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function in all their complexity, and how they change due to natural processes and human activities. At its core lies an integrated systems approach to study biodiversity, ecosystems and the environment
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of Amsterdam . The research at IBED aims to unravel how ecosystems function in all their complexity, and how they change due to natural processes and human activities. At its core lies an integrated systems
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activities will include: o Human Brain Modeling: Generating and maintaining patient-stratified iPSC lines and innovative 3D "brain chimeroid" models. o Advanced Neurophysiology: Assessing functional network
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World’, and a healthy humanity (‘Care & Cure’). Activities share an application-oriented character, a high degree of complexity and a large synergy between multiple facets of the field. Research is
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, Katholieke Universiteit Leuven, Department of Human Genetics, Belgium (Academic); Dr. Domenico Bellomo, SkylineDx B.V., Netherlands (Industry) Project description: DC2 will develop a 3D spatial FUN-G&T-seq and
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, for example through newborn screening, family screening or genetic testing. These families may face uncertainty about when symptoms will develop and difficult decisions about treatment. Understanding
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Want to teach machines the mechanisms behind how the world changes — and build agents that act on them? Join us! World models are controllable, physics- and mechanism-grounded simulators of reality
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Challenge: Developing, operationalizing, quantifying, and embedding complex human and legal values into alignment pipelines for AI systems, open-weights, and foundation models. Change: Advancing
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tool. Finally, you act with integrity and intellectual honesty. The outstanding candidate is not someone who already perfectly masters all the required skills, but someone who has the potential to grow
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metabolism and contractility, and on validating newly identified biomarkers using human stem cell-derived cardiomyocytes. The project contributes to the development of innovative diagnostic and therapeutic