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2D mapping of strongly deformable cell nuclei-based on contour matching

机译:基于轮廓匹配的强可变形细胞核二维映射

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摘要

The spatiotemporal dynamics of protein complexes and genome loci are functionally linked to cellular health status. To study the inherent motion of subnuclear particles, it is essential to remove any superimposed component stemming from displacement and deformation of the nucleus. In this article, we propose a mapping of the nuclear interior, which is based on the deformation of the nuclear contour and has no shape constraints. This registration procedure enabled an accurate estimation of telomere mobility in living human cells undergoing dramatic nuclear deformations. Given the large variety of pathologies and cellular processes that are associated with strong nuclear shape changes, the contour mapping algorithm has generic value for improving the accuracy of mobility measurements of genome loci and intranuclear macromolecule complexes.
机译:蛋白质复合物和基因组基因座的时空动力学在功能上与细胞健康状况有关。为了研究亚核粒子的固有运动,必须去除由于原子核的位移和变形而产生的任何叠加成分。在本文中,我们提出了核内部的映射,该映射基于核轮廓的变形并且没有形状约束。该配准程序使得能够准确估计正在经历剧烈核变形的人类细胞中端粒的迁移。考虑到与强大的核形状变化相关的多种病理学和细胞过程,轮廓映射算法具有提高基因组基因座和核内大分子复合物迁移率测量准确性的通用价值。

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