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Field
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health. This project seeks to develop triple respiratory epithelium models that links different areas of the airways (nasal cavity, bronchi and alveoli) through a circulating fluid system. The models will
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Max Planck Institute for Intelligent Systems, Tübingen, Tübingen | Bingen am Rhein, Rheinland Pfalz | Germany | about 1 month ago
ongoing research efforts in the development of statistical 3D models of Horses. About us We are creating the world’s most realistic human and animal avatars for use in research, film, virtual reality
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and with the 2AT team at Institut Pprime to develop resolvent-based modelling tools for turbulent jets in cases where the jet mean flow is three-dimensional. The researcher shall: - Develop a high-order
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software-defined radio. A central theme of the project is co-design across sensing, AI reconstruction, and embedded deployment. You will explore how multimodal models can generate consistent 3D scene
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Laboratoire INSERM UMR1311 Rouen Normandie Université | Rouen, Haute Normandie | France | 7 days ago
on three main Workpackages (WPs): • WP1: Characterizing the inflammatory response and airway remodeling in a novel 3D model of Apical-Out Airway Organoids (AOAO) derived from pediatric asthmatic patients
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developing a data-driven framework linking DNA, 3D body shape, and motion in horses. The PhD student will work on three interconnected research directions: Multimodal modelling integrating language, visual and
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framework linking DNA, 3D body shape, and motion in horses. The PhD student will work on three interconnected research directions: Multimodal modelling integrating language, visual and quantitative shape
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of EOM 3D anatomy and ex vivo contractility data, high-speed video oculography and head tracking in mice using deep learning-based pose estimation, and implementation of Hill-type muscle models
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performance behaviour and QoS metrics specifically for AEC systems. Models will analyse key features such as 3D mobility patterns, bursty traffic arrivals, and the dynamics of aerial-to-ground wireless
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/scholarship agreement: 1 year with the possibility of extension Project leader: Przemysław Spurek Project title: Effective rendering of 3D objects using Gaussian Splatting in an Augmented Reality environment