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Parallel output, liquid flooded flow-focusing microfluidic device for generating monodisperse microbubbles within a catheter

机译:平行输出,液体泛气的流动聚焦微流体装置,用于在导管内产生单分散微泡

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A new method for supplying the liquid phase to a flow focusing microfluidic device (FFMD), designed for the production of monodisperse microbubbles (MBs), is introduced. The FFMD is coupled to a pressurized liquid-filled chamber, avoiding the need for dedicated liquid phase tubing or interconnects from the external field to the microfluidics device. This method significantly reduces the complexity of FFMD fabrication and simplifies the parallelization of FFMDs - an important consideration for increasing MB production rate. Using this new method, flooded FFMDs were fabricated and MB diameter and production rate were measured. The minimum MB size produced was 7.1±0.5 µm. The maximum production rate from a single nozzle FFMD was 333,000, MB/s. Production was increased 1.5-fold using a two nozzle, parallelized device, for a maximum production rate of approximately 500,000 MB/s. In addition to increased production, the flooded design allows for miniaturization, with the smallest FFMD measuring 14.5 × 2.8 × 2.3 mm. Finally, B-mode and intravascular ultrasound images were obtained, highlighting the potential for flooded FFMDs to generate microbubbles in situ in a catheter and immediately thereafter image the same MBs in a target blood vessel.
机译:介绍了一种用于将液相提供给流动聚焦微流体装置(FFMD)的新方法,该装置设计用于制造单分散微泡(MBS)。 FFMD耦合到加压液体填充室,避免对专用液相管或从外部场互连到微流体装置的需要。该方法显着降低了FFMD制造的复杂性,并简化了FFMDS的并行化 - 一种增加MB生产率的重要考虑因素。使用这种新方法,制造了泛滥的FFMD,测定了MB直径和生产率。产生的最小MB尺寸为7.1±0.5μm。单个喷嘴FFMD的最大生产率为333,000,MB / s。使用两个喷嘴,并行化器件的生产增加1.5倍,最大的生产率约为500,000 MB / s。除了增加产量外,洪水设计还允许小型化,最小的FFMD测量为14.5×2.8×2.3毫米。最后,获得了B模式和血管内超声图像,突出了泛气FFMDS的电位,以在导管中原位产生微泡,然后立即在目标血管中进行相同的MB。

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