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. Your experimental work will include basic techniques in virology (BSL2 and BSL3 levels), primary cell and continuous line cell culture, state-of-the art molecular biology, reverse genetics, biochemical
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virology (BSL2 and BSL3 levels), primary cell and continuous line cell culture, state-of-the art molecular biology, reverse genetics, biochemical assays, and next-generation sequencing. Requirements Specific
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laboratory techniques including cell culture, (fluorescent) microscopy, and different molecular biological techniques. Focus of this project will be on 2D cellular model systems and within the consortium, you
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and integrated with state-of-the art single cell (lymphocyte) transcriptome and phenotype datasets to create a computational signature for `smoldering' MS. Requirements Specific Requirements A PhD
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implementation to the prototype and follow-up evaluations towards validation and further optimizations. Energy efficiency. Size minimization. Develop a platform for testing different prototypes which facilitate
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or passive balancing mechanism and its implementation to the prototype and follow-up evaluations towards validation and further optimizations. Energy efficiency. Size minimization. Develop a platform for
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into the microcircuit mechanisms underlying epilepsy and DBS. You will use recently developed genetically encoded voltage indicators to record single-cell membrane voltage signals during DBS to understand how neural
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into the microcircuit mechanisms underlying epilepsy and DBS. You will use recently developed genetically encoded voltage indicators to record single-cell membrane voltage signals during DBS to understand how neural