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Real-time pressure monitoring system for microfluidic devices using deformable colloidal crystal membrane

机译:可变形胶体晶体膜的微流体装置实时压力监测系统

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摘要

Understanding the hydrodynamic behavior in microfluidic devices is crucial for utilization of these systems in lab-on-a-chip applications. However, hydrodynamic capacitance in microfluidic devices causes a delay and mismatch between the applied pressure and actual pressure in the microchannel. Therefore, real-time monitoring of the site-specific internal pressure in microchannels is important for designing the operating conditions of the system. We introduce a deformable colloidal crystal membrane composed of polystyrene (PS) colloidal crystals and poly(dimethylsiloxane) (PDMS) and its integration into a PDMS microfluidic device. As pressure is applied to the device, the optical intensity reflected back from the colloidal crystal membrane changes due to membrane deformation. The optical signal originating from structural deformation of the colloidal crystal membrane allows the realization of a real-time pressure monitoring system, as no external apparatus or powering devices are required for signal processing. The internal pressure in microfluidic devices was also monitored to investigate the effect of the hydrodynamic capacitance during pressure application.
机译:了解微流体装置中的流体动力学行为对于利用这些系统在芯片应用中是至关重要的。然而,微流体装置中的流体动力学电容导致微通道中施加的压力和实际压力之间的延迟和不匹配。因此,在微通道中的场地特定内部压力的实时监测对于设计系统的操作条件非常重要。我们介绍由聚苯乙烯(PS)胶体晶体和聚(二甲基硅氧烷)(PDMS)组成的可变形的胶体晶体膜及其在PDMS微流体装置中的整合。随着压力施加到装置上,由于膜变形,从胶体晶体膜变化反射的光学强度。源自胶体晶体膜的结构变形的光信号允许实现实时压力监测系统,因为信号处理不需要外部设备或供电设备。还监测微流体装置的内部压力以研究压力施加期间的流体动力学电容的影响。

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