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researcher to study the complexity and heterogeneity of both mouse and human microglia in neurodevelopment and neurodegeneration. By using state of the art spectral flow cytometry you will develop advanced
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of teaching and research, the FSTM seeks to generate and disseminate knowledge and train new generations of responsible citizens in order to better understand, explain and advance society and environment we
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thorough and advanced characterization of the materials. As a postdoc you will also hold lab management responsibilities and be in charge of the operation and functioning of several analysis instruments. You
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. You will be integrated in an international team of about 20 researchers, working on porous materials (MOF, COF) with an emphasis advanced synthesis and thorough and advanced characterization
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models recapitulating aspects of neural-microglia interactions in neurodegenerative diseases at Ghent University. Lipid accumulation in microglia is a hallmark of neurodegenerative diseases such as
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flow cytometry you will develop advanced tools to analyse and study microglia phenotype, function and dysfunction. If you are up for a technological challenge to address key biological questions
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-scale screens to study fundamental principles in molecular and complex trait genetics using microbes as model systems. Our core technology MAGESTIC (https://doi.org/10.1038/nbt.4137 ), a CRISPR/Cas9-based
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on the functionalization of materials, employing advanced characterization techniques to study how various plasma operational parameters influence scaffold properties, cellular responses, and material performance in
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-scale screens to study fundamental principles in molecular and complex trait genetics using microbes as model systems. Our core technology MAGESTIC (https://doi.org/10.1038/nbt.4137 ), a CRISPR/Cas9-based
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the fundamental aspects of transcriptional control, this project also opens new avenues for the design of climate-resilient crops. Supported by single-cell profiling and predictive artificial intelligence models