Showing 1,001 - 1,020 results of 5,553 for search '(( b ((large decrease) OR (larger decrease)) ) OR ( i ((values decrease) OR (largest decrease)) ))', query time: 0.81s Refine Results
  1. 1001
  2. 1002
  3. 1003
  4. 1004

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  5. 1005

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  6. 1006

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  7. 1007

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  8. 1008

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  9. 1009

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  10. 1010

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  11. 1011

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
  12. 1012

    Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No... by Mengqing Yang (13253917)

    Published 2025
    “…Following a 20-day treatment with 2 M NH<sub>4</sub>OAc (pH 7), the number of peptides identified using the LP(HPMA)-coated capillary decreased by 18.1% compared to the untreated LP(HPMA)-coated capillary; in contrast, the peptide numbers for the LPA-coated capillary decreased by 26.7% relative to its untreated counterpart. …”
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  15. 1015

    Comparisons between M4 and M5. by Rafael Oliveira (6619367)

    Published 2024
    “…M2 showed lower values of HSR, ACC1, DEC1, DEC2, DEC3 than M3 (p = 0.001–0.04). …”
  16. 1016

    Comparisons between M2 and M3. by Rafael Oliveira (6619367)

    Published 2024
    “…M2 showed lower values of HSR, ACC1, DEC1, DEC2, DEC3 than M3 (p = 0.001–0.04). …”
  17. 1017

    Comparisons between M3 and M4. by Rafael Oliveira (6619367)

    Published 2024
    “…M2 showed lower values of HSR, ACC1, DEC1, DEC2, DEC3 than M3 (p = 0.001–0.04). …”
  18. 1018

    Comparisons between M1 and M2. by Rafael Oliveira (6619367)

    Published 2024
    “…M2 showed lower values of HSR, ACC1, DEC1, DEC2, DEC3 than M3 (p = 0.001–0.04). …”
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