File:A-Quantitative-Comparison-of-Human-HT-1080-Fibrosarcoma-Cells-and-Primary-Human-Dermal-Fibroblasts-pone.0081689.s014.ogv

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A-Quantitative-Comparison-of-Human-HT-1080-Fibrosarcoma-Cells-and-Primary-Human-Dermal-Fibroblasts-pone.0081689.s014.ogv (Ogg Theora video file, length 9.0 s, 224 × 244 pixels, 109 kbps, file size: 120 KB)

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English: HT-1080 fibrosarcoma cell division and migration of daughter cells in synthetic ECM. Time-lapse images (10 min / frame) illustrating cell division for an HT-1080 fibrosarcoma cell and migration of daughter cells in synthetic ECM (220 Pa, 1000 μM CRGDS). The same dividing HT-1080 is also illustrated in Figure S9F, and the daughter cell migrating towards the bottom, left is shown in Figures 3B (relationship between rear retraction and leading edge extension) and 5A (constriction ring formation). The cell migrating towards the top, right also illustrates formation of a split protrusion and retraction at the rear (beginning at 2:59, frame 19). Time shown in Hr:Min. Scale bar = 25 μm.
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Source Movie S3 from Schwartz M, Rogers R, Singh S, Lee J, Loveland S, Koepsel J, Witze E, Montanez-Sauri S, Sung K, Tokuda E, Sharma Y, Everhart L, Nguyen E, Zaman M, Beebe D, Ahn N, Murphy W, Anseth K (2013). "A Quantitative Comparison of Human HT-1080 Fibrosarcoma Cells and Primary Human Dermal Fibroblasts Identifies a 3D Migration Mechanism with Properties Unique to the Transformed Phenotype". PLOS ONE. DOI:10.1371/journal.pone.0081689. PMID 24349113. PMC: 3857815.
Author Schwartz M, Rogers R, Singh S, Lee J, Loveland S, Koepsel J, Witze E, Montanez-Sauri S, Sung K, Tokuda E, Sharma Y, Everhart L, Nguyen E, Zaman M, Beebe D, Ahn N, Murphy W, Anseth K
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current05:09, 20 December 20139.0 s, 224 × 244 (120 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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Format Bitrate Download Status Encode time
VP9 240P 40 kbps Completed 21:43, 15 August 2018 2.0 s
WebM 360P 49 kbps Completed 12:48, 16 November 2023 1.0 s
QuickTime 144p (MJPEG) 125 kbps Completed 09:15, 14 October 2024 1.0 s

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