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imaging workflows. The work also involves managing and quantitatively analyzing large-scale image datasets, method development in close collaboration with supervisors and research collaborators, and
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streams such as genome sequencing, high-throughput imaging, and continuous recording of biological systems to understand how organisms evolve and function. How genetic variation shapes body form and
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research project This project develops a real-time decision-support platform for emergency response. By integrating live sensor data from drones, wearable sensors, and thermal imaging with 3D digital twins
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genome sequencing, high-throughput imaging, and continuous recording of biological systems to understand how organisms evolve and function. How genetic variation shapes body form and function is one
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-wavelength excitation) in to the current waveguide chip settings. further develope microfluidics for controlled fluidic exchange allowing for kinetic measurements and to enhance data-driven image analysis
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tracking, and integrating these models into automated analysis and imaging workflows. The work also involves managing and quantitatively analyzing large-scale image datasets, method development in close
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Job related to staff position within a Research Infrastructure? No Offer Description Your team SoftiMAX is a soft X-ray beamline focussed on spectro-microscopy and coherent imaging techniques, with 2
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implement in-situ sensors (3D scanner, thermal imaging, visual camera, etc.) and adaptive toolpath strategies to assist hybrid manufacturing. develop digitally driven value chain models to estimate
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of breast and lung cancer cells Use of high-resolution methods such as large-scale sequencing Multiplex IHC and image analysis Data analysis and programming in R Independent interpretation of results and
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-cell signaling in real time. You will integrate these platforms with optical readouts and image-based assays, and apply them for single-cell quantification of receptor activation, cell–cell communication