMicrofluidicsNanotechnologyMaterials scienceSurface acoustic waveAcousticsOpticsPhysics

MeSH terms

AcousticsAnimalsCattleEquipment DesignErythrocytesEscherichia coliMicrospheresParticle SizePolystyrenesMicrofluidic Analytical TechniquesCulture TechniquesMicrotechnology

Funding

  • National Science Foundation
  • Pennsylvania State University
Citations
701
FWCI
22.13
field-weighted impact
References
58
Percentile
100%
vs. same field & year
Citations per year
References
Dynamic single cell culture array
Lab on a Chip · 2006 · 707 citations
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