File:A-workflow-to-process-3D+time-microscopy-images-of-developing-organisms-and-reconstruct-their-cell-ncomms9674-s8.ogv

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English: Supplementary Movie 7 We focus during gastrulation on one cell (in green) selected from the hypoblast, and a few other cells (in pink) selected from the epiblast. Raw data is displayed as a single orthoslice (in gray levels), which is automatically adjusted to keep track of the green cell over consecutive time steps. When the selected cell divides, its progeny inherits the green label and the raw data orthoslice is automatically adjusted on one of the daughters (Mov-IT visualization tool).
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Source Video file from Faure E, Savy T, Rizzi B, Melani C, Stašová O, Fabrèges D, Špir R, Hammons M, Čúnderlík R, Recher G, Lombardot B, Duloquin L, Colin I, Kollár J, Desnoulez S, Affaticati P, Maury B, Boyreau A, Nief J, Calvat P, Vernier P, Frain M, Lutfalla G, Kergosien Y, Suret P, Remešíková M, Doursat R, Sarti A, Mikula K, Peyriéras N, Bourgine P (2016). "A workflow to process 3D+time microscopy images of developing organisms and reconstruct their cell lineage". Nature Communications. DOI:10.1038/ncomms9674. PMID 26912388. PMC: 4773431.
Author Faure E, Savy T, Rizzi B, Melani C, Stašová O, Fabrèges D, Špir R, Hammons M, Čúnderlík R, Recher G, Lombardot B, Duloquin L, Colin I, Kollár J, Desnoulez S, Affaticati P, Maury B, Boyreau A, Nief J, Calvat P, Vernier P, Frain M, Lutfalla G, Kergosien Y, Suret P, Remešíková M, Doursat R, Sarti A, Mikula K, Peyriéras N, Bourgine P
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current01:14, 29 October 201627 s, 850 × 500 (8.76 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 1.11 Mbps Completed 01:58, 16 August 2018 25 s
VP9 360P 617 kbps Completed 01:58, 16 August 2018 20 s
VP9 240P 315 kbps Completed 01:58, 16 August 2018 18 s
WebM 360P 510 kbps Completed 01:14, 29 October 2016 19 s
QuickTime 144p (MJPEG) 751 kbps Completed 12:21, 14 October 2024 1.0 s

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