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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Optimizing the acquisition and analysis of confocal images for quantitative single-mobile-particle detection
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Optimizing the acquisition and analysis of confocal images for quantitative single-mobile-particle detection

机译:优化共焦图像的采集和分析以进行定量单移动颗粒检测

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Quantification of the fluorescence properties of diffusing particles in solution is an invaluable source of information for characterizing the interactions, stoichiometry, or conformation of molecules directly in their native environment. In the case of heterogeneous populations, single-particle detection should be the method of choice and it can, in principle, be achieved by using confocal imaging. However, the detection of single mobile particles in confocal images presents specific challenges. In particular, it requires an adapted set of imaging parameters for capturing the confocal images and an adapted event-detection scheme for analyzing the image. Herein, we report a theoretical framework that allows a prediction of the properties of a homogenous particle population. This model assumes that the particles have linear trajectories with reference to the confocal volume, which holds true for particles with moderate mobility. We compare the predictions of our model to the results as obtained by analyzing the confocal images of solutions of fluorescently labeled liposomes. Based on this comparison, we propose improvements to the simple line-by-line thresholding event-detection scheme, which is commonly used for single-mobile-particle detection. We show that an optimal combination of imaging and analysis parameters allows the reliable detection of fluorescent liposomes for concentrations between 1 and 100 pM. This result confirms the importance of confocal single-particle detection as a complementary technique to ensemble fluorescence-correlation techniques for the studies of mobile particle.
机译:溶液中扩散粒子的荧光性质的量化是信息的宝贵来源,可用于直接表征分子在其天然环境中的相互作用,化学计量或构象。对于异类种群,应该选择单粒子检测,并且原则上可以通过使用共聚焦成像来实现。然而,共焦图像中单个移动粒子的检测提出了特定的挑战。特别地,它需要用于捕获共焦图像的一组合适的成像参数,以及用于分析图像的合适的事件检测方案。在本文中,我们报告了一个理论框架,该框架可以预测同质粒子种群的性质。该模型假设粒子具有相对于共焦体积的线性轨迹,这对于中等迁移率的粒子同样适用。我们将模型的预测结果与通过分析荧光标记脂质体溶液的共聚焦图像获得的结果进行比较。基于此比较,我们提出了对简单的逐行阈值事件检测方案的改进,该方案通常用于单个移动粒子检测。我们表明,成像和分析参数的最佳组合可实现1至100 pM之间浓度的荧光脂质体的可靠检测。该结果证实了共聚焦单颗粒检测作为用于移动颗粒研究的整体荧光相关技术的补充技术的重要性。

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