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Enhancing Lab-on-a-Chip Performance via Tunable Parallel Liquid Mircolens Arrays

机译:通过可调谐并联液体Mircolens阵列增强实验室内芯片性能

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Pathogen detection increasingly shows significance not only for hospital laboratories, but also for in-field usage. Nowadays the microfabrication technologies give us the possibility to integrate optical devices for detection and microfluidic channels for fluorescein-labeled pathogen suspension into a single chip (i.e. optofluidics), thus providing simple, sensitive and inexpensive methods of pathogen detection. One interesting optofluidic component is a microlens whose optical axis is parallel to the substrate used. We hereby report an in situ formed tunable liquid microlens array and its applications for dynamic lab-on-a-chip, such as enhancing fluorescence emission in and detection of laminar fluid flows, and characterizing surface reaction. The de-ionized water microlenses are intrinsically formed via liquid-air interfaces of liquid droplets, whose positions are precisely controlled by air/liquid injection and pinned at T-shaped junctions of octadecyltrichlorosilane(OTS) treated polymerized isobornyl acrylate(poly(IBA)) microchannels. By pneumatic manipulation inside the channel, the microlenses can be separately tuned in focal lengths along the microchannels parallel to the substrate. Then via the tunable microlenses, excitation light is dynamically focused onto fluorescent fluidic samples, and thus the fluorescence emission signal for detection is significantly increased compared to the case without the microlenses, as a result of the enhancement of the fluorescence excitation.
机译:病原体检测日益显示出不仅为医院的实验室,也为在现场使用的意义。时下微制造技术给我们的检测和微流体通道用于荧光素标记的病原体悬浮光学设备集成到单个芯片(即光流控),从而提供简单,病原体检测的灵敏且廉价的方法的可能性。一个有趣的光学流控部件是微透镜,其光轴平行于所使用的基板。我们在此报告一个在原位形成的可调谐液体微透镜阵列及其应用动态实验室上的单芯片,例如在增强荧光发射和层状流体流的检测,和表征表面反应。去离子水的微透镜经由液滴,其位置由空气/液体喷射的精确控制和被钉扎在十八烷基三氯硅烷的T形结(OTS)处理聚合丙烯酸异冰片酯的液体 - 空气界面固有形成(聚(IBA))微通道。由信道内气动操纵,微透镜可以单独在焦距调整沿着微通道平行于衬底。然后经由可调微透镜,激发光被动态地聚焦到荧光流体样品,并且因此用于检测的荧光发射信号相比于没有微透镜的情况下,显著增加,作为荧光激发的提高的结果。

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