Category:Cell movement
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Pages in category "Category:Cell movement"
- Category:Bacterial motility
- Category:Chemotaxis
- Category:Ciliary movement
- Category:Epiboly
- Category:Epithelial-mesenchymal transitions
- Category:Filopodia
- Category:Flagella
- Category:Mesenchymal–epithelial transitions
- Category:Cell migration
- Category:Motor proteins
- Category:Pathogen motility
- Category:Pseudopodia
- Category:Recombinant GPI-Anchored TIMP-1 Stimulates Growth and Migration of Peritoneal Mesothelial Cells
- Category:Videos of cell movement
- File:3D-Morphology-Ultrastructure-and-Development-of-Ceratomyxa-puntazzi-Stages-First-Insights-into-the-pone.0032679.s001.ogv
- File:3D-Morphology-Ultrastructure-and-Development-of-Ceratomyxa-puntazzi-Stages-First-Insights-into-the-pone.0032679.s003.ogv
- File:3D-Morphology-Ultrastructure-and-Development-of-Ceratomyxa-puntazzi-Stages-First-Insights-into-the-pone.0032679.s004.ogv
- File:A-Cellular-Automata-Based-Mathematical-Model-for-Thymocyte-Development-pone.0008233.s001.ogv
- File:A-Cellular-Automata-Based-Mathematical-Model-for-Thymocyte-Development-pone.0008233.s002.ogv
- File:A-Cellular-Automata-Based-Mathematical-Model-for-Thymocyte-Development-pone.0008233.s003.ogv
- File:A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s009.ogv
- File:A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s010.ogv
- File:A-Computational-Clonal-Analysis-of-the-Developing-Mouse-Limb-Bud-pcbi.1001071.s011.ogv
- File:A-conserved-juxtacrine-signal-regulates-synaptic-partner-recognition-in-Caenorhabditis-elegans-1749-8104-6-28-S8.ogv
- File:A-conserved-juxtacrine-signal-regulates-synaptic-partner-recognition-in-Caenorhabditis-elegans-1749-8104-6-28-S9.ogv
- File:A-Gene-Expression-Signature-of-Invasive-Potential-in-Metastatic-Melanoma-Cells-pone.0008461.s008.ogv
- File:A-Gene-Expression-Signature-of-Invasive-Potential-in-Metastatic-Melanoma-Cells-pone.0008461.s009.ogv
- File:A-high-throughput-chemically-induced-inflammation-assay-in-zebrafish-1741-7007-8-151-S2.ogv
- File:A-high-throughput-chemically-induced-inflammation-assay-in-zebrafish-1741-7007-8-151-S3.ogv
- File:A-Kinome-RNAi-Screen-Identified-AMPK-as-Promoting-Poxvirus-Entry-through-the-Control-of-Actin-ppat.1000954.s017.ogv
- File:A-Kinome-RNAi-Screen-Identified-AMPK-as-Promoting-Poxvirus-Entry-through-the-Control-of-Actin-ppat.1000954.s018.ogv
- File:A-method-for-human-teratogen-detection-by-geometrically-confined-cell-differentiation-and-migration-srep10038-s1.ogv
- File:A-method-for-human-teratogen-detection-by-geometrically-confined-cell-differentiation-and-migration-srep10038-s2.ogv
- File:A-method-for-human-teratogen-detection-by-geometrically-confined-cell-differentiation-and-migration-srep10038-s3.ogv
- File:A-method-for-human-teratogen-detection-by-geometrically-confined-cell-differentiation-and-migration-srep10038-s4.ogv
- File:A-Model-of-Ischemia-Induced-Neuroblast-Activation-in-the-Adult-Subventricular-Zone-pone.0005278.s009.ogv
- File:A-Model-of-Ischemia-Induced-Neuroblast-Activation-in-the-Adult-Subventricular-Zone-pone.0005278.s010.ogv
- File:A-Model-of-Ischemia-Induced-Neuroblast-Activation-in-the-Adult-Subventricular-Zone-pone.0005278.s011.ogv
- File:A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s016.ogv
- File:A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s017.ogv
- File:A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s018.ogv
- File:A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s019.ogv
- File:A-Multi-cell-Multi-scale-Model-of-Vertebrate-Segmentation-and-Somite-Formation-pcbi.1002155.s020.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s002.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s003.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s004.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s005.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s006.ogv
- File:A-New-Method-to-Address-Unmet-Needs-for-Extracting-Individual-Cell-Migration-Features-from-a-Large-pone.0022263.s007.ogv
- File:A-Non-Motor-Microtubule-Binding-Site-Is-Essential-for-the-High-Processivity-and-Mitotic-Function-of-pone.0027471.s002.ogv
- File:A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s2.ogv
- File:A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s3.ogv
- File:A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s4.ogv
- File:A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s5.ogv
- File:A-novel-microtubule-de-stabilizing-complementarity-determining-region-C36L1-peptide-displays-srep14310-s6.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s001.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s002.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s003.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s004.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s005.ogv
- File:A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s006.ogv
- File:A-Novel-Role-for-WntCa2+-Signaling-in-Actin-Cytoskeleton-Remodeling-and-Cell-Motility-in-Prostate-pone.0010456.s013.ogv
- File:A-Novel-Role-for-WntCa2+-Signaling-in-Actin-Cytoskeleton-Remodeling-and-Cell-Motility-in-Prostate-pone.0010456.s014.ogv
- File:A-Novel-Role-for-WntCa2+-Signaling-in-Actin-Cytoskeleton-Remodeling-and-Cell-Motility-in-Prostate-pone.0010456.s015.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s004.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s005.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s006.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s007.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s008.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s009.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s010.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s011.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s012.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s013.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s014.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s015.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s016.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s017.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s018.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s019.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s020.ogv
- File:A-Novel-Validation-Algorithm-Allows-for-Automated-Cell-Tracking-and-the-Extraction-of-Biologically-pone.0027315.s021.ogv
- File:A-Photoactivatable-Nanopatterned-Substrate-for-Analyzing-Collective-Cell-Migration-with-Precisely-pone.0091875.s001.ogv
- File:A-Photoactivatable-Nanopatterned-Substrate-for-Analyzing-Collective-Cell-Migration-with-Precisely-pone.0091875.s002.ogv
- File:A-Quorum-Sensing-Factor-in-Vegetative-Dictyostelium-Discoideum-Cells-Revealed-by-Quantitative-pone.0026901.s009.ogv
- File:A-Quorum-Sensing-Factor-in-Vegetative-Dictyostelium-Discoideum-Cells-Revealed-by-Quantitative-pone.0026901.s010.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s10.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s11.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s12.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s13.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s2.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s3.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s4.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s5.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s6.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s7.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s8.ogv
- File:A-RIAMlamellipodin–talin–integrin-complex-forms-the-tip-of-sticky-fingers-that-guide-cell-migration-ncomms9492-s9.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s10.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s11.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s2.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s3.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s4.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s5.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s6.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s7.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s8.ogv
- File:A-role-for-E-cadherin-in-ensuring-cohesive-migration-of-a-heterogeneous-population-of-non-ncomms8998-s9.ogv
- File:A-Src-Tks5-Pathway-Is-Required-for-Neural-Crest-Cell-Migration-during-Embryonic-Development-pone.0022499.s004.ogv
- File:A-Src-Tks5-Pathway-Is-Required-for-Neural-Crest-Cell-Migration-during-Embryonic-Development-pone.0022499.s005.ogv
- File:A-Src-Tks5-Pathway-Is-Required-for-Neural-Crest-Cell-Migration-during-Embryonic-Development-pone.0022499.s006.ogv
- File:A-Src-Tks5-Pathway-Is-Required-for-Neural-Crest-Cell-Migration-during-Embryonic-Development-pone.0022499.s007.ogv
- File:Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s007.ogv
- File:Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s008.ogv
- File:Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s009.ogv
- File:Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s010.ogv
- File:Activated-Membrane-Patches-Guide-Chemotactic-Cell-Motility-pcbi.1002044.s011.ogv
- File:Adhesion-molecule-periplakin-is-involved-in-cellular-movement-and-attachment-in-pharyngeal-squamous-1471-2121-12-41-S1.ogv
- File:Adhesion-molecule-periplakin-is-involved-in-cellular-movement-and-attachment-in-pharyngeal-squamous-1471-2121-12-41-S2.ogv
- File:Adhesion-molecule-periplakin-is-involved-in-cellular-movement-and-attachment-in-pharyngeal-squamous-1471-2121-12-41-S3.ogv
- File:Adhesion-molecule-periplakin-is-involved-in-cellular-movement-and-attachment-in-pharyngeal-squamous-1471-2121-12-41-S4.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s004.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s005.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s006.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s007.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s008.ogv
- File:Adult-Mouse-Subventricular-Zone-Stem-and-Progenitor-Cells-Are-Sessile-and-Epidermal-Growth-Factor-pone.0008122.s009.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s006.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s007.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s008.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s009.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s010.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s011.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s012.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s013.ogv
- File:Adult-Subependymal-Neural-Precursors-but-Not-Differentiated-Cells-Undergo-Rapid-Cathodal-Migration-pone.0023808.s014.ogv
- File:Advances-in-establishment-and-analysis-of-three-dimensional-tumor-spheroid-based-functional-assays-1741-7007-10-29-S4.ogv
- File:Advances-in-establishment-and-analysis-of-three-dimensional-tumor-spheroid-based-functional-assays-1741-7007-10-29-S5.ogv
- File:Advances-in-establishment-and-analysis-of-three-dimensional-tumor-spheroid-based-functional-assays-1741-7007-10-29-S6.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s001.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s002.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s003.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s004.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s005.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s006.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s007.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s008.ogv
- File:Advancing-Edge-Speeds-of-Epithelial-Monolayers-Depend-on-Their-Initial-Confining-Geometry-pone.0153471.s009.ogv
- File:Amoeba motility DIC.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv001.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv002.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv003.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv004.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv005.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv006.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv007.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv008.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv009.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv010.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv011.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv012.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv013.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv014.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv015.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv016.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv017.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv018.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv019.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv020.ogv
- File:An-Actin-Based-Wave-Generator-Organizes-Cell-Motility-pbio.0050221.sv021.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s010.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s011.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s012.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s013.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s014.ogv
- File:An-Adhesion-Dependent-Switch-between-Mechanisms-That-Determine-Motile-Cell-Shape-pbio.1001059.s015.ogv
- File:An-aPKC-Exocyst-Complex-Controls-Paxillin-Phosphorylation-and-Migration-through-Localised-JNK1-pbio.1000235.s011.ogv
- File:An-aPKC-Exocyst-Complex-Controls-Paxillin-Phosphorylation-and-Migration-through-Localised-JNK1-pbio.1000235.s012.ogv
- File:An-effective-assay-for-high-cellular-resolution-time-lapse-imaging-of-sensory-placode-formation-and-1471-2202-12-37-S1.ogv
- File:An-Emerging-Allee-Effect-Is-Critical-for-Tumor-Initiation-and-Persistence-pcbi.1004366.s003.ogv
- File:An-Emerging-Allee-Effect-Is-Critical-for-Tumor-Initiation-and-Persistence-pcbi.1004366.s004.ogv
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