首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >A universal analysis tool for the detection of asymmetric signal distribution in microscopic images.
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A universal analysis tool for the detection of asymmetric signal distribution in microscopic images.

机译:一种用于检测显微图像中不对称信号分布的通用分析工具。

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摘要

Polarization of tissue is achieved by asymmetric distribution of proteins and organelles within individual cells. However, existing quantitative assays to measure this asymmetry in an automated and unbiased manner suffer from significant limitations.Here, we report a new way to assess protein and organelle localization in tissue based on correlative fluorescence analysis. As a proof of principle, we successfully characterized planar cell polarity dependent asymmetry in developing Drosophila melanogaster tissues on the single cell level using fluorescence cross-correlation.Systematic modulation of signal strength and distribution show that fluorescence cross-correlation reliably detects asymmetry over a broad parameter space. The novel method described here produces robust, rapid, and unbiased measurement of biometrical properties of cell components in live tissue that is readily applicable in other model systems.
机译:组织的极化是通过单个细胞内蛋白质和细胞器的不对称分布来实现的。然而,现有的以自动化且无偏见的方式测量这种不对称性的定量检测方法存在明显的局限性。在此,我们报道了一种基于相关荧光分析评估组织中蛋白质和细胞器定位的新方法。作为原理的证明,我们成功地利用荧光互相关特性在单个细胞水平上发展了果蝇果蝇组织中表征了平面细胞极性相关的不对称性。信号强度和分布的系统调制表明,荧光互相关性可在较宽的参数范围内可靠地检测到不对称性空间。此处描述的新颖方法可以对活组织中的细胞组分的生物特征进行健壮,快速且无偏的测量,这很容易应用于其他模型系统。

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