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菲涅耳透镜型多阱声镊的设计

Design of Fresnel Lens-Type Multi-Trapping Acoustic Tweezers.

作者信息

Tu You-Lin, Chen Shih-Jui, Hwang Yean-Ren

机构信息

Department of Mechanical Engineering, National Central University, Taoyuan 32001, Taiwan.

出版信息

Sensors (Basel). 2016 Nov 23;16(11):1973. doi: 10.3390/s16111973.

Abstract

In this paper, acoustic tweezers which use beam forming performed by a Fresnel zone plate are proposed. The performance has been demonstrated by finite element analysis, including the acoustic intensity, acoustic pressure, acoustic potential energy, gradient force, and particle distribution. The acoustic tweezers use an ultrasound beam produced by a lead zirconate titanate (PZT) transducer operating at 2.4 MHz and 100 V in a water medium. The design of the Fresnel lens (zone plate) is based on air reflection, acoustic impedance matching, and the Fresnel half-wave band (FHWB) theory. This acoustic Fresnel lens can produce gradient force and acoustic potential wells that allow the capture and manipulation of single particles or clusters of particles. Simulation results strongly indicate a good trapping ability, for particles under 150 µm in diameter, in the minimum energy location. This can be useful for cell or microorganism manipulation.

摘要

本文提出了一种利用菲涅耳波带片进行波束形成的声镊。通过有限元分析证明了其性能,包括声强、声压、声势能、梯度力和粒子分布。该声镊在水介质中使用由工作在2.4 MHz和100 V的锆钛酸铅(PZT)换能器产生的超声束。菲涅耳透镜(波带片)的设计基于空气反射、声阻抗匹配和菲涅耳半波带(FHWB)理论。这种声学菲涅耳透镜可以产生梯度力和声势阱,从而实现对单个粒子或粒子团簇的捕获和操纵。模拟结果有力地表明,对于直径小于150 µm的粒子,在最小能量位置具有良好的捕获能力。这对于细胞或微生物的操纵可能是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db27/5134631/7939f13935e6/sensors-16-01973-g001.jpg

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