Multicellular Systems Biology
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The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Analysis of tissue movements during embryo development
Ref: JS-0005
Author: Luciano Marcon
Size: 800 x 640
Description: Analysis of tissue movements during embryo development. An aesthetic representation of a velocity vector field.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Tissue movements in early limb development
Ref: JS-0004
Author: Henrik Westerberg
Size: 800 x 822
Description: This image shows the tissue movements which occur during early development of the mouse limb bud, during embryogenesis, captured by time-lapse OPT (optical projection tomography).
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Simple gene regulatory network classification
Ref: JS-0002
Author: Andreea Munteanu
Size: 800 x 508
Description: A classification of the different designs of simple gene regulatory networks.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Dynamics of a gene regulatory network
Ref: JS-0001
Author: Andreea Munteanu
Size: 800 x 793
Description: This figure illustrates the dynamics of a simple gene regulatory network. It is called a phase space, and characterizes how the concentrations of two proteins (A and B) will change based on their current expression levels.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Scleraxis expression in the mouse embryo limb
Ref: JS-0063
Author: laura quintana rio
Size: 800 x 469
Description: Different orientations (Anterior, dorsal, Distal) of a mouse limb expressing Scleraxis, obtained by ISH and captured with OPT (Red/Green:Scx Expression on the bright field, Blue: autofluorescence on the GFP1). The below line are 3D iso-surface representations of the same gene expression.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Expression of Scleraxis gene in a mouse embryo
Ref: JS-0062
Author: laura quintana rio
Size: 800 x 800
Description: Expression of the gene Scleraxis in a mouse embryo of E13.5, obtained by InSitu Hybridization and captured with OPT (Red: Scx expression on the bright field, Blue: Autofluorescence on the GFP1). One half of the embryo shows only the gene expression, for better understanding.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Mouse Embryo with Neurofilament and E-Cadherin Staining
Ref: JS-0060
Author: Jim Swoger, Juergen Mayer, Laura Quintana
Size: 691 x 800
Description: Structures containing Neurofilament (cyan) and E-cadherin (magenta) are visualized in the embryo, highlighting structures in the developing nervous system and internal organs. The image is a maximum-value projection through the 3D data set generated by the microscope. To achieve high resolution, 12 sub-regions of the sample were scanned and combined into a montage.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Mouse embryo with double antibody staining
Ref: JS-0056
Author: JAMES SHARPE
Size: 800 x 685
Description: Mouse (Mus musculus) embryo with double antibody staining for Neurofilament (blue) and E-cadherin (green) proteins.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.
Title: Mouse embryo 3D image
Ref: JS-0055
Author: Laura Quintana
Size: 691 x 800
Description: A 3D OPT image of a mouse embryo.
Explore CRG Images
The aim of the CRG photo gallery is to provide an overview of our scientists’ research activities through the images generated in the course of their research projects.
All our images are available on demand in digital form with higher quality for for-profit and any other uses. For any of these requests please contact us.