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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Noninvasive fluid flow measurements in microfluidic channels with backscatter interferometry.
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Noninvasive fluid flow measurements in microfluidic channels with backscatter interferometry.

机译:利用反向散射干涉测量技术在微流体通道中进行无创流体流量测量。

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摘要

The ability to measure fluid velocity within picoliter volumes or on-chip noninvasively, is important toward fully realizing the potential of microfluidics and micrototal analysis systems, particularly in applications such as micro-high-performance liquid chromatography (HPLC) or in metering mixing where the flow rate must be quantified. Additionally, these measurements need to be performed directly on moving fluids in a noninvasive fashion. We presented here the proof of principle experiments showing nonintrusive fluid flow measurements can be accomplished on-chip using a pump and probe configuration with backscattering interferometry. The on-chip interferometric backscatter detector (OCIBD) is based on a fiber-coupled HeNe laser that illuminates a portion of an isotropically etched 40 mum radius channel and a position sensitive transducer to measure fringe pattern shifts. An infrared laser with a mechanical shutter is used to heat a section of a flowing volume and the resulting refractive index (RI) change is detected with the OCIBD downstream as a time-dependent RI perturbation. Fluid velocity is quantified as changes in the phase difference between the shutter signal and the OCIBD detected signal in the Fourier domain. The experiments are performed in the range of 3-6 muL/h with 3sigma detection limits determined to be 0.127 nL/s. Additionally, the RI response of the system is calibrated using temperature changes as well as glycerol solutions.
机译:在皮升体积内或无创地测量流体速度的能力对于完全实现微流体和微总分析系统的潜力非常重要,特别是在微高效液相色谱(HPLC)或计量混合等应用中。流量必须量化。另外,这些测量需要以无创方式直接在运动的流体上执行。我们在这里介绍了原理性实验的证明,表明非侵入性流体流量测量可以使用带有反向散射干涉测量技术的泵和探头配置在芯片上完成。片上干涉背向散射检测器(OCIBD)基于光纤耦合的HeNe激光器,该激光器照射各向同性刻蚀的40um半径通道和位置敏感传感器,以测量条纹图案偏移。具有机械快门的红外激光器用于加热一部分流量,并通过下游的OCIBD检测到所产生的折射率(RI)变化,这是与时间有关的RI扰动。流体速度被量化为在傅立叶域中快门信号和OCIBD检测到的信号之间的相位差的变化。实验在3-6 muL / h的范围内进行,确定的3sigma检测极限为0.127 nL / s。此外,系统的RI响应使用温度变化以及甘油溶液进行校准。

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