Category:Cell physiology
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Subcategories
This category has the following 8 subcategories, out of 8 total.
Media in category "Cell physiology"
The following 200 files are in this category, out of 371 total.
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Cellular Fluid Content-ar.jpg 399 × 385; 29 KB
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Cellular Fluid Content.jpg 399 × 385; 19 KB
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Cellular-Architecture-Regulates-Collective-Calcium-Signaling-and-Cell-Contractility-pcbi.1004955.s013.ogv 5.0 s, 1,280 × 1,024; 816 KB
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Cellular-Growth-Arrest-and-Persistence-from-Enzyme-Saturation-pcbi.1004825.s012.ogv 35 s, 800 × 600; 5.5 MB
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Cellular-Growth-Arrest-and-Persistence-from-Enzyme-Saturation-pcbi.1004825.s014.ogv 34 s, 800 × 600; 2.66 MB
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Circadian-Rhythms-of-PER2LUC-in-Individual-Primary-Mouse-Hepatocytes-and-Cultures-pone.0087573.s005.ogv 19 s, 1,024 × 1,024; 17.84 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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Currents responsible for the cardiac action potential.png 960 × 720; 62 KB
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Development-of-Cysteine-Free-Fluorescent-Proteins-for-the-Oxidative-Environment-pone.0037551.s004.ogv 8.9 s, 512 × 512; 3.85 MB
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Differential-Effects-of-Tissue-Culture-Coating-Substrates-on-Prostate-Cancer-Cell-Adherence-pone.0112122.s006.ogv 39 s, 1,388 × 1,040; 6.65 MB
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Differential-Effects-of-Tissue-Culture-Coating-Substrates-on-Prostate-Cancer-Cell-Adherence-pone.0112122.s007.ogv 39 s, 1,388 × 1,040; 11.03 MB
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Differential-Effects-of-Tissue-Culture-Coating-Substrates-on-Prostate-Cancer-Cell-Adherence-pone.0112122.s008.ogv 39 s, 1,388 × 1,040; 6.86 MB
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Differential-Effects-of-Tissue-Culture-Coating-Substrates-on-Prostate-Cancer-Cell-Adherence-pone.0112122.s009.ogv 39 s, 1,388 × 1,040; 6.86 MB
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Differential-Effects-of-Tissue-Culture-Coating-Substrates-on-Prostate-Cancer-Cell-Adherence-pone.0112122.s011.ogv 39 s, 1,388 × 1,040; 5.96 MB
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Effects-of-Nanostructures-and-Mouse-Embryonic-Stem-Cells-on-In-Vitro-Morphogenesis-of-Rat-pone.0060054.s002.ogv 2 min 24 s, 640 × 480; 12.16 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s002.ogv 1 min 9 s, 558 × 450; 18.57 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s003.ogv 15 s, 564 × 450; 11.97 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s004.ogv 21 s, 928 × 450; 19.67 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s005.ogv 9.4 s, 491 × 450; 4.12 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s006.ogv 12 s, 923 × 450; 1.7 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s007.ogv 14 s, 654 × 450; 3.26 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s008.ogv 9.0 s, 818 × 450; 4.37 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s009.ogv 5.0 s, 540 × 450; 616 KB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s010.ogv 17 s, 600 × 450; 5.54 MB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s011.ogv 5.0 s, 512 × 512; 151 KB
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Embryogenesis-of-the-First-Circulating-Endothelial-Cells-pone.0060841.s012.ogv 8.0 s, 710 × 450; 1.39 MB
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Esquema de funcionamiento hormonal.svg 744 × 709; 86 KB
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Esquema funcionamiento neuronal.svg 744 × 709; 66 KB
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Esquema relación celular.svg 744 × 354; 25 KB
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Filopodial-Tension-Model-of-Convergent-Extension-of-Tissues-pcbi.1004952.s005.ogv 10 s, 440 × 490; 1.91 MB
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Filopodial-Tension-Model-of-Convergent-Extension-of-Tissues-pcbi.1004952.s006.ogv 13 s, 320 × 650; 2.92 MB
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Filopodial-Tension-Model-of-Convergent-Extension-of-Tissues-pcbi.1004952.s007.ogv 9.5 s, 320 × 430; 1.96 MB
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Filopodial-Tension-Model-of-Convergent-Extension-of-Tissues-pcbi.1004952.s008.ogv 12 s, 320 × 500; 2.86 MB
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Filopodial-Tension-Model-of-Convergent-Extension-of-Tissues-pcbi.1004952.s009.ogv 14 s, 854 × 480; 3.5 MB
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Hypertonic Shock.jpg 4,032 × 3,024; 3.56 MB
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In-Situ-Optical-Mapping-of-Voltage-and-Calcium-in-the-Heart-pone.0042562.s002.ogv 16 s, 640 × 480; 819 KB
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In-Situ-Optical-Mapping-of-Voltage-and-Calcium-in-the-Heart-pone.0042562.s003.ogv 7.8 s, 640 × 480; 440 KB
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In-Situ-Optical-Mapping-of-Voltage-and-Calcium-in-the-Heart-pone.0042562.s004.ogv 3.2 s, 640 × 480; 329 KB
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In-Situ-Optical-Mapping-of-Voltage-and-Calcium-in-the-Heart-pone.0042562.s005.ogv 43 s, 320 × 240; 3.77 MB
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In-Situ-Optical-Mapping-of-Voltage-and-Calcium-in-the-Heart-pone.0042562.s006.ogv 7.6 s, 640 × 480; 508 KB
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Innate-Non-Specific-Cell-Substratum-Adhesion-pone.0042033.s001.ogv 14 s, 550 × 406; 1.44 MB
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Innate-Non-Specific-Cell-Substratum-Adhesion-pone.0042033.s002.ogv 12 s, 484 × 356; 1.26 MB
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Lamellipodia-and-Membrane-Blebs-Drive-Efficient-Electrotactic-Migration-of-Rat-Walker-pone.0149133.s004.ogv 6.0 s, 1,024 × 768; 3.47 MB
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Lamellipodia-and-Membrane-Blebs-Drive-Efficient-Electrotactic-Migration-of-Rat-Walker-pone.0149133.s005.ogv 6.0 s, 1,024 × 768; 1.71 MB
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Lamellipodia-and-Membrane-Blebs-Drive-Efficient-Electrotactic-Migration-of-Rat-Walker-pone.0149133.s006.ogv 19 s, 1,024 × 768; 6.54 MB
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Lamellipodia-and-Membrane-Blebs-Drive-Efficient-Electrotactic-Migration-of-Rat-Walker-pone.0149133.s007.ogv 13 s, 1,024 × 768; 4.34 MB
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Ling-AIH-Explained-fig-1.jpg 1,170 × 960; 310 KB
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Ling-AIH-Explained-fig-10.jpg 741 × 960; 313 KB
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Ling-AIH-Explained-fig-11.jpg 1,257 × 960; 351 KB
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Ling-AIH-Explained-fig-12.jpg 1,004 × 960; 153 KB
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Ling-AIH-Explained-fig-13.jpg 673 × 960; 271 KB
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Ling-AIH-Explained-fig-14.jpg 1,280 × 625; 155 KB
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Ling-AIH-Explained-fig-15.jpg 1,280 × 905; 635 KB
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Ling-AIH-Explained-fig-16.jpg 833 × 960; 228 KB
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Ling-AIH-Explained-fig-17.jpg 1,280 × 934; 171 KB
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Ling-AIH-Explained-fig-2.jpg 1,280 × 680; 154 KB
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Ling-AIH-Explained-fig-3.jpg 772 × 960; 447 KB
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Ling-AIH-Explained-fig-4.jpg 482 × 960; 189 KB
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Ling-AIH-Explained-fig-5.jpg 1,280 × 781; 470 KB
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Ling-AIH-Explained-fig-6.jpg 835 × 960; 256 KB
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Ling-AIH-Explained-fig-7.jpg 1,172 × 960; 166 KB
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Ling-AIH-Explained-fig-8.jpg 1,280 × 937; 404 KB
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Ling-AIH-Explained-fig-9.jpg 1,280 × 695; 374 KB
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Ling-AIH-Explained-table-1.jpg 1,056 × 960; 290 KB
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Ling-AIH-Explained-table-2.jpg 1,280 × 373; 131 KB
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LKB1AMPK-and-PKA-Control-ABCB11-Trafficking-and-Polarization-in-Hepatocytes-pone.0091921.s007.ogv 6.4 s, 513 × 512; 1.85 MB
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LKB1AMPK-and-PKA-Control-ABCB11-Trafficking-and-Polarization-in-Hepatocytes-pone.0091921.s008.ogv 6.4 s, 480 × 480; 461 KB
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LKB1AMPK-and-PKA-Control-ABCB11-Trafficking-and-Polarization-in-Hepatocytes-pone.0091921.s009.ogv 15 s, 480 × 480; 2.95 MB
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LKB1AMPK-and-PKA-Control-ABCB11-Trafficking-and-Polarization-in-Hepatocytes-pone.0091921.s010.ogv 9.3 s, 480 × 480; 3.87 MB
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LKB1AMPK-and-PKA-Control-ABCB11-Trafficking-and-Polarization-in-Hepatocytes-pone.0091921.s011.ogv 9.8 s, 512 × 512; 2.77 MB
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Loss-of-the-V-ATPase-B1-Subunit-Isoform-Expressed-in-Non-Neuronal-Cells-of-the-Mouse-Olfactory-pone.0045395.s001.ogv 3 min 0 s, 960 × 540; 40.72 MB
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Loss-of-the-V-ATPase-B1-Subunit-Isoform-Expressed-in-Non-Neuronal-Cells-of-the-Mouse-Olfactory-pone.0045395.s002.ogv 3 min 0 s, 960 × 540; 40.24 MB
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Met-Receptor-Acts-Uniquely-for-Survival-and-Morphogenesis-of-EGFR-Dependent-Normal-Mammary-pone.0044982.s007.ogv 9.3 s, 1,392 × 1,040; 1.43 MB
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Met-Receptor-Acts-Uniquely-for-Survival-and-Morphogenesis-of-EGFR-Dependent-Normal-Mammary-pone.0044982.s008.ogv 7.1 s, 1,392 × 1,040; 5.89 MB
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Modeling-Contact-Inhibition-of-Locomotion-of-Colliding-Cells-Migrating-on-Micropatterned-Substrates-pcbi.1005239.s002.ogv 1 min 40 s, 852 × 454; 5.24 MB
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Mouse-Pancreas-Tissue-Slice-Culture-Facilitates-Long-Term-Studies-of-Exocrine-and-Endocrine-Cell-pone.0078706.s002.ogv 1 min 0 s, 429 × 422; 9.25 MB
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Multi-Patterned-Dynamics-of-Mitochondrial-Fission-and-Fusion-in-a-Living-Cell-pone.0019879.s007.ogv 19 s, 320 × 240; 1.07 MB
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Multi-Scale-Molecular-Photoacoustic-Tomography-of-Gene-Expression-pone.0043999.s001.ogv 5.8 s, 1,280 × 608; 3.53 MB
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