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Structure and dynamics of multicellular assemblies measured by coherent light scattering

机译:相干光散射测量的多细胞组装的结构和动力学

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摘要

Determining the structure and the internal dynamics of tissues is essential to understand their functional organization. Microscopy allows for monitoring positions and trajectories of every single cell. Those data are useful to extract statistical observables, such as intercellular distance, tissue symmetry and anisotropy, and cell motility. However, this procedure requires a large and supervised computational effort. In addition, due to the large cross-section of cells, the light scattering limits the use of microscopy to relatively thin samples. As an alternative approach, we propose to take advantage of light scattering and to analyze the dynamical diffraction pattern produced by a living tissue illuminated with coherent light. In this article, we illustrate with a few examples that supra-cellular structures produce an exploitable diffraction signal. From the diffraction signal, we deduce the mean distance between cells, the anisotropy of the supra-cellular organization and, from its fluctuations, the mean speed of moving cells. This easy to implement technique considerably reduces analysis time, allowing real time monitoring.
机译:确定组织的结构和内部动力学对于了解其功能组织至关重要。显微镜可以监测每个细胞的位置和轨迹。这些数据可用于提取统计可观察值,例如细胞间距离,组织对称性和各向异性以及细胞运动性。但是,此过程需要大量监督的计算工作。另外,由于细胞的横截面较大,光散射将显微镜的使用限制在相对薄的样品上。作为一种替代方法,我们建议利用光散射并分析由相干光照射的活组织产生的动态衍射图样。在本文中,我们将通过一些示例说明超细胞结构产生可利用的衍射信号。根据衍射信号,我们推断出细胞之间的平均距离,超细胞组织的各向异性,并根据其波动来推断移动细胞的平均速度。这种易于实施的技术大大减少了分析时间,可以进行实时监控。

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