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Abstract

Although previously developed Dielectrophoresis activated cell sorters (DACSes) have achieved high separation efficiency, limitations still exist with respect to the low throughput. In this paper, therefore, a numerical analysis is presented for a novel DACS to achieve not only high efficiency but also high throughput. Additionally, experimental validation is performed based on the results of a numerical simulation. First, streamlines in the channel are investigated according to various flow rate ratios in each outlet. After cells are deflected by a sufficient amount of dielectrophoretic force, they arrive at the tip of the last electrode pair. Their movement is then determined by hydrodynamic force. Therefore, it is important to confirm whether or not the streamline at the tip of the last electrode pair connects to the target area. Based on the streamline analysis results, the particle trajectory under various AC electric fields is investigated using a three-dimensional analysis. Accordingly, an input voltage condition (7 Vp-p at 10 kHz) is selected to confirm the influence of dielectrophoretic force. Conclusively, optimal flow rates under the determined input voltage condition are selected as 10 μl/min and 20 μl/min in outlet A (target area) and outlet B (non-target area), respectively. In order to validate the feasibility of the selected flow rates, a separation test is performed employing a K562 cell–bone marrow cancer cell–as a target cell. In the experiment, the proposed DACS achieves a high throughput of 45000 cells/min as well as a separation efficiency of 96.5% and recovery rate of 47.25%.

Details

Title
Numerical simulation and experimental validation for a novel dielectrophoresis activated cell sorter to achieve high throughput and efficiency
Author
Hwang Bohyun 1 ; Lee, Dongkyu 1 ; Kim, Byungkyu 1 ; Lee, Jaewook 1 

 Korea Aerospace University, School of Aerospace and Mechanical Engineering, Goyang-si, Korea (GRID:grid.440941.c) (ISNI:0000000098813149) 
Publication title
Volume
30
Issue
8
Pages
3749-3755
Publication year
2016
Publication date
Aug 2016
Publisher
Springer Nature B.V.
Place of publication
Heidelberg
Country of publication
Netherlands
ISSN
1738494X
e-ISSN
19763824
Source type
Scholarly Journal
Language of publication
English
Document type
Journal Article
Publication history
 
 
Online publication date
2016-08-19
Milestone dates
2016-08-16 (Registration); 2016-01-13 (Received); 2016-04-25 (Accepted); 2016-04-06 (Rev-Recd)
Publication history
 
 
   First posting date
19 Aug 2016
ProQuest document ID
2001517466
Document URL
https://www.proquest.com/scholarly-journals/numerical-simulation-experimental-validation/docview/2001517466/se-2?accountid=208611
Copyright
© The Korean Society of Mechanical Engineers and Springer-Verlag Berlin Heidelberg 2016.
Last updated
2023-11-27
Database
2 databases
  • ProQuest One Academic
  • ProQuest One Academic