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is also known for the development of the Nanoimager microscope and the founding of Oxford Nanoimaging (https://oni.bio/ ). The group recently moved in the new Kavli Institute for Nanoscience Discovery
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, PNAS 2020; Mazumder, eLife 2021; El Sayyed et al Mol Cell 2024). The group is also known for the development of the Nanoimager microscope and the founding of Oxford Nanoimaging ( https://oni.bio
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at the University of Graz, Austria. About the Position: This role focuses on developing advanced single-molecule fluorescence and microfluidic approaches (confocal, TIRF, single-molecule FRET) for biophysics
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Université Paris-Saclay GS Santé et médicaments | Chatenay Malabry, le de France | France | about 2 months ago
cellulaire (imagerie FRET, microscopie confocale STED), la physiologie cellulaire (respiration mitochondriale, mesure des ROS), la biologie moléculaire/omique et la biophysique (mesure de la force, propriétés
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Leica SP8 confocal microscope equipped with the FALCON module for FLIM-FRET and STED, as well as transmission and scanning electron microscopes. The host team has a strong international reputation in
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spectroscopy for atomic-resolution insights in solution Single-molecule FRET for time-resolved, single-molecule dynamics This unique combination of methods is achieved by the synergy of the Hiller and Schmid
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) though the “Programa de Inovação e Transição Digital” (COMPETE2030), carried out at RISE-Health – University of Beira Interior (UBI) (http://www.cics.ubi.pt/ ), under the following conditions: Scientific
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exemptions apply. Please see the University of Sheffield website for full details: https://sheffield.ac.uk/mps/postgraduate/phd-opportunities/how-apply-your-phd#entry-requirements How to apply: All
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, fluorescence polarization, FRET, and microscopic imaging; Ability to perform cytostatic and cytotoxic assays. Ability to analyze experimental data (e.g., using GraphPad Prism) and to prepare research
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living cell or organism. To fill this gap and advance our understanding, we develop and deploy new optogenetic tools (FRET, synthetic biology) in vivo and optical tweezers in vitro to measure piconewton