File:Mechanisms-Underlying-Metabolic-and-Neural-Defects-in-Zebrafish-and-Human-Multiple-Acyl-CoA-pone.0008329.s013.ogv

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Mechanisms-Underlying-Metabolic-and-Neural-Defects-in-Zebrafish-and-Human-Multiple-Acyl-CoA-pone.0008329.s013.ogv(Ogg Theora video file, length 27 s, 247 × 242 pixels, 59 kbps, file size: 191 KB)

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English: Spontaneous movements and motility in wild type zebrafish embryos at 48 hpf. The motility of wild type and xav mutant embryos were examined using high-speed video microscopy at 48 hpf. Wild type embryos spend most of the time staying still when not stimulated, and exhibit quick, darting movements when they swim.
Date
Source Video S1 from Song Y, Selak M, Watson C, Coutts C, Scherer P, Panzer J, Gibbs S, Scott M, Willer G, Gregg R, Ali D, Bennett M, Balice-Gordon R (2009). "Mechanisms Underlying Metabolic and Neural Defects in Zebrafish and Human Multiple Acyl-CoA Dehydrogenase Deficiency (MADD)". PLOS ONE. DOI:10.1371/journal.pone.0008329. PMID 20020044. PMC: 2791221.
Author Song Y, Selak M, Watson C, Coutts C, Scherer P, Panzer J, Gibbs S, Scott M, Willer G, Gregg R, Ali D, Bennett M, Balice-Gordon R
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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
current17:51, 18 November 201227 s, 247 × 242 (191 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 18 kbps Completed 02:56, 3 September 2018 6.0 s
Streaming 240p (VP9) 19 kbps Completed 15:09, 2 February 2024 0.0 s
WebM 360P 20 kbps Completed 23:11, 1 December 2023 2.0 s
Streaming 144p (MJPEG) 330 kbps Completed 17:04, 11 November 2023 1.0 s

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