Showing 1,601 - 1,620 results of 7,971 for search 'significantly ((((((less decrease) OR (larger decrease))) OR (greater decrease))) OR (we decrease))', query time: 0.45s Refine Results
  1. 1601

    Summary of previous work. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  2. 1602

    Comparison of MAP@0.5 results from experiments. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  3. 1603

    YOLO11. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  4. 1604

    Structure of the SCI-YOLO11 network. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  5. 1605

    Comparative experimental results. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  6. 1606

    Algorithm operation steps. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  7. 1607

    SCI-YOLO11. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  8. 1608

    Dataset for insulator defect detection. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  9. 1609

    YOLOV8. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  10. 1610

    Faster-RCNN. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  11. 1611

    Results of ablation experiments. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  12. 1612

    Structure diagram of SPDConv. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  13. 1613

    Wise-IOU regression diagram. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  14. 1614

    Visualization of detection results. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  15. 1615

    Structure diagram of the SE attention mechanism. by Junyan Wang (4738518)

    Published 2025
    “…However, small object detection faces numerous challenges, such as significant difficulty, substantial interference from complex backgrounds, and inconsistent annotation quality. …”
  16. 1616

    Path diagram of the 2-factor CFA analysis. by Vincenza Tarantino (182506)

    Published 2024
    “…<div><p>Sensory habituation allows us to decrease responsiveness to repetitive or prolonged stimuli over time, making them easy to filter out and not interfere with ongoing activities. …”
  17. 1617

    Optically-Directed Bubble Printing of MXenes on Flexible Substrates toward MXene-Enabled Wearable Electronics and Strain Sensors by Marcel Herber (10526401)

    Published 2025
    “…In addition, narrower MXene lines exhibited greater strain sensitivity, while broader lines were more robust. …”
  18. 1618

    Colored Gold Ions Enabled High-Transparent and Low-Haze Cellulose Films with Excellent Flame-Retardant and UV to Blue Light-Blocking Performance by Qiu Fu (10830823)

    Published 2025
    “…Quite encouragingly, the incorporation of Au<sup>3+</sup> facilitates films in achieving desirable flame retardancy, evidenced by a significant increase in the limiting oxygen index from 19.2% to 39.2%. …”
  19. 1619

    Colored Gold Ions Enabled High-Transparent and Low-Haze Cellulose Films with Excellent Flame-Retardant and UV to Blue Light-Blocking Performance by Qiu Fu (10830823)

    Published 2025
    “…Quite encouragingly, the incorporation of Au<sup>3+</sup> facilitates films in achieving desirable flame retardancy, evidenced by a significant increase in the limiting oxygen index from 19.2% to 39.2%. …”
  20. 1620

    Colored Gold Ions Enabled High-Transparent and Low-Haze Cellulose Films with Excellent Flame-Retardant and UV to Blue Light-Blocking Performance by Qiu Fu (10830823)

    Published 2025
    “…Quite encouragingly, the incorporation of Au<sup>3+</sup> facilitates films in achieving desirable flame retardancy, evidenced by a significant increase in the limiting oxygen index from 19.2% to 39.2%. …”