<HashMap><database>bioimages</database><scores/><additional><omics_type>Unknown</omics_type><submitter>Ryan J. Petrie</submitter><journal>The Journal of Cell Biology</journal><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-JCBD-201201124</full_dataset_link><attach_to>JCB</attach_to><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing YFP-paxillin migrating inside 3D 1.7 mg/ml collagen.</legend><legend>Z-stack of a llobopodia-bearing human foreskin fibroblast (HFF) expressing GFP-actin migrating in collagen; GFP-actin in green and second harmonic imaging of collagen in grayscale.</legend><legend>Z-stack of a human foreskin fibroblast (HFF) expressing GFP using lamellipodia-based migration on 2D cell derived matrix (CDM; Alexa633, red).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Cdc42 biosensor (CFP-Cdc42 and YPet-PBD) migrating on top of 2D cell-derived matrix. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET image (donor excitation/acceptor emission; purple).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Rac1 biosensor (CFP-Rac1 and YPet-PBD) migrating on top of 2D cell-derived matrix. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET image (donor excitation/acceptor emission; purple).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Rac1 biosensor (CFP-Rac1 and YPet-PBD) migrating in 3D 1.7 mg/ml collagen. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET (donor excitation/acceptor emission; purple).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing GFP-AktPH (to detect PIP3, green) migrating in 3D cell-derived matrix (Alexa633, red).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Rac1 biosensor (CFP-Rac1 and YPet-PBD) migrating in 3D cell-derived matrix. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET (donor excitation/acceptor emission; purple).</legend><legend>Z-stack of a human foreskin fibroblast (HFF) expressing GFP (green) using lamellipodia-based migration inside 3D 1.7 mg/ml collagen (reflection microscopy, red).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Cdc42 biosensor (CFP-Cdc42 and YPet-PBD) migrating in 3D cell-derived matrix. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET image (donor excitation/acceptor emission; purple).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing YFP-paxillin (green) migrating inside 3D CDM (Alexa633; red).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing GFP-AktPH (to detect PIP3, green) migrating on top of 2D cell-derived matrix (Alexa633, red).</legend><legend>A 2x2 tiled z-stack of a mouse ear dermal explant labeled with Alexa633.</legend><legend>Z-stack of a human foreskin fibroblast (HFF) expressing GFP (green) using 3D lobopodia-based migration inside cell-derived matrix (CDM; Alexa633, red).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing the intramolecular FRET-based Cdc42 biosensor (CFP-Cdc42 and YPet-PBD) migrating in 3D 1.7 mg/ml collagen. These are the unprocessed images corresponding to CFP (donor excitation/donor emission; cyan), YPet (acceptor excitation/acceptor emission; yellow), and the sensitized emission FRET image (donor excitation/acceptor emission; purple).</legend><legend>A Z-stack of a human foreskin fibroblast (HFF) expressing GFP-AktPH (to detect PIP3, green) migrating in 3D 1.7 mg/ml collagen (reflection microscopy, red).</legend><repository>bioimages</repository><figure_sub>Figure 3 - E</figure_sub><figure_sub>Image 134067 (Figure 3 - A)</figure_sub><figure_sub>Figure 3 - A</figure_sub><figure_sub>Image 134062 (Figure 1 - B)</figure_sub><figure_sub>Image 134075 (Figure 3 - E)</figure_sub><figure_sub>Figure 3 - C</figure_sub><figure_sub>Image 134071 (Figure 3 - C)</figure_sub><figure_sub>Image 134064 (Figure 2 - D)</figure_sub><figure_sub>Image 134068 (Figure 3 - A)</figure_sub><figure_sub>Image 134072 (Figure 3 - C)</figure_sub><figure_sub>Image 134069 (Figure 3 - A)</figure_sub><figure_sub>Image 134076 (Figure 5 - E)</figure_sub><figure_sub>Image 134065 (Figure 2 - D)</figure_sub><figure_sub>Figure 1 - C</figure_sub><figure_sub>Figure 1 - B</figure_sub><figure_sub>Image 134073 (Figure 3 - E)</figure_sub><figure_sub>Figure 5 - E</figure_sub><figure_sub>Figure 5</figure_sub><figure_sub>Image 134077 (Figure 5 - E)</figure_sub><figure_sub>Image 134066 (Figure 2 - D)</figure_sub><figure_sub>Figure 1</figure_sub><figure_sub>Figure 2 - D</figure_sub><figure_sub>Image 134063 (Figure 1 - C)</figure_sub><figure_sub>Figure 3</figure_sub><figure_sub>Image 134070 (Figure 3 - C)</figure_sub><figure_sub>Figure 2</figure_sub><figure_sub>Image 134074 (Figure 3 - E)</figure_sub><pubmed_authors>Ryan J. Petrie</pubmed_authors><pubmed_authors>Núria Gavara</pubmed_authors><pubmed_authors>Richard S. Chadwick</pubmed_authors><pubmed_authors>Kenneth M. Yamada</pubmed_authors></additional><is_claimable>false</is_claimable><name>Nonpolarized signaling reveals two distinct modes of 3D cell migration</name><description/><dates><release>2012-04-30T11:23:13Z</release><modification>2018-11-29T11:23:13Z</modification><creation>2018-11-29T11:23:13Z</creation></dates><accession>S-JCBD-201201124</accession><cross_references><doi>10.1083/jcb.201201124</doi></cross_references></HashMap>