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and how it contributes to pathologies by inducing a lasting reprogramming of infected host cells. This project aims to apply omics approaches, in combination with molecular genetic, microscopic, and
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microglial biology, using cutting-edge methodologies including: two-photon microscopy, miniatured microscope, optogenetics, behavioral phenotyping and transcriptomics. Work duties Lead independent research
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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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in a sample Optimize and validate the performance of a MIP microscope setup in terms of sensitivity, spatial resolution and quantification through systematic experimentation and mathematical modelling
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not ready for non-expert users. The goal of the project is to develop both the previously demonstrated X-ray microscope mode and the holo-tomography mode. This includes developments of software
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disease, oesophageal disease, IBD, microscopic colitis but also colorectal cancer. Through linkage with the personal identity number, it is possible to combine information from national healthcare registers
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molecules sit inside a tissue from sequencing data alone, in effect “imaging without a microscope”; encode, store, retrieve and error-correct digital information in DNA, and make molecular data operations