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manufacturing technologies and eager to develop and build experimental setups and combine this with physics-based modelling? Join us as a PhD candidate and contribute to making volumetric 3D printing predictable
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of the project is to develop and operate a tailored, near-real-time geodetic monitoring approach that provides reliable, transparent, and interpretable 3D surface displacement estimates. The research will focus
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Triggered Aortic Aneurysm Modelling Using 3D Vascular Tissues PhD Candidate – Genetically Triggered Aortic Aneurysm Modelling Using 3D Vascular Tissues. Our goal: Advance personalised aortic therapeutics
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characterize in-vitro vasculature-on-chip models. To create the vascular networks, we will use a proven concept of 3D printing and angiogenesis. With our previously developed sugar 3D printing technique, we can
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professor. The group has three research tracks: freeform design, imaging optics and improved direct methods; for more details see https://martijna.win.tue.nl/Optics/ . The following mathematical disciplines
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simulation framework for paired visible-light and X-ray images of fruit and developing methods for fast 3D shape modelling of fruits, correcting X-ray images for object thickness, and estimating physiological
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obtain high-resolution deep-tissue images from clinically relevant samples. You will realize this by applying superresolution and 3D Fourier OCT signal processing techniques. Third, the OCT system must be
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computational analyses of the various window elements in combination with typical and specific Dutch heritage buildings, 2D and 3D, establishing industry partners and interacting with them to realize
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) prototypes using 3D printing. Analyse data and interpret experimental results. Publish your findings and present them at international conferences. Contribute to teaching and mentoring activities within