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Computational Imaging Lab (QCI Lab) is looking for a Post-doc to conduct research combining microscopy, photonics, and advanced data analysis. The work will involve the development of a unique multiphoton
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, regulation of gene expression using recombinant AAV viruses, proteomics, RNA sequencing, complex biochemistry, neurotransmitter analysis, confocal microscopy, and cell culture. By joining the project, you will
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of selected proteases in cancer cells, neutrophils, PBMCs, and tissue samples. The combination of advanced peptide synthesis and purification methods, biochemistry, and confocal microscopy will enable real-time
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of selected proteases in cancer cells, neutrophils, PBMCs, and tissue samples. The combination of advanced peptide synthesis and purification methods, biochemistry, and confocal microscopy will enable real-time
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develop single-cell imaging techniques in the Microbial Ecology Group. AI-assisted analysis of microscopy images. Interest and experience in studying resting/dormant states and metabolic activity
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dynamics. The project combines molecular and cell biology, biochemistry, proteomics, advanced microscopy, and functional genomics, offering the opportunity to develop expertise in state-of-the-art
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publications; practical knowledge of SAXS, fluorescence spectroscopy, and confocal microscopy; knowledge of electrochemical methods, including electrochemical impedance spectroscopy (EIS) and quartz crystal
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supramolecular systems and of stimuli-responsive (e.g. photoswitchable) properties; familiarity with structural characterization of materials using X-ray (e.g. XRD, SAXS, WAXS) and/or microscopy (TEM, SEM, AFM
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microscopy, cell culture) and molecular biology techniques (e.g. RT-qPCR, Western blot), as well as statistical analysis methods; Good command of English (spoken and written). In addition, we expect: A
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 2 months ago
-associated regulatory networks, and ultimately influences gene expression. To address these questions, the project integrates molecular biology, mammalian cell biology, quantitative fluorescence microscopy