Jiang Shan, Zhou Xiaobo, Kirchhausen Tom, Wong Stephen T C
HCNR-Center for Bioinformatics, Harvard Medical School and Brigham &Women's Hospital, Boston, Massachusetts 02215, USA.
Cytometry A. 2007 Aug;71(8):576-84. doi: 10.1002/cyto.a.20411.
Recent development of detection techniques of molecular particles in live cells has stimulated interest in developing the new powerful techniques to track the molecular particles in live cells. One special type of cellular microscopy images is about the formation and transportation of clathrin-coated pits and vesicles. Clathrin-coated pits are very important in studying the behavior of proteins and lipids in live cells. To answer the question, whether there exist "hot spots" for the formation of Clathrin-coated pits or the pits and arrays formed randomly on the plasma membrane, it is necessary to track many hundreds of individual pits dynamically in live-cell microscope movies to capture and monitor how pits and vesicles were formed. Therefore, a motion correspondence algorithm based on fuzzy rule-based system is proposed to resolve the problem of ambiguous association encountered in these dynamic, live-cell images of clathrin assemblies. Results show that this method can accurately track most of the particles in the high volume images.
活细胞中分子颗粒检测技术的最新发展激发了人们开发强大新技术以追踪活细胞中分子颗粒的兴趣。一种特殊类型的细胞显微镜图像是关于网格蛋白包被小窝和囊泡的形成与运输。网格蛋白包被小窝在研究活细胞中蛋白质和脂质的行为方面非常重要。为了回答是否存在网格蛋白包被小窝形成的“热点”,或者这些小窝和阵列是否在质膜上随机形成的问题,有必要在活细胞显微镜电影中动态追踪数百个单个小窝,以捕捉和监测小窝和囊泡是如何形成的。因此,提出了一种基于模糊规则系统的运动对应算法,以解决在这些动态的活细胞网格蛋白组装图像中遇到的模糊关联问题。结果表明,该方法能够准确追踪高容量图像中的大多数颗粒。