Straightening Caenorhabditis elegans images
Open Access
- 19 November 2007
- journal article
- research article
- Published by Oxford University Press (OUP) in Bioinformatics
- Vol. 24 (2) , 234-242
- https://doi.org/10.1093/bioinformatics/btm569
Abstract
Motivation: Caenorhabditis elegans, a roundworm found in soil, is a widely studied model organism with about 1000 cells in the adult. Producing high-resolution fluorescence images of C.elegans to reveal biological insights is becoming routine, motivating the development of advanced computational tools for analyzing the resulting image stacks. For example, worm bodies usually curve significantly in images. Thus one must ‘straighten’ the worms if they are to be compared under a canonical coordinate system. Results: We develop a worm straightening algorithm (WSA) that restacks cutting planes orthogonal to a ‘backbone’ that models the anterior–posterior axis of the worm. We formulate the backbone as a parametric cubic spline defined by a series of control points. We develop two methods for automatically determining the locations of the control points. Our experimental methods show that our approaches effectively straighten both 2D and 3D worm images. Contact: pengh@janelia.hhmi.org Supplementary information: The example data sets and programs are available upon request.Keywords
This publication has 8 references indexed in Scilit:
- Three-dimensional morphology and gene expression in the Drosophilablastoderm at cellular resolution I: data acquisition pipelineGenome Biology, 2006
- Quantification of transcription factor expression from Arabidopsis imagesBioinformatics, 2006
- Rapid automated three-dimensional tracing of neurons from confocal image stacksIEEE Transactions on Information Technology in Biomedicine, 2002
- Learning and design of principal curvesPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2000
- Snakes, shapes, and gradient vector flowIEEE Transactions on Image Processing, 1998
- Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegansNature, 1998
- Automated identification of vessel contours in coronary arteriograms by an adaptive tracking algorithmIEEE Transactions on Medical Imaging, 1989
- Snakes: Active contour modelsInternational Journal of Computer Vision, 1988