File:The-Non-Proliferative-Nature-of-Ascidian-Folliculogenesis-as-a-Model-of-Highly-Ordered-Cellular-pone.0126341.s002.ogv
The-Non-Proliferative-Nature-of-Ascidian-Folliculogenesis-as-a-Model-of-Highly-Ordered-Cellular-pone.0126341.s002.ogv (Ogg Theora video file, length 59 s, 800 × 600 pixels, 1.36 Mbps, file size: 9.65 MB)
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DescriptionThe-Non-Proliferative-Nature-of-Ascidian-Folliculogenesis-as-a-Model-of-Highly-Ordered-Cellular-pone.0126341.s002.ogv |
English: Simulation of morphogenesis in proliferative epithelia. A 7% rate of mitosis with a 1/3 apoptosis/mitosis ratio was imposed at any time. Native cells were randomly positioned and evolved on the spherical support through individual growth, cell-cell (cadherin) interaction, mitosis and apoptosis and eventually resulted in the formation of an epithelial monolayer. The simulation was stopped when 99% of the surface was covered. The colour code is as in Figs 7 and 8. |
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Source | S1 Movie from Azzag K, Chelin Y, Rousset F, Le Goff E, Martinand-Mari C, Martinez A, Maurin B, Daujat-Chavanieu M, Godefroy N, Averseng J, Mangeat P, Baghdiguian S (2015). "The Non-Proliferative Nature of Ascidian Folliculogenesis as a Model of Highly Ordered Cellular Topology Distinct from Proliferative Epithelia". PLOS ONE. DOI:10.1371/journal.pone.0126341. PMID 26000769. PMC: 4441440. | ||
Author | Azzag K, Chelin Y, Rousset F, Le Goff E, Martinand-Mari C, Martinez A, Maurin B, Daujat-Chavanieu M, Godefroy N, Averseng J, Mangeat P, Baghdiguian S | ||
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current | 00:49, 2 June 2015 | 59 s, 800 × 600 (9.65 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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Short title | Simulation of morphogenesis in proliferative epithelia. |
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Author | Azzag K, Chelin Y, Rousset F, Le Goff E, Martinand-Mari C, Martinez A, Maurin B, Daujat-Chavanieu M, Godefroy N, Averseng J, Mangeat P, Baghdiguian S |
Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | A 7% rate of mitosis with a 1/3 apoptosis/mitosis ratio was imposed at any time. Native cells were randomly positioned and evolved on the spherical support through individual growth, cell-cell (cadherin) interaction, mitosis and apoptosis and eventually resulted in the formation of an epithelial monolayer. The simulation was stopped when 99% of the surface was covered. The colour code is as in Figs 7 and 8. |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2015-05-22 |