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A SU-8/PDMS Hybrid Microfluidic Device with Integrated Optical Fibers for Online Monitoring of Lactate

机译:具有集成光纤的SU-8 / PDMS混合微流体装置,用于在线监测乳酸

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摘要

A microfluidic device with integrated optical fibres was developed for online monitoring of lactate. The device consists of a SU-8 waveguide, microfluidic channels and grooves for the insertion of optic fibres. It was fabricated by one-step photolithography of SU-8 polymer resist. Different channel widths (50-300 μm) were tested in terms of detection sensitivity. A wide range of flow rates were applied to investigate the influence of flow rate on signal fluctuations. The separation between optical fibre sensor and microfluidic channel and the width of fluidic channel have been optimized to maximize the detection sensitivity. It was revealed that 250 μm of channel width is the optimum light path length for a compromise between detection sensitivity and interference of ambient light. The independence of detection signals on flow rates was demonstrated within the range of flow rate (0.5-5 ml/hr) tested. Compared with conventional lactate detection, the device is proved to have high accuracy, relatively low limit of detection (50 mg/L) and reasonably fast response time (100 sec). The fabrication of device is simple and low cost. The present work has provided some fundamental data for further system optimization to meet specific detection requirements.
机译:开发了具有集成光纤的微流控设备,用于在线监测乳酸。该设备由SU-8波导,微流体通道和用于插入光纤的凹槽组成。它是通过SU-8聚合物抗蚀剂的一步光刻技术制造的。就检测灵敏度而言,测试了不同的通道宽度(50-300μm)。应用了广泛的流速来研究流速对信号波动的影响。光纤传感器和微流体通道之间的间隔以及流体通道的宽度已经过优化,以最大化检测灵敏度。结果表明,在检测灵敏度和环境光干扰之间折衷的最佳通道长度为250μm。在所测试的流速(0.5-5 ml / hr)范围内证明了检测信号对流速的独立性。与传统的乳酸检测相比,该设备具有较高的准确度,较低的检测下限(50 mg / L)和相当快的响应时间(100 sec)。装置的制造简单且成本低。目前的工作为进一步的系统优化提供了一些基础数据,以满足特定的检测要求。

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