Category:Videos of evolutionary developmental biology
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- Videos of sequence alignment (68 F)
Media in category "Videos of evolutionary developmental biology"
The following 123 files are in this category, out of 123 total.
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A-Division-in-PIN-Mediated-Auxin-Patterning-during-Organ-Initiation-in-Grasses-pcbi.1003447.s017.ogv 15 s, 480 × 480; 1.05 MB
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A-Division-in-PIN-Mediated-Auxin-Patterning-during-Organ-Initiation-in-Grasses-pcbi.1003447.s018.ogv 1 min 35 s, 156 × 480; 779 KB
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A-Division-in-PIN-Mediated-Auxin-Patterning-during-Organ-Initiation-in-Grasses-pcbi.1003447.s019.ogv 1 min 35 s, 640 × 416; 1.91 MB
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A-Division-in-PIN-Mediated-Auxin-Patterning-during-Organ-Initiation-in-Grasses-pcbi.1003447.s020.ogv 2 min 9 s, 640 × 490; 4.84 MB
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A-Reexamination-of-the-Carnivora-Malleus-(Mammalia-Placentalia)-pone.0050485.s001.ogv 3.1 s, 834 × 469; 350 KB
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A-Staging-Scheme-for-the-Development-of-the-Moth-Midge-Clogmia-albipunctata-pone.0084422.s004.ogv 8 min 50 s, 465 × 178; 12.3 MB
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A-Staging-Scheme-for-the-Development-of-the-Moth-Midge-Clogmia-albipunctata-pone.0084422.s005.ogv 45 s, 2,336 × 808; 10.32 MB
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A-Staging-Scheme-for-the-Development-of-the-Scuttle-Fly-Megaselia-abdita-pone.0084421.s003.ogv 8 min 50 s, 517 × 230; 17.44 MB
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A-Staging-Scheme-for-the-Development-of-the-Scuttle-Fly-Megaselia-abdita-pone.0084421.s004.ogv 2 min 45 s, 1,168 × 495; 10.21 MB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s012.ogv 2.3 s, 1,024 × 510; 715 KB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s013.ogv 12 s, 1,376 × 1,040; 1.06 MB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s016.ogv 1.4 s, 1,024 × 510; 356 KB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s017.ogv 2.8 s, 1,024 × 256; 2.04 MB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s018.ogv 2.4 s, 1,024 × 512; 505 KB
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An-Equatorial-Contractile-Mechanism-Drives-Cell-Elongation-but-not-Cell-Division-pbio.1001781.s019.ogv 1.6 s, 1,024 × 510; 259 KB
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Caudal-Regulates-the-Spatiotemporal-Dynamics-of-Pair-Rule-Waves-in-Tribolium-pgen.1004677.s014.ogv 30 s, 640 × 480; 2.57 MB
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Caudal-Regulates-the-Spatiotemporal-Dynamics-of-Pair-Rule-Waves-in-Tribolium-pgen.1004677.s015.ogv 30 s, 640 × 480; 1.26 MB
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Evolutionarily-Ancient-Association-of-the-FoxJ1-Transcription-Factor-with-the-Motile-Ciliogenic-pgen.1003019.s004.ogv 1 min 35 s, 640 × 480; 2.44 MB
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Function-and-Regulation-of-AUTS2-a-Gene-Implicated-in-Autism-and-Human-Evolution-pgen.1003221.s007.ogv 6.8 s, 1,360 × 1,024; 3.58 MB
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Function-and-Regulation-of-AUTS2-a-Gene-Implicated-in-Autism-and-Human-Evolution-pgen.1003221.s008.ogv 7.3 s, 1,360 × 1,024; 4.21 MB
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Itch-Is-Required-for-Lateral-Line-Development-in-Zebrafish-pone.0111799.s006.ogv 2.3 s, 672 × 512; 238 KB
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Itch-Is-Required-for-Lateral-Line-Development-in-Zebrafish-pone.0111799.s007.ogv 2.3 s, 672 × 512; 158 KB
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Itch-Is-Required-for-Lateral-Line-Development-in-Zebrafish-pone.0111799.s008.ogv 2.3 s, 672 × 512; 168 KB
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Itch-Is-Required-for-Lateral-Line-Development-in-Zebrafish-pone.0111799.s009.ogv 2.3 s, 672 × 512; 245 KB
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Lethal-Fighting-in-Nematodes-Is-Dependent-on-Developmental-Pathway-Male-Male-Fighting-in-the-pone.0089385.s001.ogv 3 min 0 s, 320 × 240; 1.31 MB
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Lethal-Fighting-in-Nematodes-Is-Dependent-on-Developmental-Pathway-Male-Male-Fighting-in-the-pone.0089385.s002.ogv 3 min 0 s, 320 × 240; 3.91 MB
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Lethal-Fighting-in-Nematodes-Is-Dependent-on-Developmental-Pathway-Male-Male-Fighting-in-the-pone.0089385.s003.ogv 1 min 36 s, 320 × 240; 1.13 MB
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Lethal-Fighting-in-Nematodes-Is-Dependent-on-Developmental-Pathway-Male-Male-Fighting-in-the-pone.0089385.s004.ogv 1 min 48 s, 320 × 240; 1.16 MB
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Lungfish-Axial-Muscle-Function-and-the-Vertebrate-Water-to-Land-Transition-pone.0096516.s001.ogv 5.6 s, 605 × 232; 1.74 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s001.ogv 27 s, 768 × 576; 3.03 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s002.ogv 48 s, 768 × 576; 2.74 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s003.ogv 2 min 46 s, 768 × 576; 9.6 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s004.ogv 1 min 41 s, 768 × 576; 6.06 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s005.ogv 1 min 29 s, 768 × 576; 6.15 MB
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Metamorphosis-in-the-Cirripede-Crustacean-Balanus-amphitrite-pone.0037408.s006.ogv 35 s, 640 × 480; 1.43 MB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s002.ogv 6.0 s, 608 × 608; 62 KB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s003.ogv 5.0 s, 512 × 512; 94 KB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s004.ogv 9.0 s, 512 × 512; 630 KB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s005.ogv 8.0 s, 1,024 × 1,024; 2.24 MB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s006.ogv 52 s, 512 × 512; 573 KB
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Muscular-Anatomy-of-the-Podocoryna-carnea-Hydrorhiza-pone.0072221.s007.ogv 5.5 s, 2,048 × 2,048; 622 KB
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Novel-Function-of-Distal-less-as-a-Gap-Gene-during-Spider-Segmentation-pgen.1002342.s010.ogv 21 s, 480 × 360; 915 KB
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Novel-Function-of-Distal-less-as-a-Gap-Gene-during-Spider-Segmentation-pgen.1002342.s011.ogv 26 s, 480 × 360; 1,013 KB
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Real-Time-In-Vivo-Imaging-of-Butterfly-Wing-Development-Revealing-the-Cellular-Dynamics-of-the-pone.0089500.s001.ogv 6 min 0 s, 640 × 480; 15.54 MB
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Real-Time-In-Vivo-Imaging-of-Butterfly-Wing-Development-Revealing-the-Cellular-Dynamics-of-the-pone.0089500.s004.ogv 2 min 30 s, 640 × 480; 4.03 MB
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Real-Time-In-Vivo-Imaging-of-Butterfly-Wing-Development-Revealing-the-Cellular-Dynamics-of-the-pone.0089500.s006.ogv 3 min 22 s, 426 × 240; 3.25 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s002.ogv 11 s, 1,346 × 780; 787 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s003.ogv 32 s, 798 × 348; 2.92 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s004.ogv 38 s, 1,920 × 1,080; 22.52 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s005.ogv 6.8 s, 1,920 × 1,080; 1.33 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s006.ogv 22 s, 1,450 × 758; 2.37 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s007.ogv 8.0 s, 1,294 × 512; 541 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s008.ogv 24 s, 1,698 × 730; 4.28 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s009.ogv 18 s, 960 × 540; 594 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s010.ogv 6.9 s, 1,024 × 768; 715 KB
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Stomatal-Dimorphism-of-Neodiplogaster-acaloleptae-(Diplogastromorpha-Diplogastridae)-pone.0155715.s003.ogv 25 s, 1,280 × 720; 8.32 MB
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Stomatal-Dimorphism-of-Neodiplogaster-acaloleptae-(Diplogastromorpha-Diplogastridae)-pone.0155715.s004.ogv 23 s, 1,280 × 720; 3.18 MB
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Stomatal-Dimorphism-of-Neodiplogaster-acaloleptae-(Diplogastromorpha-Diplogastridae)-pone.0155715.s005.ogv 1 min 0 s, 854 × 480; 7.39 MB
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Swim-Training-Changes-the-Spatio-Temporal-Dynamics-of-Skeletogenesis-in-Zebrafish-Larvae-(Danio-pone.0034072.s004.ogv 1 min 1 s, 720 × 400; 2.32 MB
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Swim-Training-Changes-the-Spatio-Temporal-Dynamics-of-Skeletogenesis-in-Zebrafish-Larvae-(Danio-pone.0034072.s005.ogv 1 min 3 s, 720 × 400; 2.29 MB
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The-Effects-of-Experimentally-Induced-Adelphophagy-in-Gastropod-Embryos-pone.0103366.s001.ogv 2 min 7 s, 960 × 540; 9.26 MB
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