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利用数字全息术对混浊微流控通道中的显微镜成像和定量相位对比进行映射。

Microscopy imaging and quantitative phase contrast mapping in turbid microfluidic channels by digital holography.

机构信息

CNR-National Institute of Optics, Via Campi Flegrei, 34, I-80078, Pozzuoli (NA), Italy.

出版信息

Lab Chip. 2012 Sep 7;12(17):3073-6. doi: 10.1039/c2lc40114b. Epub 2012 Jun 28.

Abstract

We show that sharp imaging and quantitative phase-contrast microcopy is possible in microfluidics in flowing turbid media by digital holography. In fact, in flowing liquids with suspended colloidal particles, clear vision is hindered and cannot be recovered by any other microscopic imaging technique. On the contrary, using digital holography, clear imaging is possible thanks to the Doppler frequency shift experienced by the photons scattered by the flowing colloidal particles, which do not contribute to the interference process, i.e. the recorded hologram. The method is illustrated and imaging results are demonstrated for pure phase objects, i.e. biological cells in microfluidic channels.

摘要

我们通过数字全息术证明,在流动浑浊介质中的微流控中可以实现清晰的成像和定量相位对比显微镜。实际上,在含有悬浮胶体颗粒的流动液体中,任何其他微观成像技术都无法恢复清晰的视野。相反,使用数字全息术,由于被流动胶体颗粒散射的光子经历多普勒频移,因此可以实现清晰的成像,这些光子不参与干涉过程,即记录的全息图。本文说明了该方法,并展示了用于纯相位物体(即微流道中的生物细胞)的成像结果。

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