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area of Gaussian Process based Simultaneous Localisation and Mapping (SLAM) and recent advances in non-parametric, 3D environment modelling. We will assess the utility of these tools for map-building
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Dipartimento di Ingegneria dell'Informazione - Università degli studi di Padova | Italy | 3 months ago
efficiency of 3D reconstruction. Specifically, the project aims to: i) actively and efficiently reconstruct multiple dynamic targets even in unknown scenarios; ii) address the case of articulated objects
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both 2D and 3D models, for experimental studies. The ideal candidate will demonstrate a strong record of accomplishment in a relevant area of biomedical research, evidenced by first-author peer-reviewed
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mechanics and propulsion, for which the AEROSQIN project constitutes a perfect framework. The candidate will advance techniques for large-scale 3D particle tracking by merging measurement theory and practice
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of London, University College London, University of Cambridge, University of Glasgow, Heriot-Watt University, and Imperial College London and aims to deliver transformative advancements in 3D nanoscale
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cells in structured 2D and 3D environments. Instead of treating artificial/synthetic cells as isolated mimics of life, ProtoEco will develop biohybrid micro-communities that exchange metabolites, energy
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, prototyping, or fabricating functional simulation models, trainers, or related physical prototypes. Hands-on aptitude with a range of fabrication techniques (e.g., 3D printing, molding/casting, basic machining
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the field of mechanical engineering with focus on the following topics: computer aided design modeling, engineering design methodology, the creative design process, prototyping using custom 3D printed parts
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strands. • Bespoke modelling of tumour metabolic function using 3D and 4D imaging data • Cancer patient risk prediction using machine learning (with experience in particular in radiomics and transcriptomics
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with simulated data and 2D and 3D imaging data of plant tissues (the thale cress Arabidopsis and the aquatic fern Ceratopteris). At a later stage, the models can be extended to three dimensions using