Category:Cell differentiation
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This category has the following 4 subcategories, out of 4 total.
Media in category "Cell differentiation"
The following 200 files are in this category, out of 433 total.
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A-Branching-Process-to-Characterize-the-Dynamics-of-Stem-Cell-Differentiation-srep13265-s2.ogv 1 min 40 s, 364 × 720; 1.95 MB
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A-Branching-Process-to-Characterize-the-Dynamics-of-Stem-Cell-Differentiation-srep13265-s3.ogv 1 min 32 s, 364 × 720; 1.88 MB
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A-Novel-Source-of-Cultured-Podocytes-pone.0081812.s007.ogv 7.2 s, 213 × 200; 526 KB
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Activated-astrocytes-enhance-the-dopaminergic-differentiation-of-stem-cells-and-promote-brain-ncomms6627-s2.ogv 1 min 0 s, 1,024 × 576; 6.84 MB
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Analysing-human-neural-stem-cell-ontogeny-by-consecutive-isolation-of-Notch-active-neural-ncomms7500-s6.ogv 2.1 s, 1,024 × 1,024; 9.52 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s2.ogv 8.0 s, 500 × 588; 1.78 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s3.ogv 7.3 s, 500 × 593; 1.58 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s4.ogv 9.1 s, 500 × 705; 1.64 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s5.ogv 7.1 s, 500 × 739; 1.21 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s6.ogv 10 s, 500 × 872; 2.75 MB
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Aneuploidy-causes-premature-differentiation-of-neural-and-intestinal-stem-cells-ncomms9894-s7.ogv 8.7 s, 500 × 717; 2.77 MB
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Assembly-and-Development-of-the-Pseudomonas-aeruginosa-Biofilm-Matrix-ppat.1000354.s002.ogv 10 s, 512 × 512; 509 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s004.ogv 3.0 s, 1,646 × 848; 203 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s005.ogv 8.2 s, 942 × 586; 302 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s006.ogv 4.0 s, 942 × 586; 87 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s007.ogv 1.3 s, 942 × 586; 44 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s008.ogv 2.0 s, 942 × 586; 70 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s010.ogv 8.4 s, 1,610 × 848; 790 KB
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Asymmetric-Distribution-of-GFAP-in-Glioma-Multipotent-Cells-pone.0151274.s011.ogv 4.8 s, 1,610 × 848; 409 KB
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Autonomous-beating-rate-adaptation-in-human-stem-cell-derived-cardiomyocytes-ncomms10312-s2.ogv 8.7 s, 640 × 480; 600 KB
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Autonomous-beating-rate-adaptation-in-human-stem-cell-derived-cardiomyocytes-ncomms10312-s3.ogv 13 s, 640 × 480; 2.59 MB
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Autonomous-beating-rate-adaptation-in-human-stem-cell-derived-cardiomyocytes-ncomms10312-s4.ogv 14 s, 640 × 480; 1.3 MB
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Billion-years-old Bicellum Brasieri in mature form.jpg 2,200 × 3,157; 889 KB
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C-Myb-Inhibits-Myoblast-Fusion-pone.0076742.s006.ogv 1 min 29 s, 640 × 478; 17.28 MB
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Cell Differentiation.jpg 727 × 384; 23 KB
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Cell-Substratum-Adhesion-during-Early-Development-of-Dictyostelium-discoideum-pone.0106574.s004.ogv 3.8 s, 654 × 486; 126 KB
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Cell-Substratum-Adhesion-during-Early-Development-of-Dictyostelium-discoideum-pone.0106574.s006.ogv 4.8 s, 654 × 486; 156 KB
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Complete cell lineage of C elegans.png 1,110 × 576; 41 KB
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Coxsackievirus-B-Exits-the-Host-Cell-in-Shed-Microvesicles-Displaying-Autophagosomal-Markers-ppat.1004045.s003.ogv 5.9 s, 1,920 × 1,080; 2.32 MB
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Coxsackievirus-B-Exits-the-Host-Cell-in-Shed-Microvesicles-Displaying-Autophagosomal-Markers-ppat.1004045.s004.ogv 5.1 s, 1,920 × 1,080; 2.03 MB
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Coxsackievirus-B-Exits-the-Host-Cell-in-Shed-Microvesicles-Displaying-Autophagosomal-Markers-ppat.1004045.s005.ogv 5.1 s, 1,920 × 1,080; 1.58 MB
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Coxsackievirus-B-Exits-the-Host-Cell-in-Shed-Microvesicles-Displaying-Autophagosomal-Markers-ppat.1004045.s006.ogv 5.1 s, 1,920 × 1,080; 2.31 MB
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Dedifferentiated liposarcoma - cropped - very high mag.jpg 2,001 × 1,334; 1.51 MB
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Dedifferentiated liposarcoma - high mag.jpg 4,272 × 2,848; 6.56 MB
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Dedifferentiated liposarcoma - intermed mag.jpg 4,272 × 2,848; 4.03 MB
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Dedifferentiated liposarcoma - very high mag.jpg 4,272 × 2,848; 5.71 MB
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DeltaNp63-Has-a-Role-in-Maintaining-Epithelial-Integrity-in-Airway-Epithelium-pone.0088683.s007.ogv 9.8 s, 1,446 × 1,080; 2.01 MB
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DeltaNp63-Has-a-Role-in-Maintaining-Epithelial-Integrity-in-Airway-Epithelium-pone.0088683.s008.ogv 35 s, 1,446 × 1,080; 71.45 MB
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DeltaNp63-Has-a-Role-in-Maintaining-Epithelial-Integrity-in-Airway-Epithelium-pone.0088683.s009.ogv 35 s, 1,446 × 1,080; 43.42 MB
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Dynamic-and-social-behaviors-of-human-pluripotent-stem-cells-srep14209-s1.ogv 1 min 9 s, 640 × 480; 32.45 MB
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Dynamic-and-social-behaviors-of-human-pluripotent-stem-cells-srep14209-s2.ogv 21 s, 640 × 480; 3.54 MB
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Dynamic-and-social-behaviors-of-human-pluripotent-stem-cells-srep14209-s3.ogv 1 min 38 s, 640 × 480; 2.66 MB
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Dynamic-and-social-behaviors-of-human-pluripotent-stem-cells-srep14209-s4.ogv 1 min 38 s, 640 × 480; 4.18 MB
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Dynamic-and-social-behaviors-of-human-pluripotent-stem-cells-srep14209-s5.ogv 1 min 9 s, 1,280 × 960; 13.19 MB
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Early-pathogenesis-of-Duchenne-muscular-dystrophy-modelled-in-patient-derived-human-induced-srep12831-s1.ogv 10 s, 1,440 × 1,080; 3.21 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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Endothelin-1-supports-clonal-derivation-and-expansion-of-cardiovascular-progenitors-derived-from-ncomms10774-s2.ogv 16 s, 1,392 × 1,040; 24.67 MB
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Essential-role-for-a-novel-population-of-binucleated-mammary-epithelial-cells-in-lactation-ncomms11400-s2.ogv 33 s, 1,920 × 1,076; 54.6 MB
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Exploring-Hypotheses-of-the-Actions-of-TGF-1-in-Epidermal-Wound-Healing-Using-a-3D-Computational-pone.0008515.s001.ogv 1 min 5 s, 768 × 576; 6.32 MB
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Fam40b-is-required-for-lineage-commitment-of-murine-embryonic-stem-cells-cddis2014273x4.ogv 21 s, 1,024 × 768; 677 KB
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Fam40b-is-required-for-lineage-commitment-of-murine-embryonic-stem-cells-cddis2014273x5.ogv 20 s, 1,024 × 768; 344 KB
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Fstl1-Antagonizes-BMP-Signaling-and-Regulates-Ureter-Development-pone.0032554.s012.ogv 6.5 s, 640 × 480; 400 KB
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Fstl1-Antagonizes-BMP-Signaling-and-Regulates-Ureter-Development-pone.0032554.s013.ogv 8.9 s, 640 × 480; 572 KB
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Genetically-engineering-self-organization-of-human-pluripotent-stem-cells-into-a-liver-bud-like-ncomms10243-s3.ogv 28 s, 1,280 × 1,140; 8.45 MB
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GNE-Is-Involved-in-the-Early-Development-of-Skeletal-and-Cardiac-Muscle-pone.0021389.s001.ogv 24 s, 375 × 288; 1.07 MB
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GNE-Is-Involved-in-the-Early-Development-of-Skeletal-and-Cardiac-Muscle-pone.0021389.s002.ogv 50 s, 375 × 288; 2.71 MB
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Gremlin-2-is-a-BMP-antagonist-that-is-regulated-by-the-circadian-clock-srep05183-s2.ogv 6.4 s, 512 × 512; 2.93 MB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s1.ogv 6.7 s, 364 × 220; 933 KB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s2.ogv 2.3 s, 672 × 308; 271 KB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s3.ogv 27 s, 668 × 288; 13.99 MB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s5.ogv 27 s, 636 × 276; 5.18 MB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s6.ogv 27 s, 636 × 276; 5.16 MB
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Human-iPSC-based-Cardiac-Microphysiological-System-For-Drug-Screening-Applications-srep08883-s7.ogv 27 s, 360 × 260; 2.24 MB
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In-Vivo-Imaging-of-Hedgehog-Pathway-Activation-with-a-Nuclear-Fluorescent-Reporter-pone.0103661.s001.ogv 7.5 s, 426 × 426; 3.27 MB
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In-Vivo-Imaging-of-Hedgehog-Pathway-Activation-with-a-Nuclear-Fluorescent-Reporter-pone.0103661.s002.ogv 8.0 s, 600 × 600; 1.03 MB
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