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. Together with other research groups, we offer state-of-the-art core facilities providing cell sorting techniques, microscopy, sequencing, mouse facilities, and provide access to clinical samples
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industrial partners and will involve culturing and differentiating pluripotent stem cells, cell isolation, genetic analysis and microscopy. Produced retinal cells and microtissues will be tested in animal
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Postdoctoral fellow within Microglia–Neural Circuit Interactions in Memory and Disease (PA2026/2262)
and microglial biology, using cutting-edge methodologies including: two-photon microscopy, miniatured microscope, optogenetics, behavioral phenotyping and transcriptomics. Work duties Lead independent
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for sustainability). Experience with experimental research, with a focus on microscopy and imaging, preferably using X-rays. This includes hands-on work with instrumentation, commissioning, and data acquisition
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remodelling, and Brillouin microscopy combined with live-cell signalling reporters will be used to characterise the tissue-level responses these perturbations elicit. The work is carried out in Arabidopsis
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, bioprinting, or advanced in vitro models Experience with advanced microscopy methods and 3D image analysis Experience in cancer biology or tumour microenvironment research We are looking for candidates who: Can
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, such as electrochemical impedance spectroscopy, with for instance nuclear magnetic resonance spectroscopy (NMR), electron microscopy (SEM/TEM), Raman and in situ mass spectrometry (OLMS). Qualifications
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electrophysiological methods (e.g., patch clamp recording, multiple-electrode array recordings, or OECT recordings) Work with cell studies (in vitro studies) Microscopy of cells and cell clusters (e.g., confocal and/or
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experimental biological work (cell culture, microscopy, transfection, labeling, or other molecular biology methods). Are able to design, optimise, and troubleshoot experimental protocols. Are comfortable in
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mechanics (Brillouin microscopy), wall chemical composition (OPTIR spectroscopy), and spatial gene Xenium in situ transcriptomics); into a unified, time-resolved atlas of the root transition zone. As a