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learning, as well as process-based models integrating thermal biology mechanisms. Funded by the ”Federal Ministry of Research, Technology and Space” (BMFTR), CSIDlab as part of the “Vector-borne disease
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learning, as well as process-based models integrating thermal biology mechanisms. Funded by the ”Federal Ministry of Research, Technology and Space” (BMFTR), CSIDlab as part of the “Vector-borne disease
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longstanding expertise in transgenic approaches including genome editing, in cell (ES, iPS) and animal models, as well as AAV vector technologies, which are employed for generating disease models, identifying
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, NVsim, and others), RISC-V ISA, Programming models, multi- and many-processor systems on chip, approximate computing, and memory-centric computing, circuits & systems based on emerging memory technologies
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-quantitative histomorphometry and image analysis In vitro endothelial and co-cultur models High content imaging and spatial biology (cooperation AG Schapiro, Heidelberg) Single molecule localisation microcopy
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processes in colorectal cancer Carry out experimental validation using both in vitro models derived from mouse and human organoids and in vivo studies using advanced preclinical systems to confirm mechanisms
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Athanassiadis and Dr. Dimitris Missirlis. This project will involve the design, modelling and construction of custom acoustic transducers and holographic lenses to shape acoustic fields in vitro and in vivo , as
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studies using cell culture models (3D culture, expression of mechanosensitive channels) Hands-on training in ultrasound stimulation, custom transducer designs and cell culture setups, live-cell imaging and
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research center funded by the DFG, is based at the Faculty of Chemistry of Heidelberg University, bringing together researchers within a multidisciplinary research program on “N-heteropolycycles as
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infection with high spatial and temporal resolution Characterize transcriptome, proteome and interactome dynamics in advanced virus infection models Work with diverse RNA viruses (IAV, RSV, SARS-CoV-2, DENV