Category:Innate immunity
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one of the two main immunity strategies found in vertebrates | |||||
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This category has only the following subcategory.
Media in category "Innate immunity"
The following 200 files are in this category, out of 323 total.
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Activation-of-the-NLRP3-Inflammasome-by-IAV-Virulence-Protein-PB1-F2-Contributes-to-Severe-ppat.1003392.s007.ogv 1.4 s, 1,146 × 1,022; 443 KB
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Burn-Injury-Reduces-Neutrophil-Directional-Migration-Speed-in-Microfluidic-Devices-pone.0011921.s001.ogv 1.3 s, 1,228 × 184; 71 KB
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Cell-Elasticity-Determines-Macrophage-Function-pone.0041024.s001.ogv 15 s, 640 × 480; 1.44 MB
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Cell-Elasticity-Determines-Macrophage-Function-pone.0041024.s002.ogv 11 s, 640 × 480; 1.99 MB
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Cell-Elasticity-Determines-Macrophage-Function-pone.0041024.s003.ogv 8.7 s, 640 × 480; 952 KB
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Cellular mechanisms of MAVS pathway.pdf 975 × 887; 122 KB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s008.ogv 16 s, 535 × 525; 363 KB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s009.ogv 19 s, 395 × 372; 4.53 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s010.ogv 15 s, 515 × 481; 2.9 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s011.ogv 17 s, 488 × 480; 3.58 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s012.ogv 17 s, 500 × 468; 5.96 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s013.ogv 12 s, 840 × 704; 7.38 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s014.ogv 12 s, 786 × 706; 6.81 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s015.ogv 12 s, 766 × 664; 7.51 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s016.ogv 9.6 s, 704 × 620; 11.31 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s017.ogv 15 s, 616 × 574; 2.07 MB
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Chitinase-Dependent-Control-of-Protozoan-Cyst-Burden-in-the-Brain-ppat.1002990.s018.ogv 15 s, 638 × 600; 5.51 MB
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Chlamydia-trachomatis-Intercepts-Golgi-Derived-Sphingolipids-through-a-Rab14-Mediated-Transport-pone.0014084.s008.ogv 1 min 31 s, 480 × 272; 10.6 MB
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Diesel-Exhaust-Particle-Exposure-In-Vitro-Alters-Monocyte-Differentiation-and-Function-pone.0051107.s001.ogv 20 s, 1,040 × 1,040; 61.2 MB
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Dietary-cholesterol-directly-induces-acute-inflammasome-dependent-intestinal-inflammation-ncomms6864-s2.ogv 15 s, 1,392 × 1,040; 19.49 MB
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Dietary-cholesterol-directly-induces-acute-inflammasome-dependent-intestinal-inflammation-ncomms6864-s3.ogv 15 s, 1,392 × 1,040; 14.11 MB
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Differential-Modulation-of-Retinal-Degeneration-by-Ccl2-and-Cx3cr1-Chemokine-Signalling-pone.0035551.s001.ogv 20 s, 1,450 × 759; 12.28 MB
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Differential-Modulation-of-Retinal-Degeneration-by-Ccl2-and-Cx3cr1-Chemokine-Signalling-pone.0035551.s002.ogv 20 s, 1,450 × 759; 13.42 MB
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Drosophila-Embryos-as-Model-Systems-for-Monitoring-Bacterial-Infection-in-Real-Time-ppat.1000518.s002.ogv 2.8 s, 1,077 × 540; 581 KB
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Drosophila-Embryos-as-Model-Systems-for-Monitoring-Bacterial-Infection-in-Real-Time-ppat.1000518.s007.ogv 2.8 s, 1,152 × 576; 1.29 MB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s002.ogv 43 s, 320 × 240; 1.26 MB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s003.ogv 9.0 s, 640 × 480; 914 KB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s004.ogv 11 s, 638 × 480; 1.45 MB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s005.ogv 8.0 s, 638 × 478; 935 KB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s006.ogv 6.0 s, 638 × 478; 930 KB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s007.ogv 13 s, 736 × 552; 1.86 MB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s008.ogv 12 s, 638 × 478; 1.42 MB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s010.ogv 6.6 s, 640 × 480; 892 KB
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Dynamic-Imaging-of-the-Effector-Immune-Response-to-Listeria-Infection-In-Vivo-ppat.1001326.s011.ogv 5.0 s, 636 × 476; 1.13 MB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s003.ogv 4.0 s, 112 × 148; 48 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s004.ogv 4.0 s, 224 × 572; 265 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s005.ogv 3.9 s, 188 × 164; 233 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s006.ogv 4.0 s, 352 × 208; 236 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s007.ogv 4.0 s, 572 × 320; 336 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s008.ogv 4.0 s, 200 × 500; 257 KB
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Dynamics-of-Macrophage-Trogocytosis-of-Rituximab-Coated-B-Cells-pone.0014498.s009.ogv 0.7 s, 1,344 × 1,024; 871 KB
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Effector Triggered Immunity.tif 3,000 × 2,250; 585 KB
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Familias de PRRs.png 1,852 × 883; 497 KB
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ILC function table 1.png 2,897 × 1,344; 596 KB
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ILCs and metabolism 4 PNG.png 2,492 × 1,252; 357 KB
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ILCs in allergic rhinitis 7 PNG.png 1,278 × 1,189; 367 KB
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ILCs in Asthma 6 PNG - FINAL.png 2,410 × 2,381; 1.34 MB
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ILCs in atopic dermatitis 9 PNG FINAL.png 1,361 × 1,339; 832 KB
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ILCs in IBD 8 PNG.png 1,732 × 1,655; 686 KB
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ILCS in skin repair 5 PNG.png 2,831 × 1,249; 1.75 MB
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ILCs in tissue repair 3 PNG.png 2,240 × 773; 275 KB
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Intravital-Immunofluorescence-for-Visualizing-the-Microcirculatory-and-Immune-Microenvironments-in-pone.0057135.s004.ogv 2 min 20 s, 1,280 × 720; 33.38 MB
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Intravital-Immunofluorescence-for-Visualizing-the-Microcirculatory-and-Immune-Microenvironments-in-pone.0057135.s009.ogv 9.6 s, 1,392 × 1,040; 2.43 MB
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Intravital-Immunofluorescence-for-Visualizing-the-Microcirculatory-and-Immune-Microenvironments-in-pone.0057135.s011.ogv 7.2 s, 1,318 × 1,024; 5.98 MB
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Intravital-Immunofluorescence-for-Visualizing-the-Microcirculatory-and-Immune-Microenvironments-in-pone.0057135.s016.ogv 1 min 2 s, 1,392 × 1,040; 22.93 MB
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Intravital-Immunofluorescence-for-Visualizing-the-Microcirculatory-and-Immune-Microenvironments-in-pone.0057135.s017.ogv 47 s, 1,392 × 1,040; 14.01 MB
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IRAK4 pathway.jpg 1,240 × 1,753; 519 KB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s006.ogv 5.1 s, 300 × 256; 602 KB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s007.ogv 3.0 s, 512 × 512; 2.14 MB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s008.ogv 5.1 s, 512 × 512; 1.56 MB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s011.ogv 5.1 s, 512 × 512; 1.8 MB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s012.ogv 5.1 s, 512 × 512; 2.41 MB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s013.ogv 10 s, 364 × 283; 1.11 MB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s015.ogv 8.8 s, 251 × 258; 803 KB
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Migratory-Dermal-Dendritic-Cells-Act-as-Rapid-Sensors-of-Protozoan-Parasites-ppat.1000222.s016.ogv 2.4 s, 249 × 263; 163 KB
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Modeling-Cell-Gradient-Sensing-and-Migration-in-Competing-Chemoattractant-Fields-pone.0018805.s004.ogv 8.1 s, 500 × 620; 1.44 MB
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