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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Spatial protein analysis in developing tissues: a sampling-based image processing approach
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Spatial protein analysis in developing tissues: a sampling-based image processing approach

机译:显影组织中的空间蛋白质分析:基于采样的图像处理方法

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Advances in fluorescence microscopy approaches have made it relatively easy to generate multi-dimensional image volumes and have highlighted the need for flexible image analysis tools for the extraction of quantitative information from such data. Here we demonstrate that by focusing on simplified feature-based nuclear segmentation and probabilistic cytoplasmic detection we can create a tool that is able to extract geometry-based information from diverse mammalian tissue images. Our open-source image analysis platform, called 'SilentMark', can cope with three-dimensional noisy images and with crowded fields of cells to quantify signal intensity in different cellular compartments. Additionally, it provides tissue geometry related information, which allows one to quantify protein distribution with respect to marked regions of interest. The lightweight SilentMark algorithms have the advantage of not requiring multiple processors, graphics cards or training datasets and can be run even with just several hundred megabytes of memory. This makes it possible to use the method as a Web application, effectively eliminating setup hurdles and compatibility issues with operating systems. We test this platform on mouse pre-implantation embryos, embryonic stem cell-derived embryoid bodies and mouse embryonic heart, and relate protein localization to tissue geometry. This article is part of a discussion meeting issue 'Contemporary morphogenesis'.
机译:荧光显微镜接近的进步使得产生多维图像卷相对容易,并且突出了对来自这些数据的定量信息的柔性图像分析工具的需要。在这里,我们通过专注于基于简化的特征的核分段和概率性细胞质检测,我们可以创建一种能够从各种哺乳动物组织图像中提取基于几何信息的工具。我们的开源图像分析平台称为“Silentmark”,可以应对三维嘈杂的图像,并具有拥挤的细胞领域,以量化不同蜂窝隔室中的信号强度。另外,它提供组织几何相关信息,其允许人们量化与标记的感兴趣区域的蛋白质分布。轻量级SilentMark算法具有不需要多个处理器,图形卡或培训数据集的优势,即使只有数百兆字节的内存也可以运行。这使得可以使用该方法作为Web应用程序,有效地消除了与操作系统的设置障碍和兼容性问题。我们在小鼠预植入胚胎,胚胎干细胞衍生的胚胎体和小鼠胚胎心脏上测试该平台,并将蛋白质定位与组织几何形状相关。本文是讨论会议问题“当代形态发生”的一部分。

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