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Non-Linear Optical Flow Cytometry Using a Scanned Bessel Beam Light-Sheet

机译:使用扫描贝塞尔光束光片的非线性光学流式细胞仪

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摘要

Modern flow cytometry instruments have become vital tools for high-throughput analysis of single cells. However, as issues with the cellular labeling techniques often used in flow cytometry have become more of a concern, the development of label-free modalities for cellular analysis is increasingly desired. Non-linear optical phenomena (NLO) are of growing interest for label-free analysis because of the ability to measure the intrinsic optical response of biomolecules found in cells. We demonstrate that a light-sheet consisting of a scanned Bessel beam is an optimal excitation geometry for efficiently generating NLO signals in a microfluidic environment. The balance of photon density and cross-sectional area provided by the light-sheet allowed significantly larger two-photon fluorescence intensities to be measured in a model polystyrene microparticle system compared to measurements made using other excitation focal geometries, including a relaxed Gaussian excitation beam often used in conventional flow cytometers.
机译:现代流式细胞仪已经成为单细胞高通量分析的重要工具。然而,由于经常在流式细胞术中使用的细胞标记技术的问题已成为人们越来越关注的问题,因此越来越需要开发用于细胞分析的无标记方法。非线性光学现象(NLO)在无标记分析中引起了越来越多的兴趣,因为它能够测量细胞中发现的生物分子的固有光学响应。我们证明了由扫描的贝塞尔光束组成的光片是在微流体环境中有效生成NLO信号的最佳激发几何。与使用其他激发焦点几何结构(包括通常的弛豫高斯激发光束)进行的测量相比,光薄片提供的光子密度和横截面积的平衡使得在模型聚苯乙烯微粒系统中可以测量到明显更大的双光子荧光强度。用于常规流式细胞仪。

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