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tumor progression The project combines experimental model systems, patient material, metabolic and mitochondrial analyses, antiviral strategies, and AI-based drug discovery. Key Goals of the Project
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recordings, and circuit manipulations. The Nyberg Lab, based at the Department of Medicine, Huddinge and SciLifeLab, develops evolved AAV capsids and state-controlled gene-expression technologies for in vivo
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, or CRISPR-based systems. You have experience of insect models or RNAi-based screening. You have experience of functional delivery assays (e.g., in bacterial or insect systems). You have been involved in
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? The Stagkourakis Lab is recruiting for a highly independent postdoctoral researcher that can integrate within our existing team pursuing systems neuroscience projects. The lab is based at SciLifeLab (Sweden’s
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statistics, unsupervised machine learning, optimisation, model predictive control. Experience in financial mathematics. Having high integrity, be process-oriented and able to work independently. Being able
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develop both theory and concrete tools to design systems that learn, reason, and act in the real world based on a seamless combination of data, mathematical models, and algorithms. Our research integrates
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-pathogen interaction models, antimicrobial peptides, or CRISPR-based systems. You have experience of insect models or RNAi-based screening. You have experience of functional delivery assays (e.g., in
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to minimize the threshold value for herd immunity. The project is methodologically flexible and can be based on manipulative experiments in the field and/or mathematical modelling, depending on the postdoc’s
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, coordinating cell-based assays and labeling strategies, and contributing to automation and AI-driven imaging and modeling workflows. The role involves close collaboration with computational and engineering
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a new approach to high-frequency electromagnetic (georadar or controlled-source electromagnetic CSEM) data modelling based on full wave 3D inversion to expand our competence in the characterisation