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. These multiscale models are also crucial in the context of Virtual Human Twin (VHT), as promoted by the European commission through EDITH initiative (https://www.edith-csa.eu/ ). You will work in the CardioVascular
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mechanical strains and stresses is essential to ensure device longevity (37million cardiac cycles per year!), whilst ensuring optimal cardiovascular function for the patient. This project proposes to integrate
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adhesion and migration, and cardiovascular biology Excellent communication and collaboration skills. Proficiency in English Specific Requirements Experience in imaging, image analysis, and/or mouse models
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computational modelling, nanotechnology, and cardiology). 🚀 Why Choose Us? Cutting-edge Research: Engage in pioneering research for cardiovascular healthcare, nanomedicine, and computational simulation
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Aix Marseille University, Interdisciplinary Center of Nanoscience of Marseille (CINaM) | Marseille, Provence Alpes Cote d Azur | France | 16 days ago
in Aix Marseille University in between two doctoral schools: "Physics and Science of Matter " and "Biology". The PhD subject: Venous Thrombosis (VT) is the third leading cause of cardiovascular death
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selection of ultrasound and electrophysiological features to describe the behavior and characteristics of the cardiovascular system. To develop dedicated mathematical models to describe the coupling between
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description We are seeking driven, highly motivated individuals to fill two Ph.D. student positions in cardiovascular
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cycles per year!), whilst ensuring optimal cardiovascular function for the patient. This project proposes to integrate state-of-the-art image-based measurement techniques with computational models for a
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fetus cardiovascular systems and the mediating role of the uterus and placenta. The project is embedded within the NWO-OTP project MAPPING in collaboration with the respected expert center Máxima Medical
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; Great Ormond Street Hospital for Children NHS Foundation Trust | London, England | United Kingdom | 12 days ago
of Child Health (subsidiary) 2: A Patient-derived 3D humanized model of ADCY5-related disease to accelerate therapeutic approaches for patients: Dr Serena Barral, UCL Great Ormond Street Institute of Child