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Combination Ultrasonic- Dielectrophoretic Particle Traps for Particle Trapping and Sample Purification in a Microfluidic Channel

机译:微流体通道中颗粒捕获和样品净化的组合超声波介电泳疏水膜

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Ultrasonic and dielectrophoretic particle manipulation have been studied for particle trajectory modification and particle trapping in microfluidic channels. We report an approach that combines dielectrophoresis (DEP) and ultrasonic fields to trap and concentrate particles and cells in an aqueous suspension. By simultaneously applying electric and ultrasonic fields to the sample, the favorable attributes of each field-based manipulation technique can be utilized. Additionally, the parameter space for sorting particles by intrinsic properties spans both acoustic (density and compressibility) and dielectric properties. Particle sorting and trapping efficiency against on-chip flow are evaluated. Two different experimental situations are presented (ⅰ) non-resonant ultrasonic excitation, and (ⅱ) resonant ultrasonic excitation.
机译:已经研究了微流体通道颗粒轨迹改性和颗粒捕获的超声波和介电泳粒子操纵。我们报告了一种将介电泳(DEP)和超声波场结合在水性悬浮液中捕获和浓缩颗粒和细胞的方法。通过将电气和超声波场同时施加到样品中,可以利用每个基于场的操纵技术的有利属性。另外,通过固有特性进行分选粒子的参数空间跨越声学(密度和可压缩性)和介电性能。评估粒子分选和捕获效率的片上流。提出了两种不同的实验情况(Ⅰ)非共振超声波激发,(Ⅱ)谐振超声波激发。

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