Showing 1,901 - 1,920 results of 2,948 for search '(( significantly linked decrease ) OR ( significantly ((smaller decrease) OR (small decrease)) ))', query time: 0.52s Refine Results
  1. 1901

    Data Sheet 1_Association between interleukin gene polymorphisms and the risk of pneumoconiosis: a systematic review and meta-analysis.zip by Lu Liu (171341)

    Published 2025
    “…Additionally, the IL-1RA +2018 genotype was significantly linked to a predisposition to coal workers’ pneumoconiosis (CWP) and silicosis. …”
  2. 1902

    <b>Relationship between </b><b>plant</b><b> </b><b>anatomical </b><b>traits and yield among </b><b>different</b><b> winter wheat genotypes in</b><b> </b><b>dry environment</b><b>s<... by Du (17111761)

    Published 2025
    “…Our results suggests that larger root xylem area, decreased root cortical tissue with lower root respiration, higher abaxial stomatal density with smaller but more stomata in the flag leaf have contributed to increased yields in dry environments. …”
  3. 1903

    Table 1_Trends in the burden of chronic diseases attributable to diet-related risk factors from 1990 to 2021 and the global projections through 2030: a population-based study.docx by Huan Ma (713125)

    Published 2025
    “…In low-SDI regions, diets low in vegetables showed the strongest association with neoplasm-related mortality, while diets low in fruits were significantly linked to CVD and diabetes burden. High-sodium diet was a significant risk factor for CVD in the middle-SDI regions. …”
  4. 1904

    C2f and BC2f module structure diagrams. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  5. 1905

    YOLOv8n detection results diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  6. 1906

    YOLOv8n-BWG model structure diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  7. 1907

    BiFormer structure diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  8. 1908

    YOLOv8n-BWG detection results diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  9. 1909

    GSConv module structure diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  10. 1910

    Performance comparison of three loss functions. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  11. 1911

    mAP0.5 Curves of various models. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  12. 1912

    Network loss function change diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  13. 1913

    Comparative diagrams of different indicators. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  14. 1914

    YOLOv8n structure diagram. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  15. 1915

    Geometric model of the binocular system. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  16. 1916

    Enhanced dataset sample images. by Yaojun Zhang (389482)

    Published 2025
    “…Existing methods encounter challenges like intricate detection environments, small-scale targets, and extensive model parameters. …”
  17. 1917

    Supplementary Material for: Using smartphone data to frequently measure atopic dermatitis severity and understand triggers: A decentralized 12-week observational study by Ali Z. (5634332)

    Published 2024
    “…Decreasing temperature was significantly associated with higher POEM (estimate -0.18, p=0.012) and EASI score (estimate -0.14, p=0.007), but not with SCORAD. …”
  18. 1918

    Data Sheet 1_The relationship between intrinsic capacity and sarcopenia in middle-aged and older Chinese populations: the mediating influence of a novel nutritional index.zip by Hong Ding (135247)

    Published 2025
    “…Background<p>Sarcopenia poses a major global health issue, with intrinsic capacity (IC) linked to its risk. This study examined the link between IC and sarcopenia in middle-aged and older Chinese individuals, focusing on the mediating role of triglycerides-total cholesterol-body weight index (TCBI), a new easy-to-calculate nutritional indicator.…”
  19. 1919

    Data Sheet 1_Metabolism and immune responses of striped hamsters to ectoparasite challenges: insights from transcriptomic analysis.zip by Xinchang Lun (11996469)

    Published 2024
    “…By day 28, only SOD expression showed a significant decrease in both parasitism groups.</p>Conclusion<p>This study uncovered the dynamic changes in metabolism and immune responses of striped hamsters parasitized by Xenopsylla cheopis. …”
  20. 1920

    Table 1_DYRK1A roles in human neural progenitors.xlsx by Jeremie Courraud (20871932)

    Published 2025
    “…In addition, DYRK1A-KD led to a reduction in p21 protein levels, despite an increase in the expression of a minor transcript variant for this gene, and a decrease in ERK pathway activation.</p>Discussion<p>Together, the DYRK1A interactome in hNSCs and the gene expression changes induced by its depletion highlight the significant role of DYRK1A in regulating hNSC proliferation. …”