Abstract
Subcellular organelles are commonly analyzed using 2-D fluorescent microscopy. However, 3-D reconstruction and analysis of organelle topology in a high-throughput manner promises to result in a better understanding of cellular systems. We developed image analysis methods for automated quantitative analysis of peroxisome shapes. The methods employ 3-D image stacks obtained by confocal microscopy. There are three fundamental phases: image preprocessing and segmentation, 3-D reconstruction, and automated quantification of peroxisome topology in 3-D using shape descriptors. The algorithms are shown to produce results that can be used to classify objects of different topologies, and to enable visual studies of peroxisomes in 3-D. © 2007 IEEE.
Author supplied keywords
Cite
CITATION STYLE
Selinummi, J., Niemistö, A., Saleem, R., Carter, G. W., Aitchison, J., Yli-Harja, O., … Boyle, J. (2007). A case study on 3-D reconstruction and shape description of peroxisomes in yeast. In ICSPC 2007 Proceedings - 2007 IEEE International Conference on Signal Processing and Communications (pp. 672–675). https://doi.org/10.1109/ICSPC.2007.4728408
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.