Automated tracking of S. pombe spindle elongation dynamics
Automated tracking of S. pombe spindle elongation dynamics
The mitotic spindle is a microtubule-based machine that pulls the two identical sets of chromosomes to opposite ends of the cell during cell division. The fission yeast Schizosaccharomyces pombe is an important model organism for studying mitosis due to its simple, stereotyped spindle structure and well-established genetic toolset. S. pombe spindle length is a useful metric for mitotic progression, but manually tracking spindle ends in each frame to measure spindle length over time is laborious and can limit experimental throughput. We have developed an ImageJ plugin that can automatically track S. pombe spindle length over time and replace manual or semi-automated tracking of spindle elongation dynamics. Using an algorithm that detects the principal axis of the spindle and then finds its ends, we reliably track the length and angle of the spindle as the cell divides. The plugin integrates with existing ImageJ features, exports its data for further analysis outside of ImageJ, and does not require any programming by the user. Thus, the plugin provides an accessible tool for quantification of S. pombe spindle length that will allow automatic analysis of large microscopy data sets and facilitate screening for effects of cell biological perturbations on mitotic progression.
Uzsoy Ana Sof¨aa M.、Zareiesfandabadi Parsa、Elting Mary Williard、Jennings Jamie、Kemper Alexander F.
Department of Physics, North Carolina State University||Department of Computer Science, North Carolina State UniversityDepartment of Physics, North Carolina State UniversityDepartment of Physics, North Carolina State University||Quantitative and Computational Developmental Biology Cluster, North Carolina State UniversityDepartment of Computer Science, North Carolina State UniversityDepartment of Physics, North Carolina State University
细胞生物学生物科学研究方法、生物科学研究技术自动化技术、自动化技术设备
Uzsoy Ana Sof¨aa M.,Zareiesfandabadi Parsa,Elting Mary Williard,Jennings Jamie,Kemper Alexander F..Automated tracking of S. pombe spindle elongation dynamics[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2020.10.09.333765.点此复制
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