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Cross-Talk Problem on a Fluorescence Multi-Channel Microfluidic Chip System

机译:荧光多通道微流控芯片系统上的交叉对话问题

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摘要

Development of a compact fluorescence-based detection system for use in a micro-analytical system, such as a point-of-care diagnostic system, often requires a multi-channel microfluidic chip system. Since the materials used for microfluidic chips usually are transparent in the visible region and have a refractive indices higher than that of air or the surrounding environment, the fluorescence emission and scattered excitation light can propagate through the chip. We observed that such propagation can cause cross-talk between adjacent channels, and may become the major source of noise in the system and/or photobleach the fluorescent samples in the adjacent channels, particularly for the small distances between the channels found in microfluidic chips, usually in order of several μm. We monitored this cross-talk using fluorescein as a fluorescent sample and Mylar sheeting as a microfluidic chip material. We then discuss how this cross-talk can be avoided using a simple, inexpensive and effective method.
机译:为了在诸如护理点诊断系统之类的微分析系统中使用的紧凑的基于荧光的检测系统的开发,通常需要多通道微流体芯片系统。由于用于微流体芯片的材料通常在可见光区域是透明的,并且具有比空气或周围环境更高的折射率,因此荧光发射和散射的激发光可以传播通过芯片。我们观察到,这种传播会导致相邻通道之间发生串扰,并且可能成为系统中的主要噪声源和/或光漂白相邻通道中的荧光样本,尤其是对于微流控芯片中通道之间的小距离而言,通常为几微米。我们使用荧光素作为荧光样品和聚脂薄膜作为微流控芯片材料来监测这种串扰。然后,我们讨论如何使用简单,廉价和有效的方法来避免这种串扰。

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