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- University of Gdansk
- Nencki Institute of Experimental Biology
- Institute of Geological Sciences, Polish Academy of Sciences
- Institute of Human Genetics of the Polish Academy of Sciences
- Institute of Physics, Polish Academy of Sciences, Warsaw
- Jagiellonian University
- Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences
- Lodz University of Technology
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Field
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thermal transients with a temporal resolution of a single nanosecond, which appear in the response to a local dissipation. We can directly investigate the dynamics of various energy relaxation channels
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of single-cell analysis methods to investigate quiescence at individual cell and population levels. Where to apply E-mail [email protected] Requirements Research FieldBiological
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the country in which the doctoral degree was obtained. Knowledge of using and optimizing the cellular thermal shift assay (CETSA) to understand the activity of novel hit molecules compounds. Expertise
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. • Design and development of unit cells for low frequency applications mentioned in the project. • Design and development of metamaterial-based supports for the attenuation of vibrations of the single beam
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therapeutic approach for B-cell lymphoma based on targeting the IGH enhancer RNA. To this end, we will conduct a high-throughput screening for small molecules binding to the eRNA transcribed from the essential
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quantification of cancer specific antigens (neoantigens) presented by MHC class I molecules of the tumour. Therefore, in the current project we want to use this experience and know-how to develop comprehensive
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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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quantification of cancer specific antigens (neoantigens) presented by MHC class I molecules of the tumour. Therefore, in the current project we want to use this experience and know-how to develop comprehensive
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, Faculty of Medicine , ul. Chodźki 19, 20- 093 Lublin, or by e-mail (scans) to: [email protected] by November 15, 2026. Additionally, please send the following documents as a single PDF file
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. Single-cell multi-omics and flow cytometry technologies will allow us to dissect the impacts of TNFR2 perturbations on CLL. Human CLL cell lines, experimental mouse model and primary human materials