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使用光纤锥的无透镜荧光片上显微镜技术。

Lensless fluorescent on-chip microscopy using a fiber-optic taper.

作者信息

Coskun Ahmet F, Sencan Ikbal, Su Ting-Wei, Ozcan Aydogan

机构信息

Electrical Engineering Department, University of California, Los Angeles, CA 90095, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:5981-4. doi: 10.1109/IEMBS.2011.6091478.

Abstract

We demonstrate a lensfree on-chip fluorescent microscopy platform that can image fluorescently labeled cells over ~60 mm(2) field-of-view with <4 urn spatial resolution. In this lensfree imaging system, micro-objects of interest are directly located on a tapered fiber-optic faceplate which has > 5-fold higher density of fiber-optic waveguides in its top facet compared to the bottom facet. For excitation, an incoherent light source (e.g., a simple light emitting diode--LED) is used to pump fluorescent objects through a glass hemi-sphere interface. Upon interacting with the entire sample volume, the excitation light is rejected by total internal reflection process occurring at the bottom of the sample substrate. Fluorescent emission from the objects is then collected by the smaller facet of the tapered faceplate and is delivered to a detector-array with an image magnification of ~2.4X. A compressive sampling based decoding algorithm is used for sparse signal recovery, which further increases the space-bandwidth-product of our lensfree on-chip fluorescent imager. We validated the performance of this lensfree imaging platform using fluorescent micro-particles as well as labeled water-borne parasites (e.g., Giardia Muris cysts). Such a compact and wide-field fluorescent microscopy platform could be valuable for cytometry and rare cell imaging applications as well as for micro array research.

摘要

我们展示了一种无透镜片上荧光显微镜平台,该平台能够在约60平方毫米的视场上对荧光标记的细胞进行成像,空间分辨率小于4微米。在这个无透镜成像系统中,感兴趣的微小物体直接位于一个锥形光纤面板上,该面板顶面的光纤波导密度比底面高5倍以上。为了进行激发,使用非相干光源(例如,一个简单的发光二极管——LED)通过玻璃半球形界面来激发荧光物体。在与整个样品体积相互作用后,激发光通过样品基板底部发生的全内反射过程被反射掉。然后,物体发出的荧光由锥形面板较小的面收集,并被传送到探测器阵列,图像放大倍数约为2.4倍。基于压缩采样的解码算法用于稀疏信号恢复,这进一步提高了我们的无透镜片上荧光成像仪的空间带宽积。我们使用荧光微颗粒以及标记的水生寄生虫(例如,贾第虫囊肿)验证了这个无透镜成像平台的性能。这样一个紧凑且宽视场的荧光显微镜平台对于细胞计数和稀有细胞成像应用以及微阵列研究可能具有重要价值。

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Lensless fluorescent on-chip microscopy using a fiber-optic taper.使用光纤锥的无透镜荧光片上显微镜技术。
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