Category:Videos of evolutionary biology
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Media in category "Videos of evolutionary biology"
The following 200 files are in this category, out of 589 total.
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A-Distinct-Layer-of-the-Medulla-Integrates-Sky-Compass-Signals-in-the-Brain-of-an-Insect-pone.0027855.s004.ogv 6.7 s, 1,264 × 960; 5.43 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-Fluorescent-Chromatophore-Changes-the-Level-of-Fluorescence-in-a-Reef-Fish-pone.0037913.s001.ogv 28 s, 732 × 480; 2.56 MB
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A-New-Species-of-Mesonivirus-from-the-Northern-Territory-Australia-pone.0091103.s003.ogv 12 s, 674 × 638; 8.02 MB
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A-Novel-Reproductive-Mode-in-Frogs-A-New-Species-of-Fanged-Frog-with-Internal-Fertilization-and-pone.0115884.s001.ogv 30 s, 1,920 × 1,080; 44.41 MB
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A-Role-for-Programmed-Cell-Death-in-the-Microbial-Loop-pone.0062595.s005.ogv 7.1 s, 175 × 175; 67 KB
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A-Role-for-Programmed-Cell-Death-in-the-Microbial-Loop-pone.0062595.s006.ogv 2.6 s, 1,024 × 512; 365 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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Acoustic-Communication-at-the-Waters-Edge-Evolutionary-Insights-from-a-Mudskipper-pone.0021434.s007.ogv 7.0 s, 1,248 × 576; 1.35 MB
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Aerial-Jumping-in-the-Trinidadian-Guppy-(Poecilia-reticulata)-pone.0061617.s001.ogv 2.2 s, 480 × 360; 77 KB
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Aerial-Jumping-in-the-Trinidadian-Guppy-(Poecilia-reticulata)-pone.0061617.s002.ogv 7.6 s, 640 × 480; 458 KB
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Amphiprion frenatus submissive sounds - journal.pone.0049179.s002.ogv 8.0 s, 625 × 352; 1.04 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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Ancestral-Stories-of-Ghanaian-Bimoba-Reflect-Millennia-Old-Genetic-Lineages-pone.0065690.s004.ogv 5.2 s, 560 × 416; 104 KB
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Ant-Brood-Function-as-Life-Preservers-during-Floods-pone.0089211.s002.ogv 14 s, 576 × 324; 1.72 MB
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Ant-Brood-Function-as-Life-Preservers-during-Floods-pone.0089211.s003.ogv 29 s, 576 × 324; 5.6 MB
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Ants-Use-Partner-Specific-Odors-to-Learn-to-Recognize-a-Mutualistic-Partner-pone.0086054.s006.ogv 1 min 13 s, 720 × 480; 3.46 MB
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Ants-Use-Partner-Specific-Odors-to-Learn-to-Recognize-a-Mutualistic-Partner-pone.0086054.s007.ogv 1 min 13 s, 720 × 480; 6.42 MB
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Are-Dogs-Able-to-Communicate-with-Their-Owners-about-a-Desirable-Food-in-a-Referential-and-pone.0108003.s005.ogv 1 min 17 s, 872 × 480; 8.1 MB
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Are-Dogs-Able-to-Communicate-with-Their-Owners-about-a-Desirable-Food-in-a-Referential-and-pone.0108003.s006.ogv 1 min 25 s, 872 × 480; 7.72 MB
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Biology of SARS-CoV-2 – Evolution and Mutations.webm 2 min 47 s, 1,920 × 1,080; 38.85 MB
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Bonobos-Share-with-Strangers-pone.0051922.s008.ogv 4 min 38 s, 640 × 432; 8.48 MB
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Bonobos-Share-with-Strangers-pone.0051922.s009.ogv 1 min 39 s, 576 × 640; 4.2 MB
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Bonobos-Share-with-Strangers-pone.0051922.s010.ogv 2 min 45 s, 720 × 480; 7.94 MB
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Characterization-of-Atlantic-Cod-Spawning-Habitat-and-Behavior-in-Icelandic-Coastal-Waters-pone.0051321.s001.ogv 2 min 7 s, 320 × 240; 3.03 MB
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Chimpanzees-and-Bonobos-Exhibit-Emotional-Responses-to-Decision-Outcomes-pone.0063058.s006.ogv 1 min 23 s, 320 × 180; 1.97 MB
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Chimpanzees-and-Bonobos-Exhibit-Emotional-Responses-to-Decision-Outcomes-pone.0063058.s007.ogv 1 min 17 s, 320 × 180; 2.07 MB
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Chimpanzees-and-Bonobos-Exhibit-Emotional-Responses-to-Decision-Outcomes-pone.0063058.s008.ogv 36 s, 320 × 180; 1.2 MB
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Chimpanzees-and-Bonobos-Exhibit-Emotional-Responses-to-Decision-Outcomes-pone.0063058.s009.ogv 48 s, 320 × 180; 1.48 MB
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Comparative-Population-Assessments-of-Nautilus-sp.-in-the-Philippines-Australia-Fiji-and-American-pone.0100799.s002.ogv 58 s, 1,920 × 1,080; 34.43 MB
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Comparative-Population-Assessments-of-Nautilus-sp.-in-the-Philippines-Australia-Fiji-and-American-pone.0100799.s003.ogv 40 s, 1,920 × 1,080; 26.39 MB
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Cthulhu-Macrofasciculumque-n.-g.-n.-sp.-and-Cthylla-Microfasciculumque-n.-g.-n.-sp.-a-Newly-pone.0058509.s001.ogv 1 min 1 s, 640 × 480; 1.51 MB
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Cunnilingus-Apparently-Increases-Duration-of-Copulation-in-the-Indian-Flying-Fox-Pteropus-giganteus-pone.0059743.s001.ogv 1 min 17 s, 640 × 480; 32.02 MB
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Defensive-Aggregation-(Huddling)-in-Rattus-Norvegicus-toward-Predator-Odor-Individual-Differences-pone.0068483.s002.ogv 2 min 30 s, 320 × 120; 6.79 MB
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Developmental-Social-Environment-Imprints-Female-Preference-for-Male-Song-in-Mice-pone.0087186.s001.ogv 1 min 7 s, 854 × 480; 9.45 MB
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Developmental-Social-Environment-Imprints-Female-Preference-for-Male-Song-in-Mice-pone.0087186.s002.ogv 1 min 16 s, 640 × 480; 6.8 MB
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Diversity-Ecology-and-Biogeochemistry-of-Cyst-Forming-Acantharia-(Radiolaria)-in-the-Oceans-pone.0053598.s006.ogv 1 min 26 s, 640 × 480; 1.47 MB
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Dlx-and-sp6-9-Control-Optic-Cup-Regeneration-in-a-Prototypic-Eye-pgen.1002226.s015.ogv 6.4 s, 659 × 524; 124 KB
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Dogs'-Expectation-about-Signalers'-Body-Size-by-Virtue-of-Their-Growls-pone.0015175.s004.ogv 21 s, 640 × 480; 1.27 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s002.ogv 29 s, 720 × 480; 7.52 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s003.ogv 35 s, 720 × 480; 10.24 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s004.ogv 4.0 s, 800 × 600; 3.34 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s005.ogv 35 s, 720 × 480; 18.69 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s006.ogv 44 s, 720 × 480; 28.24 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s007.ogv 4.1 s, 800 × 600; 2.7 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s008.ogv 52 s, 376 × 484; 2.57 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s009.ogv 20 s, 832 × 752; 6.71 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s010.ogv 15 s, 832 × 752; 469 KB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s012.ogv 44 s, 324 × 348; 2.79 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s013.ogv 46 s, 324 × 328; 3.4 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s014.ogv 27 s, 832 × 752; 14.39 MB
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Early-Cambrian-Pentamerous-Cubozoan-Embryos-from-South-China-pone.0070741.s015.ogv 15 s, 768 × 576; 1,016 KB
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Efficient-Multiple-Object-Tracking-Using-Mutually-Repulsive-Active-Membranes-pone.0065769.s001.ogv 13 min 28 s, 256 × 256; 14.06 MB
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Efficient-Multiple-Object-Tracking-Using-Mutually-Repulsive-Active-Membranes-pone.0065769.s002.ogv 3 min 54 s, 400 × 400; 19.06 MB
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Efficient-Multiple-Object-Tracking-Using-Mutually-Repulsive-Active-Membranes-pone.0065769.s003.ogv 27 s, 512 × 512; 35.32 MB
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Efficient-Multiple-Object-Tracking-Using-Mutually-Repulsive-Active-Membranes-pone.0065769.s004.ogv 27 s, 512 × 512; 2.48 MB
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Endothelial-Cells-Use-a-Formin-Dependent-Phagocytosis-Like-Process-to-Internalize-the-Bacterium-ppat.1005603.s010.ogv 6.3 s, 1,024 × 1,024; 20.39 MB
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Evolution-at-Sutures-and-Centers-Recombination-Can-Aid-Adaptation-of-Spatially-Structured-pcbi.1005247.s007.ogv 16 s, 2,000 × 1,000; 77.1 MB
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Evolution-of-Collective-Behaviors-for-a-Real-Swarm-of-Aquatic-Surface-Robots-pone.0151834.s002.ogv 45 s, 1,920 × 1,080; 9.2 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s002.ogv 1 min 30 s, 854 × 480; 14.29 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s003.ogv 1 min 30 s, 854 × 480; 13.39 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s004.ogv 1 min 30 s, 854 × 480; 11.75 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s005.ogv 1 min 30 s, 854 × 480; 10.75 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s006.ogv 1 min 30 s, 854 × 480; 10.06 MB
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Evolution-of-Collective-Behaviour-in-an-Artificial-World-Using-Linguistic-Fuzzy-Rule-Based-Systems-pone.0168876.s007.ogv 1 min 30 s, 1,706 × 960; 47.69 MB
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Evolution-of-High-Tooth-Replacement-Rates-in-Sauropod-Dinosaurs-pone.0069235.s002.ogv 14 s, 1,100 × 650; 440 KB
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Evolution-of-High-Tooth-Replacement-Rates-in-Sauropod-Dinosaurs-pone.0069235.s003.ogv 1 min 36 s, 1,100 × 650; 3.77 MB
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Evolution-of-High-Tooth-Replacement-Rates-in-Sauropod-Dinosaurs-pone.0069235.s004.ogv 6.0 s, 640 × 480; 538 KB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s002.ogv 1 min 36 s, 400 × 400; 1.49 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s003.ogv 31 s, 640 × 320; 2.11 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s004.ogv 35 s, 460 × 460; 1.12 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s005.ogv 4 min 42 s, 200 × 200; 2.06 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s006.ogv 25 s, 700 × 350; 6.79 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s007.ogv 44 s, 700 × 700; 7.36 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s008.ogv 50 s, 700 × 700; 6.63 MB
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Exploitation-of-Other-Social-Amoebae-by-Dictyostelium-caveatum-pone.0000212.s009.ogv 45 s, 700 × 700; 9.36 MB
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Fatty-Acid-Preference-Changes-during-Development-in-Drosophila-melanogaster-pone.0026899.s005.ogv 4.0 s, 500 × 500; 639 KB
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Fatty-Acid-Preference-Changes-during-Development-in-Drosophila-melanogaster-pone.0026899.s006.ogv 4.0 s, 500 × 500; 734 KB
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Fatty-Acid-Preference-Changes-during-Development-in-Drosophila-melanogaster-pone.0026899.s007.ogv 4.0 s, 500 × 500; 1.16 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s005.ogv 11 s, 640 × 480; 1.01 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s006.ogv 11 s, 640 × 480; 986 KB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s007.ogv 11 s, 640 × 480; 1.35 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s008.ogv 11 s, 640 × 480; 774 KB
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Field-Studies-Reveal-Strong-Postmating-Isolation-between-Ecologically-Divergent-Butterfly-pbio.1000529.s015.ogv 1 min 28 s, 480 × 360; 13.4 MB
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