DocumentCode :
2250319
Title :
Computational automata simulation of blastocoel roof thinning in the Xenopu laevis embryo
Author :
Longo, Diane ; Peirce, Shayn ; Skalak, Thomas ; Marsden, Mungo ; Davidson, Lance ; Dzamba, Bette ; DeSimone, Douglas
Author_Institution :
Dept. of Biomed. Eng., Virginia Univ., Charlottesville, VA, USA
fYear :
2003
fDate :
24-25 April 2003
Firstpage :
127
Lastpage :
131
Abstract :
Computer simulation of the interactions between numerous cells is a novel approach to analyzing and comprehending the spatial and temporal patterns that are formed in a large network of cells within a tissue. Coupled with experimental observation, computational modeling at the cellular level is a powerful method that is capable of providing valuable information about the functions of quite complex biological systems. For this study, the biological system under examination is the Xenopus laevis embryo. In the blastocoel roof of the Xenopus laevis embryo, thinning of multiple cell layers into two cell layers is accomplished via radial intercalation of the deep layer cells. A cell-based simulation has been developed to analzye the process of blastocoel roof (BCR) thinning event. The cellular automata model can predict important characteristics of the BCR thinning process including total thinning time and spatial fibronectin fibril densities.
Keywords :
automata theory; biological tissues; biology computing; cellular automata; image thinning; simulation; Xenopus laevis embryo; biological system; blastocoel roof; cellular automata; computer simulation; multiple cell layer thinning; radial intercalation; spatial fibronectin fibril density; thinning time; tissue; Adaptive systems; Animals; Automata; Biological system modeling; Biological systems; Computational modeling; Content addressable storage; Ear; Embryo; Laboratories;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Systems and Information Engineering Design Symposium, 2003 IEEE
Print_ISBN :
0-9744559-0-3
Type :
conf
DOI :
10.1109/SIEDS.2003.158015
Filename :
1242410
Link To Document :
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