4.7 Article

The acoustic radiation force of a focused ultrasound beam on a suspended eukaryotic cell

期刊

ULTRASONICS
卷 108, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.ultras.2020.106205

关键词

Acoustic radiation force; Gaussian wave; Three layered shell; Eukaryotic cell; Acoustofluidics

资金

  1. National Natural Science Foundation of China [11772248, 11532009, 11761131003, 11972185, U1737107]
  2. US National Science Foundation [CMMI 1548571]
  3. Open Fund of the State Key Laboratory of Mechanics and Control of Mechanical Structures [MCMS-E0219K02, MCMS-I-0219K01]

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Although ultrasound tools for manipulating and permeabilizing suspended cells have been available for nearly a century, accurate prediction of the distribution of acoustic radiation force (ARF) continues to be a challenge. We therefore developed an analytical model of the acoustic radiation force (ARF) generated by a focused Gaussian ultrasound beam incident on a eukaryotic cell immersed in an ideal fluid. The model had three layers corresponding to the nucleus, cytoplasm, and membrane, of a eukaryotic cell. We derived an exact expression for the ARF in relation to the geometrical and acoustic parameters of the model cell components. The mechanics of the cell membrane and nucleus, the relative width of the Gaussian beam, the size, position and aspect ratio of the cell had significant influence on the ARF. The model provides a theoretical basis for improved acoustic control of cell trapping, cell sorting, cell assembly, and drug delivery.

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