Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- United Kingdom
- France
- Portugal
- Singapore
- Germany
- Poland
- Sweden
- Czech
- Netherlands
- Spain
- Belgium
- Denmark
- Norway
- Switzerland
- Canada
- Italy
- Austria
- Estonia
- Ireland
- Romania
- United Arab Emirates
- Australia
- Croatia
- Finland
- Japan
- Luxembourg
- Malta
- Saudi Arabia
- Slovenia
- Taiwan
- Worldwide
- 22 more »
- « less
-
Program
-
Field
-
Skip to Main Content Press Control+M to start dragging object ptnbsid=7OuJVFzNW3ui97G0TGebSMvxtuo%3d Back Accessibility Enable Screen Reader Mode Keyboard Shortcuts Accessibility Help Job
-
ovarian cancer. The laboratory has about 15 members that use cutting-edge methods, including spatial proteomics, spatial metabolomics, spatial transcriptomics, 3D organotypic cultures of human tissue, in
-
de tecido cardíaco on-chip para modelar o microambiente cardíaco 3D, cardiomiopatia progressiva e fibrose”, Projeto n.º 15481 (COMPETE2030-FEDER-00645000) co-financed by the European Regional
-
Skip to Main Content Press Control+M to start dragging object ptnbsid=dTo7djVLQG%2fr88mhmEMKD39gl%2fQ%3d Back Accessibility Enable Screen Reader Mode Keyboard Shortcuts Accessibility Help Job
-
-resolution, high-speed, and deep 3D quantitative imaging. In collaboration with the Department of Clinical Medicine (UiT), the system will be evaluated for dynamic imaging of cardiac activity in engineered
-
cells Analyze RNA sequencing-based transcriptomic data sets Perform immune-staining with flow cytometry analysis, advanced microscopy techniques (light-sheet microscopy, confocal fluorescence microscopy
-
antimicrobial strategies, lipid membrane platforms, membrane-active compounds, antibacterial and antiviral applications, plant-based bio-material applications, etc. For more details, please view https
-
. This project will use state-of-the-art live-cell super resolution microscopy and automated image analysis to both visualise the 3D architecture of keratin networks in epithelial monolayers. You will explore how
-
to the development of an innovative microphysiological system dedicated to modeling human beige adipose tissue organoids in a controlled metabolic environment. The candidate will design and implement advanced 3D
-
Skip to Main Content Press Control+M to start dragging object ptnbsid=SsHxRYb73HF0CNtSzKS0KTs%2fohM%3d Back Accessibility Enable Screen Reader Mode Keyboard Shortcuts Accessibility Help Job