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of the team Extensive and excellent training for cryo-EM Dedicated new cell culture facility for adherent or suspension culture of mammalian cells State of the art systems for purification and analysis
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morphology to directly link gene-regulatory cell states to functional neuronal phenotypes. This ambitious project integrates wet-lab experimentation with advanced computational analysis, and is ideal for a
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, that combines diffusion and transformer models, there are clear indications that the analysis of this data can be automated. This will open new avenues in data interpretation and building predictive models
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to state-of-the-art facilities and training in advanced techniques. Opportunities for career development, networking, and mentorship. A highly stimulating and supporting international research
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analysis Background in biomedicine and digital pathology What we offer Embedding within a computational team, with extensive experience in computational biology and machine learning. Embedding within
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(https://www.birmingham.ac.uk/). Opportunities for career development and networking. Opportunities for international mobility by spending time in the labs in Antwerp and Birmingham. Start date As soon as
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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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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 www.psb.ugent.be for
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this knowledge into value for society. Please visit us at www.psb.ugent.be for more information. The Jenny Russinova lab at PSB focuses on research on brassinosteroid hormones (https://www.russinovalab.be
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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