跟踪(教育)
粒子(生态学)
内吞循环
计算机科学
动力素
生物系统
物理
颗粒过滤器
人工智能
生物
内吞作用
受体
遗传学
心理学
卡尔曼滤波器
教育学
生态学
作者
Khuloud Jaqaman,Dinah Loerke,Marcel Mettlen,Hirotaka Kuwata,Sergio Grinstein,Sandra L. Schmid,Gaudenz Danuser
出处
期刊:Nature Methods
[Nature Portfolio]
日期:2008-07-20
卷期号:5 (8): 695-702
被引量:1909
摘要
Single-particle tracking (SPT) is often the rate-limiting step in live-cell imaging studies of subcellular dynamics. Here we present a tracking algorithm that addresses the principal challenges of SPT, namely high particle density, particle motion heterogeneity, temporary particle disappearance, and particle merging and splitting. The algorithm first links particles between consecutive frames and then links the resulting track segments into complete trajectories. Both steps are formulated as global combinatorial optimization problems whose solution identifies the overall most likely set of particle trajectories throughout a movie. Using this approach, we show that the GTPase dynamin differentially affects the kinetics of long- and short-lived endocytic structures and that the motion of CD36 receptors along cytoskeleton-mediated linear tracks increases their aggregation probability. Both applications indicate the requirement for robust and complete tracking of dense particle fields to dissect the mechanisms of receptor organization at the level of the plasma membrane.
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