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Field
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Perform single- and dual-site in vivo fiber photometry recordings (genetically encoded calcium and/or neuropeptide biosensors) to characterize real-time circuit dynamics during behavior, including during
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or prime editing; protein or genetic engineering; high-throughput screening; biosensors and diagnostics; tissue or organ engineering; biomaterials; and related translational technologies. Preferred
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to regulatory agencies, investors, pharma companies etc. Learn more about the innovative work led by Dr. Don Ingber here: https://wyss.harvard.edu/technology/human-organs-on-chips/ What you’ll do: Develop models
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and integration of active surfaces, microfluidic components and biosensor architectures for the multiplex detection of biomarkers of biomedical interest; ii) carries out the tasks assigned by
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. Experience with one or more of the following techniques: -Electroencephalography (EEG) -Functional Near-Infrared Spectroscopy (fNIRS) -Magnetic Resonance Imaging (MRI/fMRI) -Biosensors (ECG, GSR, HRV
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focus of this new professorship will be on the development of new diagnostic and prognostic methods (biosensors, biomarker analytics, artificial intelligence), which are expected to be validated via
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to dynamic physical and metabolic change. Tracking how individual cells behave and how their metabolic and mechanical states change, using quantitative image analysis and live-cell biosensors, whilst working
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-forming protein biology In vitro reconstitution and lipid bilayer systems Biosensor development or biology–electronics integration Basic programming skills (Python or similar) Familiarity with protein
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-forming protein biology In vitro reconstitution and lipid bilayer systems Biosensor development or biology–electronics integration Basic programming skills (Python or similar) Familiarity with protein
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, which is internationally recognized for its research in micro- and nanotechnologies, biointerfaces, bioelectronics, and biosensors. The candidate will benefit from access to state-of-the-art facilities