Category:Media from PLOS Biology
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Images from PLOS Biology according to this statement are under {{Cc-by-2.5}} and may be tagged with {{PLOS}}.
Please note: according to license: Featured issue images - those ones that are not a direct part of articles - may not be freely licensed.
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Unterkategorien
Es werden 2 von insgesamt 2 Unterkategorien in dieser Kategorie angezeigt:
In Klammern die Anzahl der enthaltenen Kategorien (K), Seiten (S), Dateien (D)
Medien in der Kategorie „Media from PLOS Biology“
Folgende 200 Dateien sind in dieser Kategorie, von 2.036 insgesamt.
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10.1371 journal.pbio.1000005.g002-L.gif 569 × 432; 160 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s013.ogv 4,5 s, 720 × 486; 446 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s014.ogv 6,7 s, 720 × 486; 558 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s015.ogv 3,3 s, 720 × 486; 334 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s016.ogv 4,7 s, 720 × 486; 187 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s017.ogv 4,5 s, 720 × 486; 334 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s018.ogv 10 s, 720 × 486; 1,03 MB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s019.ogv 16 s, 46 × 92; 244 KB
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3-OST-7-Regulates-BMP-Dependent-Cardiac-Contraction-pbio.1001727.s020.ogv 18 s, 128 × 128; 237 KB
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A Conversation with the Eisen Brothers - PLOS Biology Tenth Anniversary.webm 16 min 52 s, 1.280 × 720; 131,48 MB
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A-Biotic-Game-Design-Project-for-Integrated-Life-Science-and-Engineering-Education-pbio.1002110.s027.ogv 1 min 58 s, 656 × 368; 17,1 MB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv001.ogv 9,2 s, 670 × 332; 154 KB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv002.ogv 31 s, 330 × 494; 517 KB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv003.ogv 17 s, 274 × 270; 175 KB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv004.ogv 10 s, 200 × 136; 450 KB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv005.ogv 3,5 s, 456 × 346; 152 KB
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A-Cell-Cycle-Timer-for-Asymmetric-Spindle-Positioning-pbio.1000088.sv006.ogv 3,5 s, 340 × 296; 157 KB
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A-Change-in-the-Ion-Selectivity-of-Ligand-Gated-Ion-Channels-Provides-a-Mechanism-to-Switch-Behavior-pbio.1002238.s009.ogv 1 min 32 s, 640 × 480; 2,69 MB
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A-Computational-Framework-for-Ultrastructural-Mapping-of-Neural-Circuitry-pbio.1000074.sv001.ogv 9,0 s, 800 × 800; 5,45 MB
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A-Computational-Framework-for-Ultrastructural-Mapping-of-Neural-Circuitry-pbio.1000074.sv002.ogv 19 s, 600 × 322; 2,22 MB
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A-Computational-Framework-for-Ultrastructural-Mapping-of-Neural-Circuitry-pbio.1000074.sv003.ogv 34 s, 466 × 500; 27,98 MB
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A-Feedback-Loop-between-Dynamin-and-Actin-Recruitment-during-Clathrin-Mediated-Endocytosis-pbio.1001302.s012.ogv 1 min 17 s, 352 × 288; 8,19 MB
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A-Helical-Structural-Nucleus-Is-the-Primary-Elongating-Unit-of-Insulin-Amyloid-Fibrils-pbio.0050134.sv001.ogv 1 min 0 s, 320 × 240; 2,68 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s010.ogv 2 min 35 s, 480 × 272; 15,17 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s011.ogv 5 min 43 s, 480 × 272; 50,58 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s012.ogv 1 min 37 s, 480 × 272; 11,55 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s013.ogv 1 min 26 s, 480 × 272; 10,9 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s014.ogv 4 min 24 s, 480 × 272; 35,58 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s015.ogv 1 min 13 s, 480 × 272; 8,19 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s016.ogv 3 min 30 s, 480 × 272; 25,95 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s017.ogv 6 min 19 s, 480 × 272; 54,55 MB
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A-Low-Cost-Hands-on-Module-to-Characterize-Antimicrobial-Compounds-Using-an-Interdisciplinary-pbio.1002044.s018.ogv 3 min 17 s, 480 × 272; 23,97 MB
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A-Neuronal-Acetylcholine-Receptor-Regulates-the-Balance-of-Muscle-Excitation-and-Inhibition-in-pbio.1000265.s010.ogv 1 min 30 s, 352 × 288; 1,1 MB
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A-New-Look-at-Some-Old-Animals-pbio.1000007.sv001.ogv 17 s, 320 × 240; 307 KB
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A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv004.ogv 1 min 46 s, 320 × 240; 4,91 MB
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A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv006.ogv 1 min 5 s, 320 × 240; 3,67 MB
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A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv008.ogv 1 min 4 s, 320 × 240; 3,52 MB
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A-Webcast-of-Bird-Nesting-as-a-State-of-the-Art-Citizen-Science-pbio.2001132.s008.ogv 3 min 17 s, 1.280 × 720; 24,45 MB
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Accessing-the-Microscopic-World-pbio.0030012.sv001.ogv 1 min 49 s, 240 × 180; 7,14 MB
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Acorns at the base of a Red Oak.png 525 × 795; 1,05 MB
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Acridotheres tristis.png 452 × 452; 423 KB
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Actenoides concretus.png 1.400 × 918; 1,28 MB
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Action-Enhances-Acoustic-Cues-for-3-D-Target-Localization-by-Echolocating-Bats-pbio.1002544.s010.ogv 48 s, 1.280 × 720; 5,3 MB
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Action-Enhances-Acoustic-Cues-for-3-D-Target-Localization-by-Echolocating-Bats-pbio.1002544.s011.ogv 31 s, 1.280 × 720; 2,95 MB
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Action-Enhances-Acoustic-Cues-for-3-D-Target-Localization-by-Echolocating-Bats-pbio.1002544.s012.ogv 38 s, 1.280 × 720; 5,34 MB
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Acyrthosiphon pisum (pea aphid)-PLoS.jpg 650 × 650; 298 KB
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Aff Quetzalcoatlus - Longrich et al 2018.PNG 1.432 × 1.870; 1,18 MB
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Algorithmic-Self-Assembly-of-DNA-Sierpinski-Triangles-pbio.0020424.sv001.ogv 20 s, 576 × 432; 15,23 MB
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Amacrine.png 356 × 409; 176 KB
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Amphioxus.png 2.020 × 1.277; 988 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv001.ogv 11 s, 796 × 796; 8,63 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv002.ogv 13 s, 512 × 512; 12,19 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv003.ogv 3,9 s, 252 × 237; 38 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv004.ogv 3,9 s, 252 × 237; 27 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv005.ogv 3,9 s, 252 × 237; 36 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv006.ogv 29 s, 382 × 334; 16,89 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv007.ogv 15 s, 331 × 372; 11,4 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv008.ogv 15 s, 352 × 317; 3,62 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv009.ogv 14 s, 393 × 330; 6,43 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv010.ogv 7,1 s, 284 × 287; 305 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv011.ogv 2,9 s, 272 × 237; 566 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv012.ogv 7,4 s, 223 × 286; 1,44 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv013.ogv 7,8 s, 196 × 174; 272 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv014.ogv 10 s, 251 × 251; 241 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv015.ogv 10 s, 251 × 251; 373 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv016.ogv 14 s, 512 × 512; 8,51 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv017.ogv 10 s, 251 × 251; 398 KB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv018.ogv 8,0 s, 296 × 349; 3,27 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv019.ogv 15 s, 425 × 941; 1,17 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv020.ogv 15 s, 425 × 941; 1,35 MB
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An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv021.ogv 25 s, 425 × 697; 269 KB
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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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An-HIV-Feedback-Resistor-Auto-Regulatory-Circuit-Deactivator-and-Noise-Buffer-pbio.0050009.sv001.ogv 14 s, 316 × 240; 1,36 MB
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An-Integrin-Dependent-Role-of-Pouch-Endoderm-in-Hyoid-Cartilage-Development-pbio.0020244.sv001.ogv 20 s, 519 × 512; 1,72 MB
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An-Integrin-Dependent-Role-of-Pouch-Endoderm-in-Hyoid-Cartilage-Development-pbio.0020244.sv002.ogv 20 s, 519 × 512; 2,33 MB
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An-Integrin-Dependent-Role-of-Pouch-Endoderm-in-Hyoid-Cartilage-Development-pbio.0020244.sv003.ogv 20 s, 519 × 512; 1,77 MB
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Ancient DNA.png 606 × 594; 157 KB
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Ancient maize.png 468 × 1.283; 396 KB