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modeling of biomolecule structures, regulatory networks and/or interaction networks; computational modeling of cell morphology, tissue organization, and organ function using biomedical imaging and computer
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engineering, and have expertise in building camera systems and computer vision. This role also involves working closely with the other members of the team on projects related to plant phenotyping (assessing e.g
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facility (JEOL cryoARM300; cryo-FIB-SEM planned for 2026) Access to state-of-the-art computing infrastructure for image processing, STA, and quantitative analysis Competitive salary and
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at the cellular level, and (iii) applying quantitative image analysis to compare structural organization across fertile and infertile donors. The project is embedded in an active collaboration with a local
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support: assist researchers in performing histology (sectioning, staining, imaging), molecular biology, flow cytometry, and cell culture; maintaining accurate documentation (protocols, SOPs, results
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-driven hypotheses into experimental designs. Plan, execute, and oversee experiments across multiple modalities (e.g. proteomics, biochemistry, biophysics, metabolomics, imaging). Design efficient
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is to integrate genetics, cell biology, genomics, and bio-computing to unravel plant biological processes and to further translate this knowledge into value for society. Please visit us at