File:Cell-movement-pbio.1001256.s009.ogv
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Cell-movement-pbio.1001256.s009.ogv (Ogg Theora video file, length 10 s, 720 × 492 pixels, 1.99 Mbps, file size: 2.37 MB)
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DescriptionCell-movement-pbio.1001256.s009.ogv |
English: Simulations of AVE migration in the presence and absence of rosettes. Simulations were run with a large threshold distance at which vertices join (allowing rosettes to form—at left) and with a very small threshold distance at which vertices join (preventing many rosettes from forming—at right). All other parameters were kept exactly the same. For simulations in which rosettes can easily form, AVE cells migrate as a group in a manner very similar to that observed in cultured embryos. In simulations with reduced rosette formation, AVE cells migrate in an abnormal manner, splitting into separate groups that spread more broadly than normally observed. |
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Source | Movie S4 from Trichas G, Smith A, White N, Wilkins V, Watanabe T, Moore A, Joyce B, Sugnaseelan J, Rodriguez T, Kay D, Baker R, Maini P, Srinivas S, Little C. "Multi-Cellular Rosettes in the Mouse Visceral Endoderm Facilitate the Ordered Migration of Anterior Visceral Endoderm Cells". PLOS Biology. DOI:10.1371/journal.pbio.1001256. PMID 22346733. PMC: 3274502. | ||
Author | Trichas G, Smith A, White N, Wilkins V, Watanabe T, Moore A, Joyce B, Sugnaseelan J, Rodriguez T, Kay D, Baker R, Maini P, Srinivas S, Little C | ||
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 22:59, 24 August 2012 | 10 s, 720 × 492 (2.37 MB) | Open Access Media Importer Bot (talk | contribs) | Uploaded with the Open Access Media Importer. (test edit) botrequest |
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Short title | Movie S4 |
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Author | Trichas G, Smith A, White N, Wilkins V, Watanabe T, Moore A, Joyce B, Sugnaseelan J, Rodriguez T, Kay D, Baker R, Maini P, Srinivas S, Little C |
Usage terms | http://creativecommons.org/licenses/by/3.0/ |
Image title | Simulations of AVE migration in the presence and absence of rosettes. Simulations were run with a large threshold distance at which vertices join (allowing rosettes to form?at left) and with a very small threshold distance at which vertices join (preventing many rosettes from forming?at right). All other parameters were kept exactly the same. For simulations in which rosettes can easily form, AVE cells migrate as a group in a manner very similar to that observed in cultured embryos. In simulations with reduced rosette formation, AVE cells migrate in an abnormal manner, splitting into separate groups that spread more broadly than normally observed. (MOV) |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2012-02-07 |