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Field
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), optical imaging and hyperthermia. These technologies can be applied across a range of experimental models, including cells, organoids, Drosophila, zebrafish and rodents. The academic research and PhD
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quantitative imaging, we work towards a multi-scale understanding of how molecular composition and subcellular organisation shape cell function, plasticity and disease. A central biology focus of the lab is
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and data analysis. You will design, build and operate a cryogenic experimental setup in which gas composition, pressure, flow rate and surface temperature can be controlled. Using optical imaging
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the spin and optical properties of the boron vacancy (VB) defect in hBN, in order to assess its potential for quantum sensing applications, with a focus on magnetic field detection. The objective of the PhD
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robotic platforms, integration of optical and imaging-based feedback, and development of modeling and control strategies for operation in complex biological environments. Particular attention will be given
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leading laboratory in optics and nanophotonics. The PhD student will benefit from: - The expertise of the team's PhD students and postdoctoral researchers, who are already involved in the development
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objective will be to adapt tissue-clearing techniques for multimodal nonlinear imaging while preserving both the structural integrity of the biological specimens and the integrity of the optical signals
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teaching undergraduate and master students It is a preference if you additionally have: Experience with soft matter physics and porous media Familiarity with imaging techniques (optical/electron microscopy
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Chair of Biological Imaging 13.08.2026, Academic staff Join us in shaping the future of biomedical imaging We are looking for a curious and persistent PhD student (f/m/d) who wants to discover new
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Developing and validating 3D-OCT-based tools for posterior eye shape characterisation Applications are invited for a fully funded three-year PhD studentship sponsored by Carl Zeiss AG. The