File:Flow Generated by the Mechanical Model cilia primitive node.ogv

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Flow_Generated_by_the_Mechanical_Model_cilia_primitive_node.ogv (Ogg Theora video file, length 9.9 s, 320 × 240 pixels, 63 kbps, file size: 77 KB)

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Video S2. Flow Generated by the Mechanical Model

(C) Leftward flow. Flow generated by five rotating wires (visible as white lines in photo) drives glitter towards the left at the depth of 3 mm from the surface. Trajectory of the glitter becomes curved far from the wires (t = 3′) because the glitter has reached the chamber's wall. Scale = 1 cm.
Date
Source https://doi.org/10.1371/journal.pbio.0030268 (2005) De Novo Formation of Left–Right Asymmetry by Posterior Tilt of Nodal Cilia. PLoS Biol 3(8): e268.
Author Nonaka S, Yoshiba S, Watanabe D, Ikeuchi S, Goto T, Marshall WF, et al.
This file, which was originally posted to an external website, has not yet been reviewed by an administrator or reviewer to confirm that the above license is valid. See Category:License review needed for further instructions.

Copyright: © 2005 Nonaka et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Date/TimeThumbnailDimensionsUserComment
current20:17, 4 May 20249.9 s, 320 × 240 (77 KB)Rasbak (talk | contribs){{Information |description=Video S2. Flow Generated by the Mechanical Model (C) Leftward flow. Flow generated by five rotating wires (visible as white lines in photo) drives glitter towards the left at the depth of 3 mm from the surface. Trajectory of the glitter becomes curved far from the wires (t = 3′) because the glitter has reached the chamber's wall. Scale = 1 cm. |date=2005-07-26 |source= https://doi.org/10.1371/journal.pbio.0030268 (2005) De Novo Formation of Left–Right Asymmetry by...

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Format Bitrate Download Status Encode time
VP9 240P 37 kbps Completed 20:27, 4 May 2024 2.0 s
WebM 360P 34 kbps Completed 20:27, 4 May 2024 1.0 s
QuickTime 144p (MJPEG) 247 kbps Completed 20:16, 25 October 2024 1.0 s

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