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have experience in modeling cell-cell communication, the study of gene expression regulation, the analysis of multiplexed CRISPR screens. You have strong programming skills in languages such as
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genetics of disease models, human pluripotent stem cells derived neurons, high content imaging, electrophysiology, single cell RNA sequencing, bioinformatics, and spatial transcriptomics technologies. We
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temperature signalling in plants, such as the model plant Arabidopsis thaliana and the crop plants wheat and soybean. To unravel this, we focus on dynamic changes in protein phosphorylation status, since
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sequencing and transcriptomics, and iPSC-based disease modeling to better understand the genetic etiologies of intractable epilepsy. The team is part of the European STXBP1 consortium . About the project
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validate the identified key (epi)genetic molecular and explore their therapeutic potential in vitro and in vivo disease models. Profile The candidate should: have an MSc in Systems Biology, Molecular Biology
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question: « what makes our brain human ? » (Vanderhaeghen and Polleux, Nat. Rev. Neurosci. 2023). We combine cutting-edge approaches such as pluripotent stem cell models of human corticogenesis, human-mouse
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the ocean, with a focus on using model microbial systems in the lab. VIB is an entrepreneurial non-profit research institute across 5 universities with a strong track record of translating scientific
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Immunology or Neuroimmunology Experience in working with mouse models (FELASA B or C required) Strong organizational and communication skills, with an ability to work independently and collaboratively. Ability
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students and postdoctoral researchers to probe macrophage functions across tissues using a range of novel mouse models, transcriptomics and epigenetics techniques, flow cytometry and spatial analyses
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programming, data processing, model evaluation, and ethical considerations in AI. Develop interactive and hands-on exercises to enhance learning experiences. Conduct training for researchers related