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a focus on how cell elimination underlies the emergence of functional tissues. The team employs a wide range of cutting-edge methods, including single-cell transcriptomics, imaging-based techniques
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This project is a collaboration between the Multiphase Fluid Dynamics group (Prof. Supponen) at the Institute of Fluid Dynamics, and the Functional and Molecular Imaging group (Prof. Razansky
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processes, and environmental fluid dynamics. We use a broad spectrum of technologies in microbiology and microfluidics, as well as advanced imaging techniques, and are a large (approx. 35 members), highly
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100%, Zurich, fixed-term The enhancement of endoscopic videos is a critical yet complex task. These videos are integral to various clinical interventions, where the clarity of imaging data is
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collaboration to combine their expertise. By integrating these complementary approaches, we aim to provide the first comprehensive picture of Hsp90's structure–dynamics–function relationship, with broad
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general Complete CV of the candidate including list of publications and a picture. It is important that all dates at least include month and year. A04_Invitation_Letter_name_of_applicant general general
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, electrical engineering and computer science to design highly efficient and sensitive imaging and inference approaches to help guide diagnosis and treatment in cardiovascular patients. Project background Our
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to: bio-imaging/bio-microscopy, biophysics, single molecule tracking and force spectroscopy, micro/nanofluidics, electron microscopy, scanning probe microscopy, biosensors and bioelectronics. Thematic links
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-enhancing tool. Job description Design and prototype interactive XR environments in Unity3D, both for the use in Augmented Reality and Virtual Reality for simulation Develop optimization-based adaptation