Showing 1,901 - 1,920 results of 18,038 for search 'significantly ((((((we decrease) OR (largest decrease))) OR (teer decrease))) OR (a decrease))', query time: 0.51s Refine Results
  1. 1901

    Image 1_Absolute abundance calculation enhances the significance of microbiome data in antibiotic treatment studies.tif by Stefanie Wagner (743707)

    Published 2025
    “…In contrast, analysis of relative abundances only showed a decrease of Faecalibacterium and Rikenellaceae RC9 gut group and, thus, a much less detailed antibiotic effect.…”
  2. 1902

    Image 2_Absolute abundance calculation enhances the significance of microbiome data in antibiotic treatment studies.tif by Stefanie Wagner (743707)

    Published 2025
    “…In contrast, analysis of relative abundances only showed a decrease of Faecalibacterium and Rikenellaceae RC9 gut group and, thus, a much less detailed antibiotic effect.…”
  3. 1903

    Image 4_Absolute abundance calculation enhances the significance of microbiome data in antibiotic treatment studies.tif by Stefanie Wagner (743707)

    Published 2025
    “…In contrast, analysis of relative abundances only showed a decrease of Faecalibacterium and Rikenellaceae RC9 gut group and, thus, a much less detailed antibiotic effect.…”
  4. 1904
  5. 1905

    Fig 1B raw image. by Rachel K. Meade (22216529)

    Published 2025
    “…Here, we identify cathepsin Z (<i><i>Ctsz</i></i>) as a lead candidate underlying this TB susceptibility and show that <i><i>Ctsz</i></i> ablation leads to increased bacterial burden, pulmonary inflammation and decreased survival in mice. …”
  6. 1906

    Structure diagram of ensemble model. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  7. 1907

    Fitting formula parameter table. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  8. 1908

    Test plan. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  9. 1909

    Fitting surface parameters. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  10. 1910

    Model generalisation validation error analysis. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  11. 1911

    Empirical model prediction error analysis. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  12. 1912

    Fitting curve parameters. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  13. 1913

    Test instrument. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  14. 1914

    Empirical model establishment process. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  15. 1915

    Model prediction error trend chart. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  16. 1916

    Basic physical parameters of red clay. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  17. 1917

    BP neural network structure diagram. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  18. 1918

    Structure diagram of GBDT model. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  19. 1919

    Model prediction error analysis index. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”
  20. 1920

    Fitting curve parameter table. by Hongqi Wang (2208238)

    Published 2024
    “…We systematically investigate the impact of water content, dry density, and freeze-thaw cycles (with a freezing temperature set at -10°C) on the thermal conductivity of stabilized soil, a crucial parameter for analyzing soil temperature fields that is influenced by numerous factors. …”