File:Drosophila-Embryos-as-Model-Systems-for-Monitoring-Bacterial-Infection-in-Real-Time-ppat.1000518.s008.ogv

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Drosophila-Embryos-as-Model-Systems-for-Monitoring-Bacterial-Infection-in-Real-Time-ppat.1000518.s008.ogv (Ogg Theora video file, length 2.8 s, 628 × 537 pixels, 4.19 Mbps, file size: 1.41 MB)

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English: Cellular internalisation of Mcf1 is required for hemocyte freezing. Timelapse confocal movie showing embryos containing hemocytes expressing shibirets1 injected with Mcf1. These shibire mutant hemocytes can be seen migrating normally extending large, dynamic actin rich protrusions and show no sign of the freezing phenotype observed in wildtype cells upon exposure to Mcf1 toxin. Movie duration is 40 minutes.
Date
Source Video S8 from Vlisidou I, Dowling A, Evans I, Waterfield N, ffrench-Constant R, Wood W (2009). "Drosophila Embryos as Model Systems for Monitoring Bacterial Infection in Real Time". PLOS Pathogens. DOI:10.1371/journal.ppat.1000518. PMID 19609447. PMC: 2707623.
Author Vlisidou I, Dowling A, Evans I, Waterfield N, ffrench-Constant R, Wood W
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This file was published in a Public Library of Science journal. Their website states that the content of all PLOS journals is published under the Creative Commons Attribution 4.0 license (or its previous version depending on the publication date), unless indicated otherwise.
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This file was transferred to Wikimedia Commons from PubMed Central by way of the Open Access Media Importer.
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Date/TimeThumbnailDimensionsUserComment
current08:57, 16 November 20122.8 s, 628 × 537 (1.41 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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Format Bitrate Download Status Encode time
VP9 480P 814 kbps Completed 21:51, 24 August 2018 3.0 s
VP9 360P 414 kbps Completed 21:51, 24 August 2018 3.0 s
VP9 240P 200 kbps Completed 21:51, 24 August 2018 3.0 s
WebM 360P 517 kbps Completed 22:34, 16 November 2012 4.0 s
QuickTime 144p (MJPEG) 365 kbps Completed 04:15, 23 October 2024 1.0 s

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