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advantage. The successful candidate will apply molecular, imaging, and electrophysiological methods to investigate the molecular mechanisms of somatic mechanotransduction. We use genetic mouse models and
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., 2020; Hersperger et al., 2024). Our lab employs a combination of approaches such as genetic screens, single nuclei RNA-sequencing, live imaging, fate mapping approaches and reporter lines, and
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intelligence (AI)-assisted image analysis for bioinformatics and medicine. The project is highly interdisciplinary, involving areas of microfluidics, fluidic mechanics, biomedical imaging, and machine learning
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, remote object ranging and tracking in LEO constellations, and monostatic and bistatic SAR imaging using communication waveforms Design and evaluate self-interference cancellation (analog/digital) and
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, microbiology, bioengineering, etc.). Additional experience in molecular biology or programming-based image analysis will be much welcome. The project(s) related to this position will be quantifying and
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-on experience in analytical techniques (e.g., biochemical assays, advanced Imaging technologies, Immunological and toxicological assays) Experience with genetically encoded delivery vehicles Your Personal
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of the following methodologies: optogenetics, calcium imaging, viral tracing, tissue clearing, murine behavioral phenotyping, machine-learning behavioral analysis Familiarity with programming languages
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English. Hands-on experience with molecular biology assays, genome editing, or imaging-based studies is particularly valued. Excellent teamwork spirit, good communication skills, and a high level of
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, biochemistry, or immunology required. Experience with mouse tumor models and related procedures (handling, tumor cell injection, flow cytometry, mouse surgical procedures, IVIS imaging) strongly preferred
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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