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. The project offers a unique opportunity to perform cutting-edge research that combines hardware development, signal processing, AI-driven image analysis, and clinical translation.
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of coronary artery disease and supporting clinical decision-making during catheterization procedures. The project brings together cardiovascular imaging, generative AI, and computational modeling to develop
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Waves are widely used for imaging in applications ranging from geophysics and medical ultrasound to non-destructive testing. In these applications, the aim is to infer quantitative properties
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Infrastructure? No Offer Description Waves are widely used for imaging in applications ranging from geophysics and medical ultrasound to non-destructive testing. In these applications, the aim is to infer
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procedures. The project brings together cardiovascular imaging, generative AI, and computational modeling to develop probabilistic digital twins of coronary arteries. The goal is to create patient-specific
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physics, particularly photodetectors or image sensors. Experience in at least one of the following: semiconductor processing, cleanroom fabrication, device modelling or TCAD, electrical characterisation
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) develops and applies innovative molecular imaging technologies that reveal biological processes across multiple spatial scales—from whole organs to individual cells and subcellular structures. Within
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will be integrated into the TIFUUN instrument, a new superconducting imaging spectrometer for terahertz astronomy. Beyond laboratory development, you will actively participate in the commissioning and
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reuse are currently made across different European contexts. You will map and analyse existing decision-making processes and strategies using qualitative research methods. Based on your findings, you will
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structure shape below-ground microclimates, which in turn regulate soil microbial processes and influence ecosystem carbon cycling across. About the position Climate change is increasing the frequency and