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Imaging and Analysis of Cellular Locations in Three-Dimensional Tissue Models

机译:三维组织模型中蜂窝定位的成像和分析

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摘要

The absence of quantitative in vitro cell-extracellular matrix models represents an important bottleneck for basic research and human health. Randomness of cellular distributions provides an opportunity for the development of a quantitative in vitro model. However, quantification of the randomness of random cell distributions is still lacking. In this paper, we have imaged cellular distributions in an alginate matrix using a multiview light sheet microscope and developed quantification metrics of randomness by modeling it as a Poisson process, a process that has constant probability of occurring in space or time. We imaged fluorescently labeled human mesenchymal stem cells embedded in an alginate matrix of thickness greater than 5 mm with similar to 2.9 +/- 0.4 mu m axial resolution, the mean full width at half maximum of the axial intensity profiles of fluorescent particles. Simulated randomness agrees well with the experiments. Quantification of distributions and validation by simulations will enable quantitative study of cell-matrix interactions in tissue models.
机译:没有定量体外细胞 - 细胞外基质模型代表基础研究和人类健康的重要瓶颈。蜂窝分布的随机性为开发定量体外模型提供了机会。然而,仍然缺乏随机细胞分布的随机性的量化。在本文中,我们使用多视图灯光片显微镜在藻酸盐矩阵中进行了蜂窝分布,并通过将其作为泊松过程建模的随机性的量化度量,这是一种过程,其在空间或时间内发生恒定的概率。我们将荧光标记的含有大于5mm的藻酸盐基质的荧光标记物的荧光标记的人间充质干细胞成像,其轴向分辨率类似于2.9 +/-0.4μm。模拟随机性与实验一致。通过模拟定量分布和验证将使组织模型中的细胞矩阵相互作用的定量研究。

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