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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A One-Sided Acoustic Trap for Cell Immobilization Using 30-MHz Array Transducer
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A One-Sided Acoustic Trap for Cell Immobilization Using 30-MHz Array Transducer

机译:使用30MHz阵列传感器固定细胞的单面声学陷阱

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Biological studies often involve the investigation of immobilized (or trapped) particles and cells. Various trapping methods without touching, such as optical, magnetic, and acoustic tweezers, have been developed to trap small particles. Here, we present the manipulation of a single cell or multiple cells using ultrasound-array-based single-beam acoustic tweezers (UA-SBATs). In SBATs, only a one-sided tightly focused acoustic beam produces a high acoustic gradient force-a mechanism that mirrors that of optical tweezers. As a result, targeted cells can be attracted to the beam center and immobilized within its trapping zone. Since an array transducer allows acoustic beam steering and scanning electronically instead of mechanical translation, it can manipulate cells more simply and quickly compared with single-element transducers, especially in biocompatible setup. In this experiment, a customized 30-MHz array transducer with an interdigitally bonded (IB) 2-2 piezocomposite was employed to immobilize MCF-12F cells. Cells were attracted to the center of the beam and laterally displaced with the array transducer without any damages to the cells. These findings suggest that UA-SBAT can be a promising tool for cell manipulation and may pave the way for exploring new biological applications.
机译:生物学研究通常涉及固定化(或捕获)的颗粒和细胞的研究。已经开发了各种不接触的捕获方法,例如光学,磁性和声学镊子,以捕获小颗粒。在这里,我们介绍使用基于超声阵列的单束声镊子(UA-SBATs)对单个细胞或多个细胞的操作。在SBAT中,只有一侧紧密聚焦的声束会产生高声梯度力-这种机制与光学镊子的镜象相同。结果,靶细胞可以被吸引到射线中心并固定在其捕获区域内。由于阵列换能器允许声束控制和电子扫描而不是机械平移,因此与单元素换能器相比,它可以更简单,更快速地操作细胞,尤其是在生物相容性设置中。在此实验中,采用具有叉指结合(IB)2-2压电复合材料的定制30 MHz阵列换能器固定MCF-12F细胞。细胞被吸引到光束的中心,并通过阵列换能器横向移位,而对细胞没有任何损害。这些发现表明,UA-SBAT可能是细胞操纵的有前途的工具,并可能为探索新的生物学应用铺平道路。

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