Showing 1,921 - 1,940 results of 5,501 for search '(( significant decrease decrease ) OR ( significantly improve decrease ))~', query time: 0.38s Refine Results
  1. 1921

    Ablation study on the RSOD dataset. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  2. 1922

    Structure and working principle of LI-YOLOv8. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  3. 1923

    Structure of Detect and GP-Detect. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  4. 1924

    YOLOv8 structure and working principle. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  5. 1925

    EMA attention mechanism working principle. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  6. 1926

    Ablation study on the NWPU VHR-10 dataset. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  7. 1927

    GSConv working principle. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  8. 1928

    PR comparison on NWPU VHR-10 dataset. by Pingping Yan (462509)

    Published 2025
    “…Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  9. 1929

    Discovery of Tamsulosin Derivatives with Shifted Selectivity from the α<sub>1</sub>‑Adrenergic Receptor to ANO1 as Potent Antiosteoporotic Agents by Chaoquan Tian (21009122)

    Published 2025
    “…The potency of compound <b>10</b> against ANO1 was comparable to that of <b>Tam</b> (IC<sub>50</sub>: 4.57 vs 7.22 μM), but its selectivity over α<sub>1</sub>-AR was significantly improved. Compared with <b>Tam</b>, the potency of compound <b>10</b> against α<sub>1A</sub>-, α<sub>1B</sub>-, and α<sub>1D</sub>-AR decreased by 118-fold, 642-fold, and 10,000-fold, respectively. …”
  10. 1930

    Discovery of Tamsulosin Derivatives with Shifted Selectivity from the α<sub>1</sub>‑Adrenergic Receptor to ANO1 as Potent Antiosteoporotic Agents by Chaoquan Tian (21009122)

    Published 2025
    “…The potency of compound <b>10</b> against ANO1 was comparable to that of <b>Tam</b> (IC<sub>50</sub>: 4.57 vs 7.22 μM), but its selectivity over α<sub>1</sub>-AR was significantly improved. Compared with <b>Tam</b>, the potency of compound <b>10</b> against α<sub>1A</sub>-, α<sub>1B</sub>-, and α<sub>1D</sub>-AR decreased by 118-fold, 642-fold, and 10,000-fold, respectively. …”
  11. 1931

    Discovery of Tamsulosin Derivatives with Shifted Selectivity from the α<sub>1</sub>‑Adrenergic Receptor to ANO1 as Potent Antiosteoporotic Agents by Chaoquan Tian (21009122)

    Published 2025
    “…The potency of compound <b>10</b> against ANO1 was comparable to that of <b>Tam</b> (IC<sub>50</sub>: 4.57 vs 7.22 μM), but its selectivity over α<sub>1</sub>-AR was significantly improved. Compared with <b>Tam</b>, the potency of compound <b>10</b> against α<sub>1A</sub>-, α<sub>1B</sub>-, and α<sub>1D</sub>-AR decreased by 118-fold, 642-fold, and 10,000-fold, respectively. …”
  12. 1932

    Table 1_Esmolol improves sepsis outcomes through cardiovascular and immune modulation.docx by Da Jing (404219)

    Published 2025
    “…Background<p>Sepsis poses significant mortality risks. Esmolol, a β1-adrenergic blocker, may improve outcomes through cardiovascular and immune modulation. …”
  13. 1933

    Supplementary Material for: Healing Diabetic Foot Ulcers with Topical Timolol Improves Healed Epithelial Integrity by figshare admin karger (2628495)

    Published 2025
    “…The use of a wheelchair was also associated with a significant decrease in transepidermal water loss (Estimate = -7.7, p=0.01). …”
  14. 1934

    Improved antidiabetic potential of quercetin-loaded chitosan–lecithin nanoparticles for effective glycaemic control by Mohammad Zaki Ahmad (13117814)

    Published 2025
    “…Fasting blood glucose decreased from 292.9 to 107.7 mg/dL, along with improved lipid profiles.…”
  15. 1935
  16. 1936
  17. 1937
  18. 1938
  19. 1939

    Example of sample data. by Xiying Wang (4859998)

    Published 2025
    “…The results reveal that as the number of nodes in the hidden layer increases, the model’s Mean Squared Error (MSE) and Relative Error (RE) show a decreasing trend, indicating an improvement in model prediction accuracy. …”
  20. 1940

    Structure of BPNN. by Xiying Wang (4859998)

    Published 2025
    “…The results reveal that as the number of nodes in the hidden layer increases, the model’s Mean Squared Error (MSE) and Relative Error (RE) show a decreasing trend, indicating an improvement in model prediction accuracy. …”