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利用光学相干断层扫描和微流控装置对人体血液中的形态学成分进行鉴别。

Differentiation of morphotic elements in human blood using optical coherence tomography and a microfluidic setup.

作者信息

Ossowski Paweł, Raiter-Smiljanic Anna, Szkulmowska Anna, Bukowska Danuta, Wiese Małgorzata, Derzsi Ladislav, Eljaszewicz Andrzej, Garstecki Piotr, Wojtkowski Maciej

出版信息

Opt Express. 2015 Oct 19;23(21):27724-38. doi: 10.1364/OE.23.027724.

Abstract

We demonstrate a novel optical method for the detection and differentiation between erythrocytes and leukocytes that uses amplitude and phase information provided by optical coherence tomography (OCT). Biological cells can introduce significant phase modulation with substantial scattering anisotropy and dominant forward-scattered light. Such physical properties may favor the use of a trans-illumination imaging technique. However, an epi-illumination mode may be more practical and robust in many applications. This study describes a new way of measuring the phase modulation introduced by flowing microobjects. The novel part of this invention is that it uses the backscattered signal from the substrate located below the flowing/moving objects. The identification of cells is based on phase-sensitive OCT signals. To differentiate single cells, a custom-designed microfluidic device with a highly scattering substrate is introduced. The microchannels are molded in polydimethylsiloxane (PDMS) mixed with titanium dioxide (TiO2) to ensure high scattering properties. The statistical parameters of the measured signal depend on the cells' features, such as their size, shape, and internal structure.

摘要

我们展示了一种用于检测红细胞和白细胞并对其进行区分的新型光学方法,该方法利用光学相干断层扫描(OCT)提供的幅度和相位信息。生物细胞可通过显著的散射各向异性和占主导的前向散射光引入显著的相位调制。此类物理特性可能有利于采用透射成像技术。然而,在许多应用中,落射照明模式可能更实用且更稳健。本研究描述了一种测量流动微物体所引入的相位调制的新方法。本发明的新颖之处在于它利用位于流动/移动物体下方的基底的背向散射信号。细胞的识别基于相敏OCT信号。为了区分单个细胞,引入了一种定制设计的带有高散射基底的微流控装置。微通道由与二氧化钛(TiO₂)混合的聚二甲基硅氧烷(PDMS)制成,以确保高散射特性。所测信号的统计参数取决于细胞的特征,如大小、形状和内部结构。

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