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Spatial selective manipulation of microbubbles by tunable surface acoustic waves

机译:可调谐表面声波对微泡的空间选择性处理

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摘要

A microfluidic device based on a pair of slant-finger interdigital transducers (SFITs) is developed to achieve a selective and flexible manipulation of microbubbles (MBs) by surface acoustic waves (SAWs). The resonance frequency of SAWs generated by the SFITs depends on the location of its parallel pathway; the particles at different locations of the SAWs' pathway can be controlled selectively by choosing the frequency of the excitation signal applied on the SFITs. By adjusting the input signal continuously, MBs can be transported along the acoustic aperture precisely. The displacement of MBs has a linear relationship with the frequency shift. The resolution of transportation is 15.19 ± 2.65 μm when the shift of input signal frequency is at a step of 10 kHz. In addition, the MBs can be controlled in a two-dimensional plane by combining variations of the frequency and the relative phase of the excitation signal applied on the SFITs simultaneously. This technology may open up the possibility of selectively and flexibly manipulating MBs using a simple one-dimensional device.
机译:开发了一种基于一对斜指叉指式换能器(SFIT)的微流控设备,以通过表面声波(SAW)实现对微气泡(MB)的选择性和灵活操纵。 SFIT产生的SAW的谐振频率取决于其平行路径的位置。通过选择施加在SFIT上的激励信号的频率,可以选择性地控制SAW路径不同位置的粒子。通过连续调节输入信号,MB可以精确地沿着声孔传输。 MB的位移与频率偏移具有线性关系。当输入信号频率的移动幅度为10 kHz时,传输分辨率为15.19±2.65μm。另外,通过组合同时施加在SFIT上的激励信号的频率和相对相位的变化,可以在二维平面中控制MB。这项技术可能会打开使用简单的一维设备选择性地灵活操作MB的可能性。

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