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University of Würzburg - Rudolf Virchow Center for Integrative and Translational Bioimaging | Oettingen in Bayern, Bayern | Germany | 2 months ago
proteins using a wide range of imaging methods. The Rudolf Virchow Center is looking for a PhD student (f/m/d) (Bioimaging / Biophysics) in the field of whole organ fluorescence imaging Antibodies
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in the Department of Bioengineering at Helmholtz Munich . Our group focuses on the development and application of genetically encoded agents, primarily for photoacoustic and fluorescence imaging.We use
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, proteomics, cell and molecular biology, fluorescence microscopy and advanced high-throughput mutagenesis screening. If you are interested in this project, please select Khmelinskii/Padeken as your group
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. These include light-sheet fluorescence microscopy, confocal microscopy, and intravital two-photon microscopy, in conjunction with flow cytometry and transcriptome analyses. You will be responsible for Planning
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cytometry and/or fluorescence-based assays to study Toll-like receptor-mediated immune responses. The project also includes broad omics characterization of bEV-associated signatures, including 16S profiling
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German Cancer Research Center in the Helmholtz Association (DKFZ) | Oettingen in Bayern, Bayern | Germany | 3 months ago
The newly established Ghosh lab utilizes state-of-the-art fluorescence imaging modalities, namely single-molecule localization microscopy (SMLM), lattice light-sheet microscopy (LLSM), and expansion
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artificial cell / cell co-culture Assembly of artificial cell / mammalian cell co-spheroids Lithographic or colloidal approaches to 2D and 3D organization Quantitative fluorescence and confocal microscopy
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-resolved momentum microscopy, near-field nanoscopy, fluorescence-based super-resolution microscopy, ultrafast atomic force microscopy, and time-resolved cryo-electron microscopy. • Employing these one-of-a
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assays, (iii) development of strategies to mechanically couple molecular motors, (iv) dynamic acquisition of motor-driven movement by high-resolution fluorescence microscopy and/or magnetic/optical
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of genetically encoded agents, primarily for photoacoustic and fluorescence imaging.Using technologies like photoacoustic imaging, we seek to visualize small populations of labeled cells (e.g. immune cells) deep