File:ATP4-and-ciliation-in-the-neuroectoderm-and-endoderm-of-Xenopus-embryos-and-tadpoles-mmc1.ogv
ATP4-and-ciliation-in-the-neuroectoderm-and-endoderm-of-Xenopus-embryos-and-tadpoles-mmc1.ogv (Ogg multiplexed audio/video file, Theora/Vorbis, length 11 s, 400 × 512 pixels, 1.25 Mbps overall, file size: 1.68 MB)
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[edit]DescriptionATP4-and-ciliation-in-the-neuroectoderm-and-endoderm-of-Xenopus-embryos-and-tadpoles-mmc1.ogv |
English: Video 1 ATP4a is required for Foxj1-dependent generation of cerebrospinal fluid flow. Uninjected control (uninj. control) and manipulated embryos were injected with fluorescent beads into the forth brain ventricle of stage 45 tadpoles and cilia-driven fluid flow was recorded for 5.7 sec. Velocity of cilia-driven flow in atp4a morphants (atp4aSplMO) was strongly reduced and could be restored by co-injection of atp4a or foxj1 DNA. The movie plays at 0.52× real time. |
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Date | |||
Source | Video file from Walentek P, Hagenlocher C, Beyer T, Müller C, Feistel K, Schweickert A, Harland R, Blum M (2015). "ATP4 and ciliation in the neuroectoderm and endoderm of Xenopus embryos and tadpoles". Data in Brief. DOI:10.1016/j.dib.2015.04.003. PMID 26217756. PMC: 4510371. | ||
Author | Walentek P, Hagenlocher C, Beyer T, Müller C, Feistel K, Schweickert A, Harland R, Blum M | ||
Permission (Reusing this file) |
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 | 12:55, 1 November 2016 | 11 s, 400 × 512 (1.68 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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Short title | Video 1 |
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Author | Walentek P, Hagenlocher C, Beyer T, Müller C, Feistel K, Schweickert A, Harland R, Blum M |
Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | ATP4a is required for Foxj1-dependent generation of cerebrospinal fluid flow. Uninjected control (uninj. control) and manipulated embryos were injected with fluorescent beads into the forth brain ventricle of stage 45 tadpoles and cilia-driven fluid flow was recorded for 5.7 sec. Velocity of cilia-driven flow in atp4a morphants (atp4aSplMO) was strongly reduced and could be restored by co-injection of atp4a or foxj1 DNA. The movie plays at 0.52× real time. |
Software used | |
Date and time of digitizing | 2015-04-20 |