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on an animal model, using a high-field MR tomograph 9.4 T, within the scope of the research project NCN OPUS: " New generation theranostic nanocarriers for detection, diagnosis and neuroprotective treatment
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process of 3D-printed constructs. The selected models will undergo long-term culture and functional tests, such as cultivation in a perfusion system and mechanical testing, to evaluate the usability
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to confirm the safety of the (nano)hormonechemotherapeutics. A key phase will be the development of a translational organoid model derived from patient tumor tissues that reflects the realistic tumor
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mountain river channels. In the initial phase of the project, their primary responsibility will be to generate orthophotos and digital elevation models (DEMs) of the study sites using drone imagery. Once
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of multinuclear low-valent iron and vanadium complexes supported by tailored N,N-donor ligands. These model systems will allow us to probe the intimate steps of N2 activation, explore cooperative effects between
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, obtained not earlier than 7 years before the year of employment in the project (not including maternity leaves), Strong MATLAB and/or Python programing skills – signal analysis, statistics, neuronal modeling