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, and in vivo imaging • Exposure to mRNA/siRNA delivery or gene-editing systems • Solid publication record and strong communication skills Appointment and Benefits • Full-time position with an initial one
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) Doctorate in life sciences, biochemistry, molecular medicine, or a related discipline Knowledge of ophthalmology is desirable Experience with animal experiments (mice) Experience with histological and imaging
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spatial omics data is highly desirable. Knowledge of immunology or image analysis would be considered an advantage. The successful candidate should be able to apply a range of computational tools
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/FRT-based dual and triple recombinase systems, organoid culture, orthotopic transplantations of cells/organoids, CRISPR/Cas9, molecular in vivo imaging, quantitative proteomics/phosphoproteomics
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. Responsibilities Master technical disciplines : design and execute rigorous experiments in chromatin biochemistry, complex reconstitutions, imaging studies, and/or genomics to probe condensate mechanisms and genome
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embedded in nanoscopic droplets of superfluid helium. Specific projects include, but are not limited to: 1) Time-resolved imaging of cation-molecule complex formation 2) Time-resolved stereodynamics
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responses are affected by the native microenvironment in order to design and engineer natural polymers to support the investigation of these processes in vitro and in vivo. Our research liaises engineering
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fluorescence microscopes to conduct live-cell imaging experiments. Perform sample preparation using basic cell biology techniques (training provided). Conduct biochemical analyses such as immunoblotting
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investigate the connectivity of genetically defined populations of spinal interneurons using a diverse set of approaches, including expansion microscopy, tissue clearing and light-sheet imaging, as
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the fly brain based on electron-microscopic reconstruction; second, high-resolution live imaging data of the developmental transformations that encode information in biological neural networks