File:Maturation-of-Filopodia-Shaft-Adhesions-Is-Upregulated-by-Local-Cycles-of-Lamellipodia-Advancements-pone.0107097.s015.ogv
Maturation-of-Filopodia-Shaft-Adhesions-Is-Upregulated-by-Local-Cycles-of-Lamellipodia-Advancements-pone.0107097.s015.ogv (Ogg Theora video file, length 7.8 s, 302 × 302 pixels, 398 kbps, file size: 379 KB)
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DescriptionMaturation-of-Filopodia-Shaft-Adhesions-Is-Upregulated-by-Local-Cycles-of-Lamellipodia-Advancements-pone.0107097.s015.ogv |
English: The fast advancing cell edge paused at the distal tip of the filopodia adhesion in a spreading HFF cell. (Fig. S4D). Interference reflection signal. The white square region corresponds to the filopodia adhesion region shown in Fig. S4D–b. Red arrow: the filopodia adhesion. 41 min–50 min after plating the cell on FN coated glass. The time-lapse seqeunce was collected at 20 s/frame with an Olympus FV1000 confocal microscope. The video is shown at 5 frame/s. |
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Source | Video S10 from Hu W, Wehrle-Haller B, Vogel V (2014). "Maturation of Filopodia Shaft Adhesions Is Upregulated by Local Cycles of Lamellipodia Advancements and Retractions". PLOS ONE. DOI:10.1371/journal.pone.0107097. PMID 25229609. PMC: 4167701. | ||
Author | Hu W, Wehrle-Haller B, Vogel V | ||
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This file is licensed under the Creative Commons Attribution 4.0 International license.
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 01:26, 26 September 2014 | 7.8 s, 302 × 302 (379 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 | Hu W, Wehrle-Haller B, Vogel V |
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Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | The fast advancing cell edge paused at the distal tip of the filopodia adhesion in a spreading HFF cell. (Fig. S4D). Interference reflection signal. The white square region corresponds to the filopodia adhesion region shown in Fig. S4D–b. Red arrow: the filopodia adhesion. 41 min–50 min after plating the cell on FN coated glass. The time-lapse seqeunce was collected at 20 s/frame with an Olympus FV1000 confocal microscope. The video is shown at 5 frame/s. |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2014 |