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Your search keyword '"Frankevich, Vladimir E."' showing total 34 results

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34 results on '"Frankevich, Vladimir E."'

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1. First-Trimester Preeclampsia-Induced Disturbance in Maternal Blood Serum Proteome: A Pilot Study.

4. Quantitative Proteomics of Maternal Blood Plasma in Isolated Intrauterine Growth Restriction

7. Integrating Proteomics and Lipidomics for Evaluating the Risk of Breast Cancer Progression: A Pilot Study

9. Methodology for Urine Peptidome Analysis Based on Nano-HPLC Coupled to Fourier Transform Ion Cyclotron Resonance Mass Spectrometry

11. The Impact of Maternal SARS-CoV-2 Infection Next to Pre-Immunization with Gam-COVID-Vac (Sputnik V) Vaccine on the 1-Day-Neonate’s Blood Plasma Small Non-Coding RNA Profile: A Pilot Study

12. Shotgun Lipidomics for Differential Diagnosis of HPV-Associated Cervix Transformation

16. miRNAs and Their Gene Targets—A Clue to Differentiate Pregnancies with Small for Gestational Age Newborns, Intrauterine Growth Restriction, and Preeclampsia

18. Differential Diagnosis of Preeclampsia Based on Urine Peptidome Features Revealed by High Resolution Mass Spectrometry

19. Role of electrons in laser desorption/ionization mass spectrometry

20. Validation of Breast Cancer Margins by Tissue Spray Mass Spectrometry

24. Supplemental Material2 - Supplemental material for The high-resolution mass spectrometry study of the protein composition of amyloid-like urine aggregates associated with preeclampsia

25. Label-free cervicovaginal fluid proteome profiling reflects the cervix neoplastic transformation

27. Corrigendum to “Identification of potential early biomarkers of preeclampsia” [Placenta (2018) 61–71]

28. Identification of potential early biomarkers of preeclampsia

29. Endometriosis foci differentiation by rapid lipid profiling using tissue spray ionization and high resolution mass spectrometry

30. The high-resolution mass spectrometry study of the protein composition of amyloid-like urine aggregates associated with preeclampsia

33. Feature selection for OPLS discriminant analysis of cancer tissue lipidomics data.

34. Methodology for Urine Peptidome Analysis Based on Nano-HPLC Coupled to Fourier Transform Ion Cyclotron Resonance Mass Spectrometry.

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