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Three-Dimensional Holographic Refractive-Index Measurement ofContinuously Flowing Cells in a Microfluidic Channel

机译:三维全息折射率的测量。微流控通道中连续流动的细胞

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摘要

Refractive index of biological specimens is a source of intrinsic contrast that can be explored without any concerns of photobleaching or harmful effects caused by extra contrast agents. In addition, RI contains rich information related to the metabolism of cells at the cellular and subcellular levels. Here, we report a no-moving parts approach that provides three-dimensional refractive index maps of biological samples continuously flowing in a microfluidic channel. Specifically, we use line illumination and off-axis digital holography to record the angular spectra of light scattered from flowing samples at high speed. Applying the scalar diffraction theory, we obtain accurate RI maps of the samples from the measured spectra. Using this method, we demonstrate label-free 3-D imaging of live RKO human colon cancer cells and RPMI8226 multiple myeloma cells, and obtain the volume, dry mass and density of these cells from the measured 3-D refractive index maps. Our results show that the reported method, alone or in combination with the existing flow cytometry techniques, promises as a quantitative tool for stain-free characterization of large number of cells.
机译:生物样本的折射率是内在对比度的来源,可以进行探索而无需担心由额外的造影剂引起的光致漂白或有害影响。另外,RI在细胞和亚细胞水平上包含与细胞代谢有关的丰富信息。在这里,我们报告了一种不动零件的方法,该方法提供了在微流体通道中连续流动的生物样品的三维折射率图。具体来说,我们使用线照明和离轴数字全息术来记录从流动样本高速散射的光的角谱。应用标量衍射理论,我们从测得的光谱中获得了样品的准确RI图。使用这种方法,我们演示了实时RKO人结肠癌细胞和RPMI8226多发性骨髓瘤细胞的无标记3-D成像,并从测量的3-D折射率图获得了这些细胞的体积,干重和密度。我们的结果表明,所报道的方法单独或与现有流式细胞仪技术结合使用,有望作为定量工具对大量细胞进行无污染表征。

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