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on the functionalization of materials, employing advanced characterization techniques to study how various plasma operational parameters influence scaffold properties, cellular responses, and material performance in
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project that combines cutting-edge approaches including state-of-the-art imaging techniques, pluripotent stem cell models, in vivo mouse models of neurological disorders, drug (brain) delivery and nanobody
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motivated postdoctoral fellow to apply a control-theoretic approach to investigate the neurocognitive mechanisms of cognitive effort. The position is funded by a European Research Council Advanced Grant
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-ray particle velocimetry measurements. In collaboration with other researchers working on the project, you will also contribute to methodological advancements to improve the experimental capabilities
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diverse academic backgrounds to contribute to our projects in areas such as: Network Security, Information Assurance, Model-driven Security, Cloud Computing, Cryptography, Satellite Systems, Vehicular
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diverse academic backgrounds to contribute to our projects in areas such as: Network Security, Information Assurance, Model-driven Security, Cloud Computing, Cryptography, Satellite Systems, Vehicular
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this specificity and test how these regulate structure and function of higher-order thalamocortical inputs in cortical circuits. The applicant will use various technologies, including super-resolution imaging
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question: « what makes our brain human ? » (Vanderhaeghen and Polleux, Nat. Rev. Neurosci. 2023). We combine cutting-edge approaches such as pluripotent stem cell models of human corticogenesis, human-mouse
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%) postdoctoral researcher in the field of bio-electrochemistry. The overall goal of this project is to develop novel biosensing strategies that will pave the way to the construction of affordable, robust, and user
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question: « what makes our brain human ? » (Vanderhaeghen and Polleux, Nat. Rev. Neurosci. 2023). We combine cutting-edge approaches such as pluripotent stem cell models of human corticogenesis, human-mouse