130-Sano-CellMigrationDyn thumbnail

130-Sano-CellMigrationDyn

Author reviewed
Project name
130-Sano-CellMigrationDyn
Release date
2021-09-30
Update date
-
Pre-release URL
-
Project title
Timelapse FRET images data and BDML file for quantitative data about the cell migration in epidermis or urothelial of transgenic mice
License
Method summary
See details in Sano et al. (2018) The American J. of Pathol., 188(11): 2564-2573.
PubMed URL
Kind
Image data
Organism
Mus muculus ( NCBITaxon:10090 )
Total
52 files / 7.4 GB
Image datasets
zipped 26 files / 2.9 GB, raw image 26 files / 4.5 GB, total 52 files / 7.4 GB
Quantitative datasets
zipped 0 files / 0 bytes, raw bdml 0 files / 0 bytes, total 0 files / 0 bytes

Image datasets
26
Quantitative datasets
0

Strain
-
Datatype
Cell migration dynamics
Basedon
Experiment
XYZ-scale
XY: 0.414 micrometer/pixel, Z: 0.5 micrometer/slice
XY: 0.621 micrometer/pixel, Z: 1 micrometer/slice
XY: 0.552 micrometer/pixel,
XY: 828 micrometer/pixel
XY: 0.71 micrometer/pixel
XY: 0.776 micrometer/pixel
XY: 0.414 micrometer/pixel, Z: 1 micrometer/slice
T-scale
10 minites for each time interval
180 second for each time interval
360 second for each time interval
120 second for each time interval
dblink
None
External links
None

Experiment type
TimeLapse
Microscope type
FluorescenceMicroscope
Acquisition mode
LaserScanningConfocalMicroscopy
Contrast method
Fluorescence
Microscope model
Olympus FV1000MPE-BX61WI
Detector model
-
Objective model
Olympus XLPLN 25XWMP
Filter set
-

Biological Process
activation of MAPERK kinase ( GO:0000186 ) , cell migration ( GO:0016477 )
Cellular Component
nucleus ( GO:0005634 )
People
Contact
Michiyuki Matsuda
Kyoto University
Graduate School of Biostudies
Laboratory of Bioimaging and Cell Signaling
Yoshida-honmachi, Sakyo-ku, Kyoto 606-8501 Japan
Contributors
TakeshiSano, TakashiKobayashi, OsamuOgawa, MichiyukiMatsuda

OMERO.gallery
OMERO
downloads

Dataset List

Thumbnail
Dataset
Organism
Kind / Links
Time-lapse Forster resonance energy transfer (FRET) images of the mouse ear skin expressing EKAREV-nuclear localization signal (EKAREV-NLS)

Time-lapse Forster resonance energy transfer (FRET) images of the mouse bladder wall expressing EKAREV-nuclear localization signal (EKAREV-NLS)

Time-lapse Forster resonance energy transfer (FRET) images of the mouse ear skin expressing EKAREV-nuclear export signal (EKAREV-NES)

Time-lapse Forster resonance energy transfer (FRET) images of the mouse bladder wall expressing EKAREV-nuclear export signal (EKAREV-NES)

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the epithelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the epithelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the epithelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the epithelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the interface between urothelium and the lamina propria of an EKAREV-NLS mouse

Time-lapse Forster resonance energy transfer (FRET) images of the cell migration of an epithelial wound transgenic mouse expressing EKAREV-nuclear export signal (NES)

Time-lapse Forster resonance energy transfer (FRET) images of the cell migration of an urothelial wound transgenic mouse expressing EKAREV-nuclear export signal (NES)

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the urothelium wound in transgenic mouse expressing EKAREV-nuclear export signal (NES) administration with MEK inhibitor PD0325901

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing Fucci

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing Fucci

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing Fucci

Time-lapse Forster resonance energy transfer (FRET) images of the epithelial wound in transgenic mouse expressing Fucci

Time-lapse Forster resonance energy transfer (FRET) images of the urothelial wound in transgenic mouse expressing Fucci