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A flow focusing microfluidic device with an integrated Coulter particle counter for production, counting and size characterization of monodisperse microbubbles

机译:一种流量聚焦微流体装置,具有集成的Coulter颗粒计数器,用于制造,计数和单分散微泡的尺寸表征

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Flow focusing microfluidic devices (FFMDs) have been investigated for the production of monodisperse populations of microbubbles for chemical, biomedical and mechanical engineering applications. High-speed optical microscopy is commonly used to monitor FFMD microbubble production parameters, such as diameter and production rate, but this limits the scalability and portability of the approach. In this work, a novel FFMD design featuring integrated electronics for measuring microbubble diameters and production rates is presented. A micro Coulter particle counter (CPC), using electrodes integrated within the expanding nozzle of an FFMD (FFMD-CPC), was designed, fabricated and tested. Finite element analysis (FEA) of optimal electrode geometry was performed and validated with experimental data. Electrical data was collected for 8-20 m diameter microbubbles at production rates up to 3.25 x 10(5) MB s(-1) and compared to both high-speed microscopy data and FEA simulations. Within a valid operating regime, Coulter counts of microbubble production rates matched optical reference values. The Coulter method agreed with the optical reference method in evaluating the microbubble diameter to a coefficient of determination of R-2 = 0.91.
机译:已经研究了流量聚焦微流体装置(FFMDS)用于制造用于化学,生物医学和机械工程应用的微泡的单分散群体。高速光学显微镜通常用于监测FFMD Microbbble生产参数,例如直径和生产率,但这限制了方法的可扩展性和可移植性。在这项工作中,提出了一种用于测量微泡直径和生产率的集成电子产品的新型FFMD设计。使用集成在FFMD(FFMD-CPC)的膨胀喷嘴内的电极进行微型耦合粒子计数器(CPC),设计,制造和测试。使用实验数据进行最佳电极几何形状的有限元分析(FEA)并验证。电气数据在高达3.25×10(5)MB S(-1)的生产速率下收集8-20米的微泡,并与高速显微镜数据和FEA模拟相比。在有效的操作方案中,Microbble生产率的Coulter计数匹配的光学参考值。 Coulter方法与光学参考方法同意评估微泡直径到R-2 = 0.91的测定系数。

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