Showing 1,581 - 1,600 results of 15,713 for search '(( significant increase decrease ) OR ( significant ((time decrease) OR (mean decrease)) ))*', query time: 0.72s Refine Results
  1. 1581

    S1 Data - by Beat Knechtle (5504402)

    Published 2024
    Subjects:
  2. 1582

    S2 Data - by Beat Knechtle (5504402)

    Published 2024
    Subjects:
  3. 1583
  4. 1584

    Clinical characteristics. by Clemens Plattner (21567706)

    Published 2025
    “…Survival curves were estimated using the Kaplan-Meier plot and compared using the Log-rank test.</p><p>Results</p><p>Mean age at T2D diagnosis was significantly lower in the FHD group, while time to insulin initiation was independent from FHD status. …”
  5. 1585
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  7. 1587

    Effects of busulfan treatment (6 mg/kg) on the epididymis and sperm of mice over a three-week period. by Lingjun Zhao (21763122)

    Published 2025
    “…<p>(A) The epididymal sperm concentrations decrease over time and significantly differ between hour 0 (control) and day 21 (<i>n </i>= 3 per group). …”
  8. 1588
  9. 1589

    Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane by Ching Yoong Loh (17863097)

    Published 2025
    “…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
  10. 1590

    Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane by Ching Yoong Loh (17863097)

    Published 2025
    “…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
  11. 1591

    Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane by Ching Yoong Loh (17863097)

    Published 2025
    “…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
  12. 1592

    Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane by Ching Yoong Loh (17863097)

    Published 2025
    “…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
  13. 1593

    Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane by Ching Yoong Loh (17863097)

    Published 2025
    “…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
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