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techniques (3D printing, photopolymerization, laser ablation, molding). - Knowledge of advanced imaging techniques (confocal microscopy, fluorescence microscopy etc.) will be highly appreciated. Website
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and molecular genetics as well as hands-on experience with cloning, live-cell fluorescence microscopy, image analysis, and sample preparation for sequencing and multi-omics analyses. The main model
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, the student will acquire proficiencies in basic and advanced lab techniques, including but not limited to super resolution fluorescence microscopy and live imaging, work with primary and iPSC-derived neuronal
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removed, and valuable post-process water streams are frequently discharged due to insufficient monitoring. This project will investigate the fusion of data streams from ultraviolet (UV) fluorescence imaging
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fabrication of chiral nanostructures. Numerical modelling (typically, FDTD). Optical characterization (microscopy, near-field imaging, fluorescence lifetime measurements, etc.). Writing scientific articles
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imaging and nanoparticle biodistribution. Prior involvement in grant writing, IP, or translational research collaborations Minimum Qualifications Ph.D. in Biomedical Engineering, Pharmacology, Neuroscience
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) to analyze error sources (e.g. incomplete coupling, deprotection efficiency, sequence-dependent effects). Perform test to evaluate synthesis quality (e.g. fluorescence-based hybridization assays, library
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applications. - Nanoparticle characterization - Photophysics - Basic knowledge of cell culture and/or fluorescence imaging is highly appreciated - Fluent in English Website for additional job details https
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CeMM - Research Center for Molecular Medicine of the Austrian Academy of Sciences | Austria | about 1 month ago
creation. Your tasks Cell culture (maintenance, drug treatment, and staining); High-throughput imaging and image analysis; High-resolution fluorescence microscopy; Cell-based assays (cell viability, flow
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fluorescence modulation. The aim of this position is to contribute to the development of new optical configurations enabling the spatial localization of single molecules with ultimate precision and reduced