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) at Heidelberg University, the following position (75%) for up to 3 years is to be filled by 01.01.2026. PhD position in Vector-Borne Disease Modelling (f/m/d) The place of employment is Heidelberg, in the Climate
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) at Heidelberg University, the following position (75%) for up to 3 years is to be filled by 01.01.2026 PhD position (f/m/d) in Vector-Borne Disease Modelling The place of employment is Heidelberg, in the Climate
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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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(ECLECTX team). This person occupying this position is planned to work on modeling computing elements, established and emerging, at different levels of abstraction, design and development simulation tools
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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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stem/progenitor cell plasticity (HSPCs), and leukemic transformation. The project will use innovative 2D and 3D HSPC/MSC co-culture models, functional clonogenic and differentiation assays, bulk and
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groups are strongly encouraged to apply. Your Tasks: Development and application of algorithms for modelling, evaluation and visualization of ultrafast processes Investigation of ultrafast dynamics in