Showing 1,841 - 1,860 results of 7,748 for search 'significantly ((((((we decrease) OR (nn decrease))) OR (greater decrease))) OR (linear decrease))', query time: 0.46s Refine Results
  1. 1841

    Minimal dataset for the study. by Hiroaki Yoshikawa (4615801)

    Published 2025
    “…Regarding treatment, the utilization of tacrolimus, plasma exchange (PE), and intravenous immunoglobulin (IVIg) significantly increased between 2006 and 2018. In contrast, the rates of thymectomy and both maximum and current oral steroid dosages decreased during this period.…”
  2. 1842

    Baseline analysis, continuous factors. by Hiroaki Yoshikawa (4615801)

    Published 2025
    “…Regarding treatment, the utilization of tacrolimus, plasma exchange (PE), and intravenous immunoglobulin (IVIg) significantly increased between 2006 and 2018. In contrast, the rates of thymectomy and both maximum and current oral steroid dosages decreased during this period.…”
  3. 1843

    Multivariable analysis between 2006 and 2018. by Hiroaki Yoshikawa (4615801)

    Published 2025
    “…Regarding treatment, the utilization of tacrolimus, plasma exchange (PE), and intravenous immunoglobulin (IVIg) significantly increased between 2006 and 2018. In contrast, the rates of thymectomy and both maximum and current oral steroid dosages decreased during this period.…”
  4. 1844

    Navigation error analysis. by Haichao Li (225035)

    Published 2025
    “…Results show that SIDFM reduces navigation errors by 12.09% at low acceleration and 11.43% at high acceleration while also significantly decreasing positioning errors. These improvements enhance the stability, precision, and safety of AGVs in dynamic manufacturing environments. …”
  5. 1845

    Summary of related works. by Haichao Li (225035)

    Published 2025
    “…Results show that SIDFM reduces navigation errors by 12.09% at low acceleration and 11.43% at high acceleration while also significantly decreasing positioning errors. These improvements enhance the stability, precision, and safety of AGVs in dynamic manufacturing environments. …”
  6. 1846

    Research methodology flow diagram. by Haichao Li (225035)

    Published 2025
    “…Results show that SIDFM reduces navigation errors by 12.09% at low acceleration and 11.43% at high acceleration while also significantly decreasing positioning errors. These improvements enhance the stability, precision, and safety of AGVs in dynamic manufacturing environments. …”
  7. 1847

    Positioning error analysis. by Haichao Li (225035)

    Published 2025
    “…Results show that SIDFM reduces navigation errors by 12.09% at low acceleration and 11.43% at high acceleration while also significantly decreasing positioning errors. These improvements enhance the stability, precision, and safety of AGVs in dynamic manufacturing environments. …”
  8. 1848

    Error-Bar graph. by Haichao Li (225035)

    Published 2025
    “…Results show that SIDFM reduces navigation errors by 12.09% at low acceleration and 11.43% at high acceleration while also significantly decreasing positioning errors. These improvements enhance the stability, precision, and safety of AGVs in dynamic manufacturing environments. …”
  9. 1849

    A Hydrate-Bearing Sediment Gas Replacement Mechanical Behavior Regulation Mechanism and Slope Stability Analysis by Lei Huang (35191)

    Published 2025
    “…As saturation increases, the Γ value of the critical state line decreases, while the λ value increases. (3) For slope simulations, increased hydrate saturation significantly raises the safety factor for gentler slopes, while the reinforcing effect of gas replacement is weaker for steeper slopes with higher saturation.…”
  10. 1850

    A Hydrate-Bearing Sediment Gas Replacement Mechanical Behavior Regulation Mechanism and Slope Stability Analysis by Lei Huang (35191)

    Published 2025
    “…As saturation increases, the Γ value of the critical state line decreases, while the λ value increases. (3) For slope simulations, increased hydrate saturation significantly raises the safety factor for gentler slopes, while the reinforcing effect of gas replacement is weaker for steeper slopes with higher saturation.…”
  11. 1851

    General characteristics of study subjects. by Soo-Hee Hwang (17767519)

    Published 2025
    “…COVID-19 did not affect inpatient mortality (p = 0.9608), but in-hospital mortality decreased from 12% to 7% in the medical aid group.</p><p>Conclusion</p><p>Overall, we found that COVID-19 had an impact on admission rates of patients with AMI but did not have a significant impact on in-hospital mortality. …”
  12. 1852
  13. 1853

    Baseline characteristics. by Seung Min Lee (1644409)

    Published 2025
    “…<div><p>Purpose</p><p>We investigated changes in macular topography and their association with visual acuity and metamorphopsia in the idiopathic epiretinal membrane (iERM).…”
  14. 1854

    Data file used in this study. by Seung Min Lee (1644409)

    Published 2025
    “…<div><p>Purpose</p><p>We investigated changes in macular topography and their association with visual acuity and metamorphopsia in the idiopathic epiretinal membrane (iERM).…”
  15. 1855

    Principal coordinates analysis (PCoA). by Wararak Choovanichvong (22110371)

    Published 2025
    “…Analysis of bacterial abundance revealed a shift in trends as the disease combined from control to NSESKD and SESKD group, respectively, across 7 genera: <i><i>Actinobacillus</i></i>, <i>TM7x</i>, <i><i>Capnocytophaga</i></i>, <i><i>Neisseria</i></i>, and <i><i>Leptotrichia</i></i> increased in abundance, while <i><i>Actinomyces</i></i> and <i><i>Atopobium</i></i> decreased. Linear discriminant analysis effect size (LEfSe) identified <i><i>Leptotrichia</i></i> as a potential biomarker for ESKD (both with and without sarcopenia).…”
  16. 1856

    Changes in foveal location after surgery. by Seung Min Lee (1644409)

    Published 2025
    “…<div><p>Purpose</p><p>We investigated changes in macular topography and their association with visual acuity and metamorphopsia in the idiopathic epiretinal membrane (iERM).…”
  17. 1857
  18. 1858
  19. 1859
  20. 1860