DocumentCode
2931726
Title
Towards a digital model of zebrafish embryogenesis. Integration of cell tracking and gene expression quantification
Author
Castro-González, Carlos ; Luengo-Oroz, Miguel Ángel ; Douloquin, Louise ; Savy, Thierry ; Melani, Camilo ; Desnoulez, Sophie ; Ledesma-Carbayo, María Jesús ; Bourgine, Paul ; Peyriéras, Nadine ; Santos, Andrés
Author_Institution
Biomed. Image Technol., Univ. Politec. de Madrid, Madrid, Spain
fYear
2010
fDate
Aug. 31 2010-Sept. 4 2010
Firstpage
5520
Lastpage
5523
Abstract
We elaborate on a general framework composed of a set of computational tools to accurately quantificate cellular position and gene expression levels throughout early zebrafish embryogenesis captured over a time-lapse series of in vivo 3D images. Our modeling strategy involves nuclei detection, cell geometries extraction, automatic gene levels quantification and cell tracking to reconstruct cell trajectories and lineage tree which describe the animal development. Each cell in the embryo is then precisely described at each given time t by a vector composed of the cell 3D spatial coordinates (x; y; z) along with its gene expression level g. This comprehensive description of the embryo development is used to assess the general connection between genetic expression and cell movement. We also investigate genetic expression propagation between a cell and its progeny in the lineage tree. More to the point, this paper focuses on the evolution of the expression pattern of transcriptional factor goosecoid (gsc) through the gastrulation process between 6 and 9 hours post fertilization (hpf).
Keywords
biological techniques; cell motility; genetics; molecular biophysics; proteins; zoology; animal development; automatic gene level quantification; cell 3D spatial coordinates; cell geometry extraction; cell movement; cell tracking; cell trajectories; digital model; expression pattern evolution; fertilization; gastrulation process; gene expression; goosecoid; lineage tree; nuclei detection; progeny; transcriptional factor; zebrafish embryogenesis; Animals; Embryo; Gene expression; Geometry; In vivo; Three dimensional displays; Trajectory; Animals; Cell Lineage; Cell Nucleus; Cell Tracking; Embryo, Nonmammalian; Embryonic Development; Gene Expression Regulation, Developmental; Goosecoid Protein; Imaging, Three-Dimensional; Models, Biological; Reproducibility of Results; Zebrafish;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2010 Annual International Conference of the IEEE
Conference_Location
Buenos Aires
ISSN
1557-170X
Print_ISBN
978-1-4244-4123-5
Type
conf
DOI
10.1109/IEMBS.2010.5626769
Filename
5626769
Link To Document