Showing 1,421 - 1,440 results of 4,076 for search 'significantly ((better decrease) OR (((teer decrease) OR (mean decrease))))', query time: 0.52s Refine Results
  1. 1421

    Comparative experiment. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  2. 1422

    Pruning experiment. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  3. 1423

    Parameter setting table. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  4. 1424

    DTADH module. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  5. 1425

    Ablation experiment. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  6. 1426

    Multi scale detection. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  7. 1427

    MFDPN module. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  8. 1428

    Detection effect of different sizes. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  9. 1429

    Radar chart comparing indicators. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  10. 1430

    MFD-YOLO structure. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  11. 1431

    Detection results of each category. by Bo Tong (2138632)

    Published 2025
    “…Experimental results indicate that at a pruning level of 1.5, mAP@0.5 and mAP@0.5:0.95 improved by 3.9% and 4.6%, respectively, while computational load decreased by 21% and parameter count dropped by 53%. …”
  12. 1432
  13. 1433

    Results of MC simulations of VO and agonist infusion. by Johane H. Bracamonte (12883844)

    Published 2025
    “…Red indicates that more than 75% of simulations predicted an increase in the output, or that the majority of studies reported a significant increase. Blue indicates a decrease in >75% of simulations or the majority of experiments. …”
  14. 1434
  15. 1435

    Micelle and Inverse Micelle Structure Driven Viscoelasticity and Phase Separation in 2‑Isobutoxyethanol–Water Mixtures: Insights from All-Atom Simulations by Mayank Dixit (7879364)

    Published 2025
    “…Structural analyses, including radial distribution functions (RDFs) and potentials of mean force (PMFs), reveal that hydrogen bonds between IBE-water are significantly stronger than those in IBE–IBE and water–water pairs, as evidenced by higher RDF peak intensities, deeper contact minima, and slower hydrogen-bond autocorrelation decay. …”
  16. 1436

    Micelle and Inverse Micelle Structure Driven Viscoelasticity and Phase Separation in 2‑Isobutoxyethanol–Water Mixtures: Insights from All-Atom Simulations by Mayank Dixit (7879364)

    Published 2025
    “…Structural analyses, including radial distribution functions (RDFs) and potentials of mean force (PMFs), reveal that hydrogen bonds between IBE-water are significantly stronger than those in IBE–IBE and water–water pairs, as evidenced by higher RDF peak intensities, deeper contact minima, and slower hydrogen-bond autocorrelation decay. …”
  17. 1437
  18. 1438

    Raw data of Figs 1–6 in this study. by Qi Qi Lu (17721401)

    Published 2025
    “…When gut epithelial PGAM5 receptor and apoptosis were inhibited by PGAM5-specific siRNA, inhibitor (LFHP-1c) and apoptosis inhibitor (Z-VAD-FMK), trans-epithelial electrical resistance (TEER) and TJs expression were obviously increased, and intestinal permeability was evidently decreased. …”
  19. 1439
  20. 1440

    Transcript response differences between T1R and LEP patients for GO terms, KEGG or Reactome pathways that showed significant enrichment for both the LEP and T1R groups. by Wilian Correa-Macedo (11813183)

    Published 2024
    “…(<b>C</b>) Heatmap for all DET of the GO term “inflammatory response”. The mean Log<sub>2</sub>FC for all DET was retrieved for each group and ordered by decreasing values of the LEP group. …”