Showing 17,821 - 17,840 results of 18,089 for search 'significant ((((((step decrease) OR (greatest decrease))) OR (we decrease))) OR (a decrease))', query time: 0.78s Refine Results
  1. 17821

    An overview of the selection process for studies. by Kuo-Chuan Hung (8587392)

    Published 2024
    “…Trial sequential analysis (TSA) was conducted to validate the reliability.</p><p>Results</p><p>A meta-analysis of 22 RCTs (n = 3,463) showed that ketamine/esketamine significantly decreased PPD risk at 1- (risk ratio [RR], 0.41; 95% confidence interval [CI], 0.3–0.57) and 4–6-week (RR, 0.47; 95%CI, 0.35–0.63) follow-ups. …”
  2. 17822

    Data Sheet 1_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.... by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  3. 17823

    Image 1_Tackling global inequalities in maternal hypertensive disorders: trends and the impact of public health emergencies, 1990–2021.tiff by Siying Wei (5990276)

    Published 2025
    “…However, the pandemic significantly slowed the decline in low- and low-middle SDI regions.…”
  4. 17824

    Table 2_FBR2 modulates ferroptosis via the SIRT3/p53 pathway to ameliorate pulmonary fibrosis.xlsx by Yu Cheng (136592)

    Published 2025
    “…However, Feibi Recipe No. 2 (FBR2), a clinically validated traditional Chinese medicine formula, exhibits potential as an IPF treatment.…”
  5. 17825

    Efficient Dehydrogenation of Propane to Propene over PtIn Nanoclusters Encapsulated in Hollow-Structured Silicalite‑1 by Shiying Li (381113)

    Published 2024
    “…The propane conversion and propene selectivity reach ∼45–47.5% and ∼99%, respectively, at 547 °C at least within 167.6 h. As a result, it displays a significantly higher specific activity for C<sub>3</sub>H<sub>6</sub> formation (0.37–0.59 s<sup>–1</sup>) than Pt@S1, Pt@S1–H, and other reported Pt-based catalysts. …”
  6. 17826

    Data Sheet 2_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.... by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  7. 17827

    Table 2_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  8. 17828

    Table 4_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  9. 17829

    Image 1_Augmentation of bone formation by sympathectomy in rats as evaluated by [99mTc]Tc-MDP.png by Zili Cai (15238729)

    Published 2025
    “…</p>Materials and methods<p>Twenty rats were randomly assigned to a superior cervical ganglionectomy (SCGx) group (n = 10) or a sham-operated control group (n = 10). …”
  10. 17830

    Table 4_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  11. 17831

    Table 5_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  12. 17832

    Image 1_Exploring the role of mitochondrial metabolism and immune infiltration in myocardial infarction: novel insights from bioinformatics and experimental validation.tif by Jingyi Hou (698975)

    Published 2025
    “…This study aimed to clarify the roles of mitochondrial metabolism and immune infiltration in MI, using a combination of bioinformatics analyses and experimental validation.…”
  13. 17833

    Table 3_Tackling global inequalities in maternal hypertensive disorders: trends and the impact of public health emergencies, 1990–2021.csv by Siying Wei (5990276)

    Published 2025
    “…However, the pandemic significantly slowed the decline in low- and low-middle SDI regions.…”
  14. 17834

    Characteristics of studies (<i>n</i> = 22). by Kuo-Chuan Hung (8587392)

    Published 2024
    “…Trial sequential analysis (TSA) was conducted to validate the reliability.</p><p>Results</p><p>A meta-analysis of 22 RCTs (n = 3,463) showed that ketamine/esketamine significantly decreased PPD risk at 1- (risk ratio [RR], 0.41; 95% confidence interval [CI], 0.3–0.57) and 4–6-week (RR, 0.47; 95%CI, 0.35–0.63) follow-ups. …”
  15. 17835

    Table 6_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  16. 17836

    Data Sheet 3_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.... by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  17. 17837

    Table 7_Polygonatum sibiricum polysaccharides enhance pancreatic β-cell function in diabetic zebrafish by mitigating mitochondrial oxidative damage via the AMPK-SIRT1 pathway.xlsx by Fan Lin (625737)

    Published 2025
    “…Background<p>Mitochondrial oxidative damage in pancreatic β-cells is a key contributor to diabetes pathogenesis, particularly under hyperglycemic conditions. …”
  18. 17838

    Table 4_Tackling global inequalities in maternal hypertensive disorders: trends and the impact of public health emergencies, 1990–2021.xlsx by Siying Wei (5990276)

    Published 2025
    “…However, the pandemic significantly slowed the decline in low- and low-middle SDI regions.…”
  19. 17839

    Table 1_Ten-year outcomes of repeat keratoplasty for optical indications.docx by Victoria Grace Dimacali (20597690)

    Published 2025
    “…Cox multiple regression analysis showed male gender (p = 0.023), PK regraft (p = 0.003), regraft rejection (p = 0.003), and initial graft indications of pseudophakic bullous keratopathy (p = 0.005) and aphakic bullous keratopathy (p = 0.004) to be risk factors for regraft failure, while longer time to regraft was associated with decreased risk of failure (p = 0.013).</p>Conclusion<p>Performing EK for failed optical PK or EK significantly improved regraft survival compared to repeat PK. …”
  20. 17840

    Table 1_Qinggan Yipi capsule ameliorates hepatic fibrosis in rats by down-regulating the TGF-β1/Smad2/3 signaling pathway and improving gut microbiota imbalance.xlsx by Wenjing Xue (2880686)

    Published 2025
    “…Background and objective<p>Qinggan Yipi Capsule (QgYp) is a hospital preparation that has been used for many years in the treatment of chronic liver diseases. …”