Category:Cell culture techniques
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Subcategories
This category has the following 5 subcategories, out of 5 total.
C
- Coculture techniques (111 F)
G
P
- Primary cell cultures (39 F)
S
- Substrate specificity (37 F)
T
- Transfection (17 F)
Media in category "Cell culture techniques"
The following 200 files are in this category, out of 262 total.
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3d cell culture (1).svg 512 × 384; 129 KB
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96 well PCR plate-07.jpg 3,520 × 2,492; 3.28 MB
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96 well plastic cell culture plate-03.jpg 3,520 × 2,492; 2.83 MB
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97 well 500ul culture plate-01.jpg 3,520 × 2,492; 3.04 MB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s004.ogv 51 s, 320 × 240; 358 KB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s005.ogv 51 s, 320 × 240; 515 KB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s006.ogv 51 s, 320 × 240; 706 KB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s007.ogv 55 s, 320 × 240; 2.33 MB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s008.ogv 55 s, 320 × 240; 4.84 MB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s009.ogv 55 s, 320 × 240; 3.85 MB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s010.ogv 51 s, 320 × 240; 333 KB
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A-Computational-Approach-to-Understand-In-Vitro-Alveolar-Morphogenesis-pone.0004819.s011.ogv 51 s, 320 × 240; 285 KB
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A-Novel-Serum-Free-Monolayer-Culture-for-Orderly-Hematopoietic-Differentiation-of-Human-Pluripotent-pone.0022261.s002.ogv 1 min 35 s, 320 × 240; 19.08 MB
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Allosteric-Modulation-of-Beta1-Integrin-Function-Induces-Lung-Tissue-Repair-768720.f1.ogv 10 s, 558 × 416; 482 KB
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Allosteric-Modulation-of-Beta1-Integrin-Function-Induces-Lung-Tissue-Repair-768720.f2.ogv 4.5 s, 558 × 416; 342 KB
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Allosteric-Modulation-of-Beta1-Integrin-Function-Induces-Lung-Tissue-Repair-768720.f3.ogv 5.5 s, 590 × 416; 733 KB
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An-ES-Like-Pluripotent-State-in-FGF-Dependent-Murine-iPS-cells-pone.0016092.s006.ogv 9.9 s, 312 × 240; 1.06 MB
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Automated-Analysis-of-Cell-Matrix-Adhesions-in-2D-and-3D-Environments-srep08124-s1.ogv 2.7 s, 253 × 254; 90 KB
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Automated-Analysis-of-Cell-Matrix-Adhesions-in-2D-and-3D-Environments-srep08124-s2.ogv 2.7 s, 253 × 254; 206 KB
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Automated-Analysis-of-Cell-Matrix-Adhesions-in-2D-and-3D-Environments-srep08124-s3.ogv 2.7 s, 140 × 356; 19 KB
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BHI media.png 1,267 × 2,050; 2.54 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s005.ogv 1 min 2 s, 976 × 720; 4.96 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s006.ogv 3 min 39 s, 976 × 720; 13.5 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s007.ogv 1 min 37 s, 964 × 720; 6 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s008.ogv 2 min 12 s, 964 × 720; 10.87 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s009.ogv 2 min 19 s, 964 × 720; 11.7 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s010.ogv 3 min 19 s, 1,106 × 720; 21.04 MB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s011.ogv 6.0 s, 318 × 333; 58 KB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s012.ogv 6.2 s, 293 × 333; 51 KB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s013.ogv 8.6 s, 320 × 333; 199 KB
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BioSig3D-High-Content-Screening-of-Three-Dimensional-Cell-Culture-Models-pone.0148379.s014.ogv 8.0 s, 382 × 333; 354 KB
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Cell culturing.jpg 2,448 × 3,264; 2.66 MB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s4.ogv 4.9 s, 1,024 × 512; 5.57 MB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s5.ogv 4.9 s, 1,024 × 512; 4.18 MB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s6.ogv 3.8 s, 512 × 512; 995 KB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s7.ogv 2.8 s, 1,024 × 512; 2.18 MB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s8.ogv 3.8 s, 511 × 512; 2.41 MB
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Cellular-forces-and-matrix-assembly-coordinate-fibrous-tissue-repair-ncomms11036-s9.ogv 3.8 s, 511 × 512; 2.89 MB
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Comparison-of-slow-and-fast-neocortical-neuron-migration-using-a-new-in-vitro-model-1471-2202-9-50-S1.ogv 1 min 22 s, 320 × 240; 549 KB
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Constructive-remodeling-of-a-synthetic-endothelial-extracellular-matrix-srep18290-s2.ogv 26 s, 640 × 480; 1.08 MB
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Constructive-remodeling-of-a-synthetic-endothelial-extracellular-matrix-srep18290-s3.ogv 15 s, 640 × 480; 413 KB
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Constructive-remodeling-of-a-synthetic-endothelial-extracellular-matrix-srep18290-s4.ogv 26 s, 640 × 480; 1.13 MB
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Constructive-remodeling-of-a-synthetic-endothelial-extracellular-matrix-srep18290-s5.ogv 15 s, 640 × 480; 421 KB
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Cyclic-stretching-of-soft-substrates-induces-spreading-and-growth-ncomms7333-s2.ogv 24 s, 1,280 × 960; 9.14 MB
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Cyclic-stretching-of-soft-substrates-induces-spreading-and-growth-ncomms7333-s3.ogv 3.0 s, 1,048 × 1,028; 335 KB
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Cytoplasmic-Continuity-Revisited-Closure-of-Septa-of-the-Filamentous-Fungus-Schizophyllum-commune-pone.0005977.s001.ogv 1 min 3 s, 628 × 480; 1.37 MB
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Cytoplasmic-Continuity-Revisited-Closure-of-Septa-of-the-Filamentous-Fungus-Schizophyllum-commune-pone.0005977.s003.ogv 1 min 9 s, 610 × 464; 1.17 MB
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Determinants-of-Leukocyte-Margination-in-Rectangular-Microchannels-pone.0007104.s003.ogv 26 s, 320 × 240; 1.22 MB
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Digital-microfluidic-immunocytochemistry-in-single-cells-ncomms8513-s2.ogv 8.2 s, 640 × 480; 248 KB
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Digital-microfluidic-immunocytochemistry-in-single-cells-ncomms8513-s3.ogv 8.6 s, 640 × 480; 228 KB
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Digital-microfluidic-immunocytochemistry-in-single-cells-ncomms8513-s4.ogv 3.9 s, 854 × 480; 382 KB
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Digital-microfluidic-immunocytochemistry-in-single-cells-ncomms8513-s5.ogv 7.5 s, 512 × 512; 282 KB
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Direct-Generation-of-Neurosphere-Like-Cells-from-Human-Dermal-Fibroblasts-pone.0021801.s010.ogv 56 s, 640 × 480; 9.47 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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Electrogenetransfer.JPG 1,373 × 216; 45 KB
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From-2D-to-3D-novel-nanostructured-scaffolds-to-investigate-signalling-in-reconstructed-neuronal-srep09562-s3.ogv 5.6 s, 1,024 × 1,024; 4.57 MB
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Generation-of-Functional-Eyes-from-Pluripotent-Cells-pbio.1000174.s004.ogv 18 s, 320 × 240; 335 KB
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Generation-of-Functional-Eyes-from-Pluripotent-Cells-pbio.1000174.s005.ogv 11 s, 320 × 240; 208 KB
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Generation-of-Functional-Eyes-from-Pluripotent-Cells-pbio.1000174.s006.ogv 14 s, 320 × 240; 315 KB
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High-Throughput-Non-Contact-Vitrification-of-Cell-Laden-Droplets-Based-on-Cell-Printing-srep17928-s1.ogv 12 s, 1,920 × 1,080; 1.53 MB
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Improved-molecular-toolkit-for-cAMP-studies-in-live-cells-1756-0500-4-241-S1.ogv 13 s, 255 × 255; 2.16 MB
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In-Vitro-Engineering-of-Vascularized-Tissue-Surrogates-srep01316-s1.ogv 20 s, 854 × 480; 853 KB
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In-Vitro-Epithelial-Organoid-Generation-Induced-by-Substrate-Nanotopography-srep09293-s2.ogv 15 s, 1,080 × 1,080; 1.23 MB
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Large-scale-cell-production-of-stem-cells-for-clinical-application-using-the-automated-cell-1472-6750-13-102-S4.ogv 3 min 21 s, 400 × 300; 15.43 MB
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Large-scale-production-of-megakaryocytes-from-human-pluripotent-stem-cells-by-chemically-defined-ncomms11208-s5.ogv 35 s, 1,440 × 1,080; 1.29 MB
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Long-term-maintenance-of-human-induced-pluripotent-stem-cells-by-automated-cell-culture-system-srep16647-s2.ogv 3 min 31 s, 426 × 240; 4.04 MB
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Maturation-of-Induced-Pluripotent-Stem-Cell-Derived-Hepatocytes-by-3D-Culture-pone.0086372.s018.ogv 9.1 s, 480 × 480; 998 KB
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Maturation-of-Induced-Pluripotent-Stem-Cell-Derived-Hepatocytes-by-3D-Culture-pone.0086372.s019.ogv 4.8 s, 512 × 512; 557 KB
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Maturation-of-Induced-Pluripotent-Stem-Cell-Derived-Hepatocytes-by-3D-Culture-pone.0086372.s020.ogv 4.8 s, 1,024 × 1,024; 741 KB
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Maturation-of-Induced-Pluripotent-Stem-Cell-Derived-Hepatocytes-by-3D-Culture-pone.0086372.s021.ogv 4.8 s, 1,024 × 1,024; 583 KB
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MDCK-Cystogenesis-Driven-by-Cell-Stabilization-within-Computational-Analogues-pcbi.1002030.s019.ogv 1 min 20 s, 550 × 550; 1.46 MB
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MESC EBs.jpg 1,224 × 1,224; 692 KB
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Nanofibrillar cellulose hydrogel.jpg 363 × 242; 18 KB
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Neutral red uptake assay. Rats embrionic fibroblasts.jpg 2,048 × 1,536; 381 KB
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NFC hydrogel in 384 plate.jpg 561 × 374; 57 KB
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Rakukultuuri kasvatamine.jpg 2,848 × 2,136; 471 KB
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Scientist checks cell culture flask on microscope.jpg 1,000 × 1,250; 502 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv001.ogv 2 min 25 s, 240 × 240; 384 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv002.ogv 2 min 25 s, 200 × 200; 451 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv003.ogv 2 min 25 s, 240 × 240; 249 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv004.ogv 2 min 25 s, 240 × 240; 256 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv005.ogv 2 min 25 s, 200 × 200; 226 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv006.ogv 2 min 25 s, 240 × 240; 151 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv007.ogv 2 min 25 s, 240 × 240; 220 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv008.ogv 2 min 25 s, 240 × 240; 137 KB
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Self-Organization-in-High-Density-Bacterial-Colonies-Efficient-Crowd-Control-pbio.0050302.sv009.ogv 33 s, 500 × 500; 4.75 MB