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and synthesize via light-based 3D-printing architecture (meta)materials for medical soft robotics applications. Furthermore, the morphology, microstructure, and mechanical behaviour of the metamaterials
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this variability. This understanding is the primary challenge that should be overcome to maximise performance and health outcomes as well as ensure better long-term adherence. To address these challenges, this PhD
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That Accelerate Their Own Destruction via Chemo-Structural Feedback" Angew. Chem. Int. Ed. 61, e202201573 (2022). B. Dúzs, O. Skarsetz, G. Fusi, C. Lupfer, A. Walther "Mechano-adaptive Meta-Gels through Synergistic
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, public policy support, and commercial activities of the DED/I2S unit in France and internationally. The unit’s main research themes include: (i) Assessment of the integrity of natural and engineered
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architecture (meta)materials for medical soft robotics applications. Furthermore, the morphology, microstructure, and mechanical behaviour of the metamaterials for soft robotics applications will be
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Feature Article) B. Dúzs, O. Skarsetz, G. Fusi, C. Lupfer, A. Walther, "Mechano-Adaptive Meta-Gels through Synergistic Chemical and Physical Information-Processing," Nature Communications 15, 8957 (2024
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metabolism and function in diabetic cardiomyopathy (DbCM). The project combines cardiovascular physiology, molecular biology, metabolism, and translational research within the international SHEA-META
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physiology, molecular biology, metabolism, and translational research within the international SHEA-META consortium, bringing together researchers from Maastricht University, the University of Oxford, and the
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, and advance both social science methodology and governance theory. The project team comprises the Principal Investigator (PI) Prof. Newig, one postdoctoral researcher, and four doctoral researchers
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using real-world transport and logistics applications. The primary application domain is public transport planning in collaboration with AtB, the public transport authority in the Trondheim region