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Fluctuation of probe beam in thermolens schematics as potential indicator of cell metabolism, apoptosis, necrosis and laser impact

机译:热敏原理图中探针光束的波动作为细胞代谢,细胞凋亡,坏死和激光冲击的潜在指标

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Recently we discovered that in developed integrated flow cytometry using combination high resolution transmission and two beam (pump-probe) of photothermal microscopy with flow module the temporal fluctuation of probe beam even without pump laser pulse are very sensitive to functional states of single cells (e.g. with 2-3 differences in average fluctuation amplitude for live and dead cells). In this paper we are focusing on theoretical and experimental studies of these new phenomena using thermolens schematics with highly stabilized continuous-wave He-Ne laser and photodiode/photomultiplier with pinhole. This scheme allows to study both random and laser-induced thermolens effects in passive and active mode including short and long term monitoring of scattered light fluctuation in trans-illumination mode at single cellular and even sub-cellular levels in vitro, and in vivo. We demonstrate these schematics has some potential to monitor intracellular dynamics including change in cell metabolism, and necrosis, especially, under pump laser impacts in vitro in stationary condition. Besides, we present some relevant data obtained with other similar schematics, including evaluation of bacterial motility by dynamic light scattering. We discuss further potential developing this approach for flow cytometry with fast speed photodetector and digital camera and the multi- wavelength statistical and correlation analysis of speckle-related signals in applications to analysis of complex motions and functional properties of cells in bioflows including the evaluation of the rotational and translational components of the motion of individual live and dead cells.
机译:最近,我们发现,在具有流水显微镜的组合高分辨率传递和具有流量模块的光热显微镜的两个梁(泵探针)中的探针光束即使没有泵激光脉冲的时间波动对单个电池的功能状态非常敏感(例如,具有2-3个平均波动幅度的差异,用于活和死细胞)。在本文中,我们专注于使用具有高度稳定的连续波HE-NE激光和具有针孔的光电二极管/光电倍增器的热栓原理图对这些新现象的理论和实验研究。该方案允许在被动和主动模式下研究随机和激光诱导的热溶剂,包括在体外单细胞甚至亚细胞水平的跨辐照模式下的散射光波动的短期和长期监测。我们证明了这些原理图具有监测细胞代谢的变化和坏死的潜力,包括细胞代谢和坏死,特别是在静止状态下的体外撞击。此外,我们介绍了用其他类似的示意性获得的一些相关数据,包括通过动态光散射评估细菌动力。我们讨论了具有快速光电探测器和数码相机的流式细胞仪的进一步发育这种方法以及散斑相关信号的多波长统计和相关性分析,以分析生物繁殖中的细胞的复杂运动和功能特性,包括评价单个活和死细胞运动的旋转和翻译成分。

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