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用于分离可变形 CTC 的 DLD 微流控装置的性能优化。

Performance optimization of a DLD microfluidic device for separating deformable CTCs.

机构信息

Department of Mechanical Engineering, Shahrekord University, Shahrekord, Iran.

出版信息

Electrophoresis. 2024 Oct;45(19-20):1775-1784. doi: 10.1002/elps.202400136. Epub 2024 Aug 14.

Abstract

Deterministic lateral displacement (DLD) microfluidic devices work based on the streamlines created by an array of micro-posts. The configuration of pillars alters the isolation efficiency of these devices. The present paper optimizes the performance of a DLD device for isolating deformable circulating tumor cells. The input variables include cell diameter (d), Young's modulus ( ), Reynolds number (R), and tan θ, where θ is the tilted angle of micro-posts. The output, which is the response of the system, is DLD. The numerical simulation results are employed to optimize the device using the response surface method, leading to the proposition of a correlation to estimate DLD as a function of input variables. It is demonstrated that the maximum and minimum impacts on cell lateral displacement correspond to and R, respectively.

摘要

确定性侧向位移(DLD)微流控装置基于微柱阵列产生的流线工作。支柱的配置改变了这些设备的隔离效率。本文优化了用于分离可变形循环肿瘤细胞的 DLD 装置的性能。输入变量包括细胞直径(d)、杨氏模量( )、雷诺数(R)和 tanθ,其中θ是微柱的倾斜角度。输出,即系统的响应,是 DLD。使用响应面法对数值模拟结果进行优化,得到了一个关联式,以估计 DLD 作为输入变量的函数。结果表明,对细胞侧向位移的最大和最小影响分别对应于 和 R。

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