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Ultra-low aspect ratio spiral microchannel with ordered micro-bars for flow- rate insensitive blood plasma extraction

机译:超低纵横比螺旋微通道,具有有序微杆的流量不敏感血浆萃取

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摘要

The ability to regulate secondary flow is significant for efficient particle/cell focusing. Microfluidic technologies have accomplished impressive progress in particle/cell manipulation with the help of the Dean effect. Herein, we explored blood cell focusing with the ultra-low aspect ratio inertial microfluidic system which uses the geometric confinement to enhance the secondary flows to different degrees. Introducing a series of micro-bars in the spiral microchannels accelerates the secondary flow, which can greatly enhance highly-efficient particle/cell focusing under various flow rates. Further, plasma extraction can be successfully achieved from 15 x diluted whole blood in an easy-to-use (without the assistance of sheath fluid and complex manufacturing of multi-layer structure), high and wide flow rates (1-5 mL/min, exhibiting no parallel construction design), long-term (at least 60 min), stable (processing at least 300 mL blood samples with consistent efficiency), and highly-efficient (99.99% blood cell rejection ratio) manner. Compared with previously-reported technologies, the engineering strategy of secondary flow in our designed dimension-confined spiral channel provides a balanced overall performance for plasma separation pointing to ease-to-fabrication, insensitive to flow-rate, high throughput and operation efficiency.
机译:用于调节二次流动的能力对于有效的粒子/细胞聚焦是显着的。在Dean效果的帮助下,微流体技术在粒子/细胞操纵中实现了令人印象深刻的进展。在此,我们探讨了具有超低纵横比惯性微流体系统的血细胞,该系统使用几何限制来增强二次流量​​到不同程度。在螺旋微通道中引入一系列微杆加速了二次流量,这可以大大提高各种流速下的高效粒子/电池聚焦。此外,可以在易于使用的(无需鞘液的辅助和多层结构的复杂制造)中,从15倍稀释的全血中成功地实现血浆萃取,流量高,流量宽,流量宽(1-5ml / min) ,没有平行施工设计,长期(至少60分钟),稳定(加工至少300毫升血液样品,效率一致),高效(99.99%的血液细胞排斥比)。与先前报告的技术相比,我们设计的尺寸限制螺旋通道中二次流动的工程策略为等离子体分离提供了平衡的整体性能,指向易于制造,对流速,高通量和操作效率不敏感。

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