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- Institute of Physical Chemistry, Polish Academy of Sciences
- International Institute of Molecular and Cell Biology in Warsaw
- Mossakowski Medical Research Institute, Polish Academy of Sciences
- Nencki Institute of Experimental Biology
- Nicolaus Copernicus Astronomical Center
- Poznan University of Physical Education, POLAND
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ULXs/HLXs, QPEs, QPOs, and exotic tidal disruption events; contributing to population and event-rate predictions by combining detailed stellar models with dynamical formation scenarios for star–IMBH
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of selected proteases in cancer cells, neutrophils, PBMCs, and tissue samples. The combination of advanced peptide synthesis and purification methods, biochemistry, and confocal microscopy will enable real-time
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of selected proteases in cancer cells, neutrophils, PBMCs, and tissue samples. The combination of advanced peptide synthesis and purification methods, biochemistry, and confocal microscopy will enable real-time
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of the neurophysiological profile of motor units and spinal excitability in humans undergoing whole-body vibration training combined with transspinal direct current stimulation (tsDCS); conducting neurophysiological
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of work: We combine a unique methodology of recording the activity of single neurons in humans with advanced analytical approaches, such as machine learning and multidimensional analyses, to better
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dynamics. The project combines molecular and cell biology, biochemistry, proteomics, advanced microscopy, and functional genomics, offering the opportunity to develop expertise in state-of-the-art
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that combines data from different molecular levels (transcripts, proteins, metabolites), aided by in silico target prediction, will enable us to uncover putative target of the compound, which will then be