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Your search keyword '"Mai, Yuanbang"' showing total 25 results

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25 results on '"Mai, Yuanbang"'

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1. Quartet RNA reference materials improve the quality of transcriptomic data through ratio-based profiling

2. Multi-omics data integration using ratio-based quantitative profiling with Quartet reference materials

3. Author Correction: Quartet RNA reference materials improve the quality of transcriptomic data through ratio-based profiling

5. Human induced-T-to-natural killer cells have potent anti-tumour activities

8. Author Correction: Quartet RNA reference materials improve the quality of transcriptomic data through ratio-based profiling

9. Multi-omics data integration using ratio-based quantitative profiling with Quartet reference materials

10. Quartet RNA reference materials improve the quality of transcriptomic data through ratio-based profiling

12. Ratio-based quantitative multiomics profiling using universal reference materials empowers data integration

13. Correcting batch effects in large-scale multiomic studies using a reference-material-based ratio method

15. Additional file 11 of Human induced-T-to-natural killer cells have potent anti-tumour activities

16. Additional file 6 of Human induced-T-to-natural killer cells have potent anti-tumour activities

17. Additional file 5 of Human induced-T-to-natural killer cells have potent anti-tumour activities

18. Additional file 4 of Human induced-T-to-natural killer cells have potent anti-tumour activities

19. Additional file 7 of Human induced-T-to-natural killer cells have potent anti-tumour activities

20. Single-Cell Analysis Reveals Macrophage-Driven T Cell Dysfunction in Severe COVID-19 Patients

21. Resolving Cell Fate Decisions during Somatic Cell Reprogramming by Single-Cell RNA-Seq

22. Chromatin Accessibility Dynamics during Chemical Induction of Pluripotency

23. Resolving Cell Fate Decisions During Somatic Cell Reprogramming by Single-Cell RNA-Seq

24. Resolution of Reprogramming Transition States by Single Cell RNA-Sequencing

25. Human Urinal Cell Reprogramming: Synthetic 3D Peptide Hydrogels Enhance Induced Pluripotent Stem Cell Population Homogeneity

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