Category:Cell motility
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Media in category "Cell motility"
The following 200 files are in this category, out of 970 total.
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A-Combined-In-Vitro-Imaging-and-Multi-Scale-Modeling-System-for-Studying-the-Role-of-Cell-Matrix-pone.0148254.s005.ogv 5.7 s, 1,920 × 1,084; 1.48 MB
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A-MAPK-Driven-Feedback-Loop-Suppresses-Rac-Activity-to-Promote-RhoA-Driven-Cancer-Cell-Invasion-pcbi.1004909.s011.ogv 2.9 s, 1,024 × 1,024; 1.09 MB
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A-Mathematical-Model-for-EphEphrin-Directed-Segregation-of-Intermingled-Cells-pone.0111803.s003.ogv 1 min 12 s, 640 × 480; 19.37 MB
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A-Mathematical-Model-for-EphEphrin-Directed-Segregation-of-Intermingled-Cells-pone.0111803.s004.ogv 1 min 36 s, 640 × 480; 59.23 MB
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A-Novel-Chemotaxis-Assay-in-3-D-Collagen-Gels-by-Time-Lapse-Microscopy-pone.0052251.s001.ogv 12 s, 336 × 238; 121 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s002.ogv 7.2 s, 696 × 520; 237 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s003.ogv 7.2 s, 696 × 520; 226 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s004.ogv 1.8 s, 696 × 520; 231 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s005.ogv 3.6 s, 696 × 520; 286 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s006.ogv 5.1 s, 696 × 520; 208 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s007.ogv 5.1 s, 696 × 520; 155 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s008.ogv 3.6 s, 696 × 520; 222 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s009.ogv 9.0 s, 696 × 520; 263 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s010.ogv 7.0 s, 696 × 520; 371 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s011.ogv 7.2 s, 696 × 520; 434 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s012.ogv 3.6 s, 696 × 520; 252 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s013.ogv 3.6 s, 696 × 520; 309 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s014.ogv 3.6 s, 696 × 520; 125 KB
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A-Role-for-PP1NIPP1-in-Steering-Migration-of-Human-Cancer-Cells-pone.0040769.s015.ogv 3.6 s, 696 × 520; 225 KB
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Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s007.ogv 7.1 s, 435 × 343; 162 KB
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Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s008.ogv 7.1 s, 435 × 343; 142 KB
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Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s009.ogv 22 s, 389 × 734; 492 KB
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Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s010.ogv 22 s, 389 × 734; 521 KB
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Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s011.ogv 27 s, 389 × 734; 507 KB
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Atomic-Force-Mechanobiology-of-Pluripotent-Stem-Cell-Derived-Cardiomyocytes-pone.0037559.s002.ogv 5.1 s, 768 × 576; 654 KB
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Atomic-Force-Mechanobiology-of-Pluripotent-Stem-Cell-Derived-Cardiomyocytes-pone.0037559.s003.ogv 4.9 s, 768 × 576; 1.18 MB
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Automated-Cell-Identification-and-Tracking-Using-Nanoparticle-Moving-Light-Displays-pone.0040835.s003.ogv 48 s, 1,280 × 720; 10.38 MB
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Automated-Cell-Identification-and-Tracking-Using-Nanoparticle-Moving-Light-Displays-pone.0040835.s004.ogv 45 s, 1,280 × 720; 1.73 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s001.ogv 20 s, 512 × 512; 4.89 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s002.ogv 6.5 s, 1,524 × 992; 427 KB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s003.ogv 39 s, 512 × 512; 3.48 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s004.ogv 9.0 s, 512 × 512; 2.03 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s005.ogv 9.0 s, 512 × 512; 2.21 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s006.ogv 3.0 s, 512 × 512; 145 KB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s007.ogv 22 s, 512 × 512; 2.18 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s008.ogv 26 s, 512 × 512; 3.45 MB
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CCR2-Acts-as-Scavenger-for-CCL2-during-Monocyte-Chemotaxis-pone.0037208.s009.ogv 26 s, 388 × 392; 4.33 MB
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Chaste-An-Open-Source-C++-Library-for-Computational-Physiology-and-Biology-pcbi.1002970.s003.ogv 30 s, 1,348 × 772; 7.48 MB
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Chaste-An-Open-Source-C++-Library-for-Computational-Physiology-and-Biology-pcbi.1002970.s004.ogv 1 min 15 s, 1,036 × 852; 17.99 MB
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Chaste-An-Open-Source-C++-Library-for-Computational-Physiology-and-Biology-pcbi.1002970.s005.ogv 20 s, 455 × 455; 1.65 MB
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Chaste-An-Open-Source-C++-Library-for-Computational-Physiology-and-Biology-pcbi.1002970.s006.ogv 3.7 s, 1,412 × 952; 229 KB
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Co-regulation-of-Iron-Metabolism-and-Virulence-Associated-Functions-by-Iron-and-XibR-a-Novel-Iron-ppat.1006019.s017.ogv 9.9 s, 1,392 × 1,040; 3.27 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s002.ogv 10 s, 1,032 × 1,025; 4.79 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s003.ogv 10 s, 1,032 × 1,025; 2.46 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s004.ogv 10 s, 1,032 × 1,025; 4.24 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s005.ogv 10 s, 1,032 × 1,025; 5.21 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s006.ogv 8.0 s, 1,032 × 1,025; 4.82 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s007.ogv 10 s, 1,032 × 1,025; 4.66 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s008.ogv 10 s, 1,032 × 1,025; 5.81 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s009.ogv 10 s, 1,032 × 1,025; 5.05 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s010.ogv 10 s, 1,545 × 1,025; 2.95 MB
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Coactosin-Like-1-Antagonizes-Cofilin-to-Promote-Lamellipodial-Protrusion-at-the-Immune-Synapse-pone.0085090.s011.ogv 10 s, 1,032 × 1,025; 2.92 MB
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CofilinTwinstar-Phosphorylation-Levels-Increase-in-Response-to-Impaired-Coenzyme-A-Metabolism-pone.0043145.s006.ogv 8.6 s, 1,024 × 1,024; 8.68 MB
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CofilinTwinstar-Phosphorylation-Levels-Increase-in-Response-to-Impaired-Coenzyme-A-Metabolism-pone.0043145.s007.ogv 8.6 s, 1,024 × 1,024; 8.08 MB
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Collective-Dynamics-of-Active-Cytoskeletal-Networks-pone.0023798.s003.ogv 17 s, 336 × 358; 1.36 MB
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Collective-Dynamics-of-Active-Cytoskeletal-Networks-pone.0023798.s004.ogv 17 s, 336 × 256; 197 KB
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Collective-Dynamics-of-Active-Cytoskeletal-Networks-pone.0023798.s005.ogv 17 s, 336 × 256; 354 KB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s001.ogv 1 min 3 s, 640 × 480; 12.89 MB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s002.ogv 1 min 3 s, 928 × 306; 11.29 MB
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Computational-Estimates-of-Membrane-Flow-and-Tension-Gradient-in-Motile-Cells-pone.0084524.s011.ogv 20 s, 800 × 600; 3.35 MB
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Computational-Estimates-of-Membrane-Flow-and-Tension-Gradient-in-Motile-Cells-pone.0084524.s012.ogv 20 s, 800 × 600; 2.28 MB
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