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A Guided Tour of Selected Image Processing and Analysis Methods for Fluorescence and Electron Microscopy

机译:荧光和电子显微镜所选图像处理和分析方法的导览

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Microscopy imaging, including fluorescence micro scopy and electron microscopy, has taken a prominent role in life science research and medicine due to its ability to investigate the 3D interior of live cells and organisms. A long-term research in bio-imaging at the sub-cellular and cellular scales consists then in inferring the relationships between the dynamics of macromolecules and their functions. In this area, image processing and analysis methods are now essential to understand the dynamic organization of groups of interacting molecules inside molecular machineries and to address issues in fundamental biology driven by advances in molecular biology, optics and technology. In this paper, we present recent advances in fluorescence and electron microscopy and we focus on dedicated image processing and analysis methods required to quantify phenotypes for a limited number but typical studies in cell imaging.
机译:显微镜成像,包括荧光显微镜和电子显微镜,由于其能够研究活细胞和生物的3D内部,因此在生命科学研究和医学中发挥了重要作用。然后,在亚细胞和细胞尺度上对生物成像进行长期研究的前提是推断大分子动力学与其功能之间的关系。在这一领域,图像处理和分析方法对于理解分子机械内部相互作用分子的动态组织以及解决由分子生物学,光学和技术进步推动的基础生物学问题至关重要。在本文中,我们介绍了荧光和电子显微镜的最新进展,并且我们将重点放在量化表型所需的专用图像处理和分析方法上,但数量有限但在细胞成像中却是典型的研究。

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