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algorithms to store, manage, and interpret data. To meet the challenges, database software needs to communicate efficiently both with the application layer and with the underlying hardware platforms, and
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temporal resolution, spatial resolution, and radiation dose trade against one another, and what semiconductor dynamics can be observed? The primary focus will be on algorithm development, followed by
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process? The primary focus will be on algorithm development, followed by their demonstration at synchrotron experiments. You will start working with real already existing experimental datasets and will have
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temporal resolution, spatial resolution, and radiation dose trade against one another, and what semiconductor dynamics can be observed? The primary focus will be on algorithm development, followed by
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at the neuro-immune interface Experimental approaches include in vivo tumour models, conditional mouse genetics, neuronal tracing, genetic and viral manipulation of neuronal populations, immune-cell depletion
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ultrasound technologies, ultrasound-responsive drug carrier formulations, and adaptive closed-loop control algorithms as an integrated precision drug delivery platform for the brain. Our approach employs a
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of action (e.g. via genetic, chemical-biology, or biophysical approaches), with support from other lab members' expertise in microbiology and drug discovery Collaborate with the lab's discovery and design
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and how neuro-immune communication contributes to inflammatory or tumour-associated disease states. Approaches include neuronal tracing, in vivo disease models, genetic and viral manipulation
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Swiss National Science Foundation (SNSF)-funded project on human motivation, stress physiology, immersive behavioral testing, and biological phenotyping. The Laboratory of Behavioral Genetics
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Swiss National Science Foundation (SNSF)-funded project on human motivation, stress physiology, immersive behavioral testing, and multimodal data analysis The Laboratory of Behavioral Genetics at EPFL