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Particle/cell manipulation and sorting with surface acoustic waves in a microfluidic device

机译:微流体设备中的粒子/细胞操纵和表面声波分类

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Microfluidic manipulation technology based on surface acoustic waves (SAWs) has great potential for improving biomedical and clinical practices including drug screening, sorting, and isolation of rare cells on a single-cell level via an induced acoustic force with high biocompatibility. However, previous works on the manipulation of particles/cells using acoustic methods primarily base on their intrinsic characteristics. Characteristics such as size and acoustic contrast offer low versatility and flexibility in applications for comprehensive sample treatments. Here we investigated the mechanical properties of particles and cells in response to SAWs in a microfluidic device, in which particles/cells deflect away from the main stream. In addition, the manipulation of water droplets in oil phase was also demonstrated, extending the fields of our interests to droplet microfluidics. We expect the results to be useful for high-throughput cell sorting in various biomedical-analytical settings.
机译:基于表面声波(锯)的微流体操作技术具有改善生物医学和临床实践的潜力,包括通过具有高生物相容性的诱导的声学力在单细胞水平上进行药物筛选,分类和分离稀有细胞的临床实践。然而,以前的作用用于使用声学方法操纵粒子/细胞,主要基于其固有特征。尺寸和声学对比等特性为综合样品处理提供了低通用性和灵活性。在这里,我们研究了响应于微流体装置中的锯的颗粒和细胞的力学性质,其中颗粒/细胞远离主流偏转。此外,还证明了油相中水滴的操纵,延长了我们兴趣的液体微流体。我们预计结果对于各种生物医学分析设置中的高吞吐量细胞分类是有用的。

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