Tinevez Jean-Yves, Perry Nick, Schindelin Johannes, Hoopes Genevieve M, Reynolds Gregory D, Laplantine Emmanuel, Bednarek Sebastian Y, Shorte Spencer L, Eliceiri Kevin W
Imagopole, Citech, Institut Pasteur, 75724 Paris, France.
Imagopole, Citech, Institut Pasteur, 75724 Paris, France.
Methods. 2017 Feb 15;115:80-90. doi: 10.1016/j.ymeth.2016.09.016. Epub 2016 Oct 3.
We present TrackMate, an open source Fiji plugin for the automated, semi-automated, and manual tracking of single-particles. It offers a versatile and modular solution that works out of the box for end users, through a simple and intuitive user interface. It is also easily scriptable and adaptable, operating equally well on 1D over time, 2D over time, 3D over time, or other single and multi-channel image variants. TrackMate provides several visualization and analysis tools that aid in assessing the relevance of results. The utility of TrackMate is further enhanced through its ability to be readily customized to meet specific tracking problems. TrackMate is an extensible platform where developers can easily write their own detection, particle linking, visualization or analysis algorithms within the TrackMate environment. This evolving framework provides researchers with the opportunity to quickly develop and optimize new algorithms based on existing TrackMate modules without the need of having to write de novo user interfaces, including visualization, analysis and exporting tools. The current capabilities of TrackMate are presented in the context of three different biological problems. First, we perform Caenorhabditis-elegans lineage analysis to assess how light-induced damage during imaging impairs its early development. Our TrackMate-based lineage analysis indicates the lack of a cell-specific light-sensitive mechanism. Second, we investigate the recruitment of NEMO (NF-κB essential modulator) clusters in fibroblasts after stimulation by the cytokine IL-1 and show that photodamage can generate artifacts in the shape of TrackMate characterized movements that confuse motility analysis. Finally, we validate the use of TrackMate for quantitative lifetime analysis of clathrin-mediated endocytosis in plant cells.
我们展示了TrackMate,这是一款用于单粒子自动、半自动和手动追踪的开源Fiji插件。它通过简单直观的用户界面,为终端用户提供了一种开箱即用的通用模块化解决方案。它还易于编写脚本和适应各种情况,在随时间变化的一维、二维、三维或其他单通道和多通道图像变体上都能同样出色地运行。TrackMate提供了多种可视化和分析工具,有助于评估结果的相关性。通过能够轻松定制以满足特定追踪问题,TrackMate的实用性得到了进一步增强。TrackMate是一个可扩展平台,开发人员可以在TrackMate环境中轻松编写自己的检测、粒子链接、可视化或分析算法。这个不断发展的框架为研究人员提供了机会,使他们能够基于现有的TrackMate模块快速开发和优化新算法,而无需从头编写用户界面,包括可视化、分析和导出工具。TrackMate的当前功能在三个不同的生物学问题背景下进行了展示。首先,我们进行了秀丽隐杆线虫谱系分析,以评估成像过程中的光诱导损伤如何损害其早期发育。我们基于TrackMate的谱系分析表明缺乏细胞特异性光敏感机制。其次,我们研究了细胞因子IL-1刺激后成纤维细胞中NEMO(NF-κB必需调节因子)簇的募集,并表明光损伤会在TrackMate特征性运动形状中产生伪影,从而混淆运动分析。最后,我们验证了TrackMate在植物细胞中网格蛋白介导的内吞作用定量寿命分析中的应用。