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Your search keyword '"Malkusch S"' showing total 31 results

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31 results on '"Malkusch S"'

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1. Receptor tyrosine kinase MET ligand-interaction classified via machine learning from single-particle tracking data

2. Visually guided preprocessing of bioanalytical laboratory data using an interactive R notebook (pguIMP)

3. Interpretation of cluster structures in pain‐related phenotype data using explainable artificial intelligence (XAI)

5. Machine learning and biological validation identify sphingolipids as potential mediators of paclitaxel-induced neuropathy in cancer patients.

6. Receptor tyrosine kinase MET ligand-interaction classified via machine learning from single-particle tracking data.

7. Visually guided preprocessing of bioanalytical laboratory data using an interactive R notebook (pguIMP).

8. Optimal distribution-preserving downsampling of large biomedical data sets (opdisDownsampling).

9. Drugs and Epigenetic Molecular Functions. A Pharmacological Data Scientometric Analysis.

10. Interpretation of cluster structures in pain-related phenotype data using explainable artificial intelligence (XAI).

11. Quantitative single-molecule imaging of TNFR1 reveals zafirlukast as antagonist of TNFR1 clustering and TNFα-induced NF-ĸB signaling.

12. Computational Functional Genomics-Based AmpliSeq™ Panel for Next-Generation Sequencing of Key Genes of Pain.

13. Machine-Learned Association of Next-Generation Sequencing-Derived Variants in Thermosensitive Ion Channels Genes with Human Thermal Pain Sensitivity Phenotypes.

14. Single-Molecule Super-Resolution Microscopy Reveals Heteromeric Complexes of MET and EGFR upon Ligand Activation.

15. Single-molecule imaging reveals the oligomeric state of functional TNFα-induced plasma membrane TNFR1 clusters in cells.

16. Super-resolution imaging and estimation of protein copy numbers at single synapses with DNA-point accumulation for imaging in nanoscale topography.

17. Correlative Single-Molecule FRET and DNA-PAINT Imaging.

18. Model-based identification of TNFα-induced IKKβ-mediated and IκBα-mediated regulation of NFκB signal transduction as a tool to quantify the impact of drug-induced liver injury compounds.

19. Quantitative Single-Molecule Localization Microscopy (qSMLM) of Membrane Proteins Based on Kinetic Analysis of Fluorophore Blinking Cycles.

20. Extracting quantitative information from single-molecule super-resolution imaging data with LAMA - LocAlization Microscopy Analyzer.

21. Single-particle tracking uncovers dynamics of glutamate-induced retrograde transport of NF-κB p65 in living neurons.

22. Coordinate-based co-localization-mediated analysis of arrestin clustering upon stimulation of the C-C chemokine receptor 5 with RANTES/CCL5 analogues.

23. Quantitative single-molecule localization microscopy combined with rule-based modeling reveals ligand-induced TNF-R1 reorganization toward higher-order oligomers.

24. A simple method to estimate the average localization precision of a single-molecule localization microscopy experiment.

25. Correlative light- and electron microscopy with chemical tags.

26. Quantitative morphological analysis of arrestin2 clustering upon G protein-coupled receptor stimulation by super-resolution microscopy.

27. Super-resolution microscopy reveals specific recruitment of HIV-1 envelope proteins to viral assembly sites dependent on the envelope C-terminal tail.

28. Single-molecule coordinate-based analysis of the morphology of HIV-1 assembly sites with near-molecular spatial resolution.

29. TNF-α influences the lateral dynamics of TNF receptor I in living cells.

30. Coordinate-based colocalization analysis of single-molecule localization microscopy data.

31. Chemically induced photoswitching of fluorescent probes--a general concept for super-resolution microscopy.

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