Category:Videos of signal transduction
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This category has the following 5 subcategories, out of 5 total.
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Media in category "Videos of signal transduction"
The following 200 files are in this category, out of 491 total.
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-Adrenergic-Inhibition-of-Contractility-in-L6-Skeletal-Muscle-Cells-pone.0022304.s001.ogv 17 s, 320 × 240; 931 KB
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-Adrenergic-Inhibition-of-Contractility-in-L6-Skeletal-Muscle-Cells-pone.0022304.s002.ogv 17 s, 320 × 240; 877 KB
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A-Bow-Tie-Genetic-Architecture-for-Morphogenesis-Suggested-by-a-Genome-Wide-RNAi-Screen-in-pgen.1002010.s010.ogv 2 min 10 s, 1,898 × 1,226; 8.63 MB
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A-Bow-Tie-Genetic-Architecture-for-Morphogenesis-Suggested-by-a-Genome-Wide-RNAi-Screen-in-pgen.1002010.s011.ogv 2 min 10 s, 1,898 × 1,226; 10.45 MB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s009.ogv 40 s, 640 × 480; 5.54 MB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s010.ogv 20 s, 640 × 480; 368 KB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s011.ogv 20 s, 640 × 480; 1.16 MB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s012.ogv 20 s, 640 × 480; 1.01 MB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s013.ogv 20 s, 640 × 480; 918 KB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s014.ogv 20 s, 640 × 480; 783 KB
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A-Cell-Based-Model-for-Quorum-Sensing-in-Heterogeneous-Bacterial-Colonies-pcbi.1000819.s015.ogv 20 s, 640 × 480; 1.28 MB
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A-Comprehensive-Panel-of-Three-Dimensional-Models-for-Studies-of-Prostate-Cancer-Growth-Invasion-pone.0010431.s013.ogv 1 min 6 s, 524 × 384; 8.71 MB
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A-Cryptic-Frizzled-Module-in-Cell-Surface-Collagen-18-Inhibits-Wntβ−Catenin-Signaling-pone.0001878.s005.ogv 2.3 s, 1,024 × 1,024; 130 KB
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s016.ogv 1.3 s, 950 × 930; 1.97 MB
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s017.ogv 2.4 s, 760 × 970; 1.51 MB
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s018.ogv 4.7 s, 1,024 × 1,024; 1.58 MB
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s019.ogv 1.8 s, 526 × 606; 246 KB
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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-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s2.ogv 25 s, 1,920 × 1,080; 8.73 MB
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A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s3.ogv 6.3 s, 1,920 × 1,080; 342 KB
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A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s4.ogv 6.3 s, 1,920 × 1,080; 1.05 MB
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A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s5.ogv 3.2 s, 1,920 × 1,080; 1.53 MB
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A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s6.ogv 3.2 s, 1,920 × 1,080; 2.12 MB
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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-Possible-Role-for-Integrin-Signaling-in-Diffuse-Axonal-Injury-pone.0022899.s011.ogv 3.4 s, 640 × 480; 605 KB
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A-Possible-Role-for-Integrin-Signaling-in-Diffuse-Axonal-Injury-pone.0022899.s012.ogv 3.0 s, 560 × 992; 815 KB
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A-Possible-Role-for-Integrin-Signaling-in-Diffuse-Axonal-Injury-pone.0022899.s013.ogv 1.3 s, 1,024 × 1,024; 1.02 MB
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A-Reaction-Diffusion-Model-of-ROS-Induced-ROS-Release-in-a-Mitochondrial-Network-pcbi.1000657.s004.ogv 1.9 s, 324 × 120; 1.32 MB
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A-Reaction-Diffusion-Model-of-ROS-Induced-ROS-Release-in-a-Mitochondrial-Network-pcbi.1000657.s005.ogv 1.6 s, 316 × 134; 1.11 MB
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A-Reaction-Diffusion-Model-of-ROS-Induced-ROS-Release-in-a-Mitochondrial-Network-pcbi.1000657.s006.ogv 1 min 38 s, 472 × 136; 13.17 MB
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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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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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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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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s007.ogv 15 s, 1,920 × 1,080; 2.39 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s008.ogv 13 s, 1,920 × 1,080; 1.12 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s009.ogv 1 min 20 s, 550 × 404; 4.54 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s010.ogv 2 min 0 s, 620 × 404; 11.33 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s011.ogv 1 min 56 s, 620 × 404; 5.95 MB
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