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Challenge: Predict long-term cardiac growth and remodeling in cardiovascular disease. Change: Develop multi-scale mechanobiological models for virtual human twins. Impact: Advance patient-specific
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work requires a high level of independence. Excellent command of written and spoken English. Strong ability and motivation to work in a team. We welcome applications from researchers holding a PhD degree
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of the in- house Talos Arctica electron microscope, which will be upgraded with a new camera through the ERC-funded investment. Overall, the postdoc will contribute to a mechanistic model explaining how
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international peer-reviewed journals; Excellent written and spoken command of English; working knowledge of one or more additional Mediterranean languages (Spanish, Italian, Greek, French, Portuguese, or Turkish
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. Together, we want to explore how small models can extract useful information on specific crime themes, such as drug trafficking, primarily from publicly available news sources. Relevant tasks include
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-regulatory elements and transcription factor genes that control key physiological pathways to specifically adjust targeted gene expression to reshape complex traits. The project will develop a breakthrough
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designing and conducting MR experiments, developing pulse sequences and experimental methods, modeling spin dynamics and relaxation, analyzing data, and interpreting the underlying physical mechanisms
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into mechanistic insight Lead a PhD student in development of a controlled flow system for in situ ATR-UV–Vis spectroscopy including polarization and use it to monitor the formation, orientation, and evolution
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collide, condense and evaporate. Guided by the results from the field campaigns, a new Microphysics Informed Large-Eddy-Simulation (MiLES) model will be developed. The tested and verified MiLES will be
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circuits contribute to pathological aggression. The postdoc will use functional ultrasound imaging, behavioural assays, physiological recordings, computational modelling, and pathway-selective chemogenetic