Category:Signaling pathways
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Media in category "Signaling pathways"
The following 200 files are in this category, out of 240 total.
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-Catenin-Is-Critical-for-Cerebellar-Foliation-and-Lamination-pone.0064451.s001.ogv 14 s, 200 × 150; 919 KB
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12935 2023 2940 Fig3 HTML.webp 685 × 484; 67 KB
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41392 2022 1042 Fig2 HTML.webp 685 × 523; 51 KB
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A-Single-Amino-Acid-Mutation-in-SNAP-25-Induces-Anxiety-Related-Behavior-in-Mouse-pone.0025158.s004.ogv 1 min 37 s, 320 × 240; 2.15 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s007.ogv 15 s, 1,920 × 1,080; 2.39 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s008.ogv 13 s, 1,920 × 1,080; 1.12 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s009.ogv 1 min 20 s, 550 × 404; 4.54 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s010.ogv 2 min 0 s, 620 × 404; 11.33 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s011.ogv 1 min 56 s, 620 × 404; 5.95 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s013.ogv 1 min 10 s, 630 × 410; 3.16 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s014.ogv 25 s, 1,200 × 1,200; 1.35 MB
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Acute-Manipulation-of-Diacylglycerol-Reveals-Roles-in-Nuclear-Envelope-Assembly-&-Endoplasmic-pone.0051150.s015.ogv 20 s, 1,200 × 1,200; 1.68 MB
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Adrenoreceptor Signal Transduction.png 538 × 580; 175 KB
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An-Algorithm-to-Automate-Yeast-Segmentation-and-Tracking-pone.0057970.s001.ogv 10 s, 1,255 × 604; 6 MB
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An-Algorithm-to-Automate-Yeast-Segmentation-and-Tracking-pone.0057970.s002.ogv 10 s, 1,255 × 604; 2.15 MB
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An-Algorithm-to-Automate-Yeast-Segmentation-and-Tracking-pone.0057970.s003.ogv 10 s, 1,255 × 604; 2.65 MB
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An-Algorithm-to-Automate-Yeast-Segmentation-and-Tracking-pone.0057970.s004.ogv 19 s, 1,303 × 772; 6.5 MB
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Angiogenesis Inhibitors Image.tiff 1,050 × 938; 2.85 MB
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Asymmetrical signalling pathways in a chick embryo.png 2,002 × 1,127; 449 KB
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Breast-Cancer-Antiestrogen-Resistance-3-(BCAR3)-Promotes-Cell-Motility-by-Regulating-Actin-pone.0065678.s003.ogv 21 s, 1,200 × 1,024; 2.52 MB
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Breast-Cancer-Antiestrogen-Resistance-3-(BCAR3)-Promotes-Cell-Motility-by-Regulating-Actin-pone.0065678.s006.ogv 9.0 s, 1,110 × 840; 2.06 MB
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CalciumRegulationInCardiacCell WP536.png 1,630 × 1,086; 154 KB
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Canonical Wnt pathway.jpg 720 × 540; 72 KB
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Ciclinas y cdks.jpg 1,213 × 650; 95 KB
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Docking-of-LDCVs-Is-Modulated-by-Lower-Intracellular-Ca2+-than-Priming-pone.0036416.s009.ogv 24 s, 134 × 109; 598 KB
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Docking-of-LDCVs-Is-Modulated-by-Lower-Intracellular-Ca2+-than-Priming-pone.0036416.s010.ogv 24 s, 126 × 96; 2.88 MB
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Dtorsin-the-Drosophila-Ortholog-of-the-Early-Onset-Dystonia-TOR1A-(DYT1)-Plays-a-Novel-Role-in-pone.0026183.s006.ogv 1 min 1 s, 352 × 288; 761 KB
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Dtorsin-the-Drosophila-Ortholog-of-the-Early-Onset-Dystonia-TOR1A-(DYT1)-Plays-a-Novel-Role-in-pone.0026183.s007.ogv 1 min 0 s, 352 × 288; 597 KB
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Figure 1 Pathways of peripheral clock entrainment.png 701 × 556; 190 KB
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Figure 4 (7587300778).png 791 × 598; 502 KB
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Figure 5 (7164413977).png 920 × 541; 553 KB
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Figure of PKR signalling pathways.png 1,016 × 516; 100 KB
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Fonc-09-00711-g006.jpg 957 × 957; 536 KB
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Fphar-13-805388-g001.jpg 913 × 631; 100 KB
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Hedgehog Signaling Pathway (Homo sapiens).jpg 1,000 × 940; 83 KB
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HedgehogSignalingPathway.png 752 × 214; 117 KB
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Igf pathway.png 571 × 435; 57 KB
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Ijms-21-03263-g002-550.jpg 484 × 550; 96 KB
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Ijms-22-05850-g002-550 (1).webp 550 × 480; 28 KB
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INK4 pathway.jpg 751 × 581; 86 KB
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Intracellular RAGE signaling.jpg 809 × 737; 95 KB
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ISS pathway.tif 1,378 × 1,114; 5.86 MB
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Kinase cascade.jpg 720 × 351; 44 KB
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Life-12-00283-g001-Photoroom.png 869 × 880; 391 KB
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MAPK cascade.jpg 233 × 291; 8 KB
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MET Signalosome.jpg 522 × 455; 184 KB
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Mode de signalisation des récepteurs Fc.jpg 957 × 635; 342 KB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s007.ogv 38 s, 640 × 480; 1.03 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s008.ogv 24 s, 640 × 480; 1.59 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s010.ogv 9.5 s, 640 × 480; 1.62 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s011.ogv 8.4 s, 640 × 480; 1.3 MB
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Nodal signaling.jpg 1,168 × 1,198; 537 KB
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Notch-Signaling-Maintains-Neural-Rosette-Polarity-pone.0062959.s016.ogv 30 s, 640 × 480; 8.24 MB
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Notch-Signaling-Maintains-Neural-Rosette-Polarity-pone.0062959.s017.ogv 30 s, 1,392 × 1,040; 17.42 MB
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Outline of key signaling pathways.png 4,148 × 1,682; 1.3 MB
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Ovarian fragmentation and hippo signalling pathway.png 1,048 × 670; 193 KB
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Overview of the signalling pathway comparison between CB1 and CB2.png 1,016 × 620; 2.41 MB
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PI3Ks-Maintain-the-Structural-Integrity-of-T-Tubules-in-Cardiac-Myocytes-pone.0024404.s004.ogv 5.0 s, 656 × 752; 2.22 MB
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PI3Ks-Maintain-the-Structural-Integrity-of-T-Tubules-in-Cardiac-Myocytes-pone.0024404.s005.ogv 5.0 s, 656 × 752; 2.34 MB
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PIP2 Cycle.png 3,383 × 2,601; 79 KB
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Primary-Neuron-Culture-for-Nerve-Growth-and-Axon-Guidance-Studies-in-Zebrafish-(Danio-rerio)-pone.0057539.s003.ogv 28 s, 1,388 × 1,040; 12.43 MB
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ProBDNF-Collapses-Neurite-Outgrowth-of-Primary-Neurons-by-Activating-RhoA-pone.0035883.s001.ogv 7.1 s, 800 × 600; 1.41 MB
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ProBDNF-Collapses-Neurite-Outgrowth-of-Primary-Neurons-by-Activating-RhoA-pone.0035883.s002.ogv 12 s, 800 × 600; 2.5 MB
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PTEN-mediated control of cancer stem cells.png 3,219 × 3,459; 3.24 MB
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Rapamycin-Attenuates-the-Development-of-Posttraumatic-Epilepsy-in-a-Mouse-Model-of-Traumatic-Brain-pone.0064078.s001.ogv 1 min 12 s, 368 × 368; 1.57 MB
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RIG--MDA5 signaling pathway.jpg 1,058 × 1,058; 524 KB
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Role-of-PKD2-in-Rheotaxis-in-Dictyostelium-pone.0088682.s003.ogv 5.0 s, 248 × 148; 163 KB
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Role-of-PKD2-in-Rheotaxis-in-Dictyostelium-pone.0088682.s004.ogv 5.0 s, 248 × 148; 204 KB
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Role-of-PKD2-in-Rheotaxis-in-Dictyostelium-pone.0088682.s005.ogv 5.0 s, 248 × 148; 73 KB
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Role-of-PKD2-in-Rheotaxis-in-Dictyostelium-pone.0088682.s006.ogv 5.0 s, 248 × 148; 87 KB
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Schematic representation of the involvement of CEMIP in various signaling pathways.png 3,006 × 2,107; 1.52 MB
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Second messenger pathway.png 1,403 × 992; 125 KB
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Semnalizare engl.svg 1,052 × 744; 22 KB
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Signaling sar.jpg 4,164 × 3,670; 1.09 MB
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Signaling-pathways-active-in-the-Drosophila-segment-polarity-network.pdf 2,550 × 1,650; 444 KB
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Signalling pathways in placode formation..jpg 600 × 486; 66 KB
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Spatiotemporal-Characterization-of-mTOR-Kinase-Activity-Following-Kainic-Acid-Induced-Status-pone.0064455.s006.ogv 1 min 44 s, 1,440 × 1,080; 77.79 MB
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Spatiotemporal-Characterization-of-mTOR-Kinase-Activity-Following-Kainic-Acid-Induced-Status-pone.0064455.s007.ogv 2 min 19 s, 1,440 × 1,080; 57.98 MB
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Spontaneous-Pro-Arrhythmic-Calcium-Signals-Disrupt-Electrical-Pacing-in-Mouse-Pulmonary-Vein-Sleeve-pone.0088649.s009.ogv 1 min 0 s, 340 × 340; 10.79 MB
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Summary of Hif1 metabolic signaling pathway.webp 2,100 × 1,724; 158 KB
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Targeting Met.gif 522 × 666; 16 KB
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TBI NEUROINFLAMMATION.jpg 720 × 504; 149 KB
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