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on artificial intelligence and autonomous systems acting in collaboration with humans, adapting to their environment through sensors, information and knowledge, and forming intelligent systems-of-systems
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. The program addresses research on artificial intelligence and autonomous systems acting in collaboration with humans, adapting to their environment through sensors, information and knowledge, and forming
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include work with remote sensing, autonomous sensors, environmental monitoring technologies, data integration, and system-level analyses of monitoring performance under changing environmental conditions
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of marine ecosystem monitoring across spatial and temporal scales. The project will include work with remote sensing, autonomous sensors, environmental monitoring technologies, data integration, and system
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on artificial intelligence and autonomous systems acting in collaboration with humans, adapting to their environment through sensors, information and knowledge, and forming intelligent systems-of-systems
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(e.g. Ca²⁺ reporters, pH sensors). Knowledge of plant immune responses, in particular pattern-triggered immunity (PTI) and its intersection with cell wall remodelling. Experience with cell wall
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implantation of multielectrode arrays in mouse models of Parkinson’s disease. Recording neuronal activity in corticostriatal networks in freely moving mouse models of Parkinson’s disease. Behavioral
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) signalling, adjusting the wall's properties when they are threatened. A central question remains unresolved in both plants and algae: what does a CWI sensor actually detect? The difficulty is that the stresses