Category:Body patterning
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Subcategories
This category has the following 2 subcategories, out of 2 total.
A
- Auxin pattern formation (22 F)
C
Media in category "Body patterning"
The following 200 files are in this category, out of 280 total.
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A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s009.ogv 18 s, 854 × 722; 16.25 MB
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A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s010.ogv 18 s, 917 × 719; 8.64 MB
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A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s011.ogv 25 s, 925 × 720; 1.48 MB
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A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s016.ogv 1 min 3 s, 640 × 480; 6.71 MB
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A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s017.ogv 1 min 2 s, 640 × 480; 6.06 MB
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A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s018.ogv 1 min 2 s, 640 × 480; 6.04 MB
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A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s020.ogv 2 min 5 s, 640 × 480; 5.94 MB
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A-Precise-Bicoid-Gradient-Is-Nonessential-during-Cycles-11–13-for-Precise-Patterning-in-the-pone.0003651.s012.ogv 26 s, 1,098 × 1,112; 9.54 MB
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A-Spatio-Temporal-Model-of-Notch-Signalling-in-the-Zebrafish-Segmentation-Clock-Conditions-for-pone.0016980.s002.ogv 1 min 0 s, 640 × 480; 673 KB
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A-Spatio-Temporal-Model-of-Notch-Signalling-in-the-Zebrafish-Segmentation-Clock-Conditions-for-pone.0016980.s003.ogv 1 min 0 s, 640 × 480; 1.59 MB
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A-Spatio-Temporal-Model-of-Notch-Signalling-in-the-Zebrafish-Segmentation-Clock-Conditions-for-pone.0016980.s004.ogv 1 min 0 s, 640 × 480; 983 KB
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A-Spatio-Temporal-Model-of-Notch-Signalling-in-the-Zebrafish-Segmentation-Clock-Conditions-for-pone.0016980.s005.ogv 1 min 0 s, 640 × 480; 2.48 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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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s001.ogv 25 s, 1,024 × 768; 23.14 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s002.ogv 12 s, 1,024 × 768; 14.4 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s004.ogv 0.0 s, 512 × 340; 13.15 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s005.ogv 8.1 s, 1,024 × 768; 43.09 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s006.ogv 8.0 s, 1,384 × 1,040; 48.61 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s007.ogv 15 s, 1,024 × 768; 53.72 MB
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Collective-Motion-of-Cells-Mediates-Segregation-and-Pattern-Formation-in-Co-Cultures-pone.0031711.s008.ogv 11 s, 1,024 × 768; 58.71 MB
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Drosophila-Hox-and-Sex-Determination-Genes-Control-Segment-Elimination-through-EGFR-and-pgen.1002874.s015.ogv 26 s, 1,024 × 1,024; 1.05 MB
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DV-axis-inversion.png 720 × 540; 76 KB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s013.ogv 47 s, 1,272 × 322; 4.94 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s014.ogv 47 s, 1,272 × 322; 5.34 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s015.ogv 44 s, 1,272 × 322; 5.64 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s016.ogv 52 s, 1,272 × 322; 5.66 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s017.ogv 47 s, 1,272 × 322; 5.34 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s018.ogv 42 s, 1,272 × 322; 4.44 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s019.ogv 23 s, 1,277 × 274; 2.45 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s020.ogv 44 s, 1,277 × 160; 5.22 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s021.ogv 1 min 16 s, 1,272 × 322; 13.51 MB
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From-Dynamic-Expression-Patterns-to-Boundary-Formation-in-the-Presomitic-Mesoderm-pcbi.1002586.s022.ogv 56 s, 1,272 × 322; 7.98 MB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s017.ogv 32 s, 358 × 260; 326 KB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s018.ogv 35 s, 308 × 224; 477 KB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s019.ogv 33 s, 308 × 224; 598 KB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s020.ogv 32 s, 256 × 186; 850 KB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s021.ogv 34 s, 256 × 186; 556 KB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s022.ogv 13 s, 692 × 678; 1.55 MB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s023.ogv 13 s, 792 × 778; 1.34 MB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s024.ogv 13 s, 792 × 778; 1.39 MB
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Genetic-Control-of-Organ-Shape-and-Tissue-Polarity-pbio.1000537.s025.ogv 13 s, 692 × 678; 1.61 MB
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Genetic-Dissection-of-the-Function-of-Hindbrain-Axonal-Commissures-pbio.1000325.s014.ogv 16 s, 640 × 480; 1.13 MB
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Integrin-α5-Coordinates-Assembly-of-Posterior-Cranial-Placodes-in-Zebrafish-and-Enhances-Fgf-pone.0027778.s007.ogv 5.4 s, 1,388 × 1,040; 1.07 MB
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Integrin-α5-Coordinates-Assembly-of-Posterior-Cranial-Placodes-in-Zebrafish-and-Enhances-Fgf-pone.0027778.s008.ogv 4.9 s, 1,388 × 1,040; 327 KB
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Integrin-α5-Coordinates-Assembly-of-Posterior-Cranial-Placodes-in-Zebrafish-and-Enhances-Fgf-pone.0027778.s009.ogv 5.0 s, 1,388 × 1,040; 408 KB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s002.ogv 5.0 s, 417 × 202; 295 KB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s003.ogv 5.7 s, 979 × 726; 640 KB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s004.ogv 6.7 s, 724 × 768; 1.55 MB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s005.ogv 1.5 s, 410 × 798; 97 KB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s006.ogv 4.0 s, 645 × 577; 362 KB
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Intercellular-Bridges-in-Vertebrate-Gastrulation-pone.0020230.s007.ogv 1.3 s, 274 × 369; 19 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S1.ogv 21 s, 968 × 318; 901 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S10.ogv 6.4 s, 536 × 512; 1.02 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S11.ogv 8.0 s, 510 × 510; 394 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S2.ogv 10 s, 722 × 296; 278 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S3.ogv 8.7 s, 686 × 510; 835 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S4.ogv 12 s, 636 × 632; 286 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S5.ogv 10 s, 636 × 516; 2.3 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S6.ogv 4.4 s, 828 × 603; 3 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S7.ogv 6.0 s, 518 × 467; 484 KB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s008.ogv 21 s, 512 × 284; 1.17 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s009.ogv 23 s, 512 × 512; 2.07 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s010.ogv 26 s, 512 × 512; 1.53 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s011.ogv 25 s, 512 × 512; 2.13 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s012.ogv 25 s, 512 × 512; 1.75 MB
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Myriapod post-embryonic development.png 2,176 × 1,448; 607 KB
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Neuroarchitecture-of-Peptidergic-Systems-in-the-Larval-Ventral-Ganglion-of-Drosophila-melanogaster-pone.0000695.s011.ogv 8.2 s, 1,218 × 1,000; 1.45 MB
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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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Patterns-of-Mesenchymal-Condensation-in-a-Multiscale-Discrete-Stochastic-Model-pcbi.0030076.sv001.ogv 4 min 10 s, 480 × 480; 729 KB
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Patterns-of-Mesenchymal-Condensation-in-a-Multiscale-Discrete-Stochastic-Model-pcbi.0030076.sv002.ogv 4 min 10 s, 480 × 480; 414 KB
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Patterns-of-Mesenchymal-Condensation-in-a-Multiscale-Discrete-Stochastic-Model-pcbi.0030076.sv003.ogv 1 min 7 s, 480 × 480; 6.09 MB
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Patterns-of-Mesenchymal-Condensation-in-a-Multiscale-Discrete-Stochastic-Model-pcbi.0030076.sv004.ogv 1 min 7 s, 480 × 480; 5.33 MB
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