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for electrophysiologists who are interested in the studying molecular mechanisms by which mice learn and keep information in the brain. The lab’s research focus is to uncover experience-driven protein signaling mechanisms
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13 Mar 2025 Job Information Organisation/Company Chalmers University of Technology Research Field Physics » Applied physics Engineering » Electrical engineering Researcher Profile Recognised
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is performed by two facilities: the national genomics infrastructure (NGI), and clinical genomics. The clinical genomics facility utilizes the most recent computational technology, including the Dragen
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regeneration in the mammalian central nervous system (CNS). We use a multidisciplinary approach that involves stem cell biology, systems biology, computational biology, molecular engineering and mouse models
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multidisciplinary approach that involves stem cell biology, systems biology, computational biology, molecular engineering and mouse models of disease. We are developing technologies for spatially resolved molecular
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seniors and two PhD students. Your main responsibility will be the experimental part and together achieve an in-depth understanding of the governing mechanisms. Detailed description of the work duties, such
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high-throughput stimulus-response experiments and use the data to train deep learning models of cancer. This allows us to identify systems-level mechanisms that can be used to uncover new biomarkers
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the most recent computational technology, including the Dragen FPGA, as well as a GPU accelerated compute nodes. The postdoc project Hematological malignancies remain a significant cause of morbidity and
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use the data to train deep learning models of cancer. This allows us to identify systems-level mechanisms that can be used to uncover new biomarkers, drug targets, and paths to drug resistance. We
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use the data to train deep learning models of cancer. This allows us to identify systems-level mechanisms that can be used to uncover new biomarkers, drug targets, and paths to drug resistance. We