File:Coordination-of-Cell-Differentiation-and-Migration-in-Mathematical-Models-of-Caudal-Embryonic-Axis-pone.0022700.s004.ogv
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Coordination-of-Cell-Differentiation-and-Migration-in-Mathematical-Models-of-Caudal-Embryonic-Axis-pone.0022700.s004.ogv (Ogg Theora video file, length 0.0 s, 544 × 496 pixels, 0 bps, file size: 2.12 MB)
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[edit]DescriptionCoordination-of-Cell-Differentiation-and-Migration-in-Mathematical-Models-of-Caudal-Embryonic-Axis-pone.0022700.s004.ogv |
English: Formation of stationary concentration profiles of gen A-RNA and protein A in the model with the DoT size regulation (see Materials and Methods Section). The regulation of the DoT size is implemented the following way: if the concentration of the protein A does not achieve the threshold level TA all over the medium the DoT size increases with a constant rate (the DoT's left border shifts to the left with a constant rate), otherwise the DoT's left border is at the right-most point where the level of the protein A is equal to the value of TA. To obtain a smooth dynamics the size of the DoT was fixed (like in the basic model), i.e. the regulation of the DoT size was switched off for the first 3000 time steps. |
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Source | Movie S2 from Harrison N, Diez del Corral R, Vasiev B (2011). "Coordination of Cell Differentiation and Migration in Mathematical Models of Caudal Embryonic Axis Extension". PLOS ONE. DOI:10.1371/journal.pone.0022700. PMID 21829483. PMC: 3145656. | ||
Author | Harrison N, Diez del Corral R, Vasiev B | ||
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current | 16:52, 29 May 2013 | 0.0 s, 544 × 496 (2.12 MB) | Open Access Media Importer Bot (talk | contribs) | Automatically uploaded media file from Open Access source. Please report problems or suggestions here. |
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Author | Harrison N, Diez del Corral R, Vasiev B |
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Usage terms | http://creativecommons.org/licenses/by/3.0/ |
Image title | Formation of stationary concentration profiles of gen A-RNA and protein A in the model with the DoT size regulation (see Materials and Methods Section). The regulation of the DoT size is implemented the following way: if the concentration of the protein A does not achieve the threshold level TA all over the medium the DoT size increases with a constant rate (the DoT's left border shifts to the left with a constant rate), otherwise the DoT's left border is at the right-most point where the level of the protein A is equal to the value of TA. To obtain a smooth dynamics the size of the DoT was fixed (like in the basic model), i.e. the regulation of the DoT size was switched off for the first 3000 time steps. |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2011 |