File:Integration-of-Nodal-and-BMP-Signals-in-the-Heart-Requires-FoxH1-to-Create-Left–Right-Differences-pgen.1003109.s005.ogv
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Size of this JPG preview of this OGG file: 690 × 599 pixels. Other resolutions: 276 × 240 pixels | 553 × 480 pixels | 813 × 706 pixels.
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DescriptionIntegration-of-Nodal-and-BMP-Signals-in-the-Heart-Requires-FoxH1-to-Create-Left–Right-Differences-pgen.1003109.s005.ogv |
English: Myocardial Migration in a bmp4/spaw double morphant. Time lapse movie of a Tg(myl17:eGFP) embryo injected with both bmp4 and spaw morpholinos beginning at 19–20 hpf. There is no obvious asymmetry in myocardial migration rate along the L/R axis and all cells have trajectories directed toward the anterior with no clear L/R displacement. However, cell velocities are significantly faster than those of spaw morphants. |
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Source | Video S5 from Lenhart K, Holtzman N, Williams J, Burdine R (2013). "Integration of Nodal and BMP Signals in the Heart Requires FoxH1 to Create Left–Right Differences in Cell Migration Rates That Direct Cardiac Asymmetry". PLOS Genetics. DOI:10.1371/journal.pgen.1003109. PMC: 3554567. | ||
Author | Lenhart K, Holtzman N, Williams J, Burdine R | ||
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current | 17:50, 29 January 2013 | 13 s, 813 × 706 (691 KB) | 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 | Lenhart K, Holtzman N, Williams J, Burdine R |
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Usage terms | http://creativecommons.org/licenses/by/3.0/ |
Image title | Myocardial Migration in a bmp4/spaw double morphant. Time lapse movie of a Tg(myl17:eGFP) embryo injected with both bmp4 and spaw morpholinos beginning at 19?20 hpf. There is no obvious asymmetry in myocardial migration rate along the L/R axis and all cells have trajectories directed toward the anterior with no clear L/R displacement. However, cell velocities are significantly faster than those of spaw morphants. |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2013-01 |