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Showing 961 - 980 results of 2,551 for search '(( dramatic decrease ) OR ((( small decrease ) OR ( automatic decrease ))))', query time: 0.36s Refine Results
  1. 961

    Image 3_The benefits and risks of adding PD-1/PD-L1 inhibitors to chemotherapy for stage IIIb-IV non-small-cell lung cancer: an updated meta-analysis based on phase 3 randomized co... by Yun Xu (139234)

    Published 2025
    “…Background<p>Previous research has confirmed that integrating PD-1/PD-L1 inhibitors with chemotherapy (PC) represents a more effective strategy for treating advanced non-small-cell lung cancer (NSCLC). However, with the increasing number of phase 3 randomized controlled trials (RCTs) published in recent years, it is essential to re-evaluate the validity of this conclusion and to comprehensively assess the efficacy and safety across diverse patient subgroups.…”
  2. 962

    Porosity Tuning in Soft-templated Mesoporous Silica: The Influence of Block Copolymer Composition and Concentration by Lysander Q. Wagner (17419267)

    Published 2025
    “…Electron tomography confirmed a spherical pore geometry and a systematic decrease in pore wall thickness upon increasing the template concentration (i.e., template-to-silica ratio) during soft templating. …”
  3. 963

    A novel RNN architecture to improve the precision of ship trajectory predictions by Martha Dais Ferreira (18704596)

    Published 2025
    “…This research proposes a new RNN architecture that decreases the prediction error up to 50% for cargo vessels when compared to the OU model. …”
  4. 964
  5. 965

    Mechanically Robust and Biodegradable Electrospun Membranes Made from Bioderived Thermoplastic Polyurethane and Polylactic Acid by Robert J. Chambers (19856799)

    Published 2024
    “…Blending TPU with PLA dramatically increases the strain at break of the PLA membrane, while the addition of PLA in TPU stiffens the material considerably. …”
  6. 966
  7. 967
  8. 968

    Raw data for main and supplemental figures by Runhua Han (20455670)

    Published 2025
    “…<p dir="ltr">ProQ has recently emerged as a major post-transcriptional regulator in bacteria through directly binding to diverse mRNAs and small non-coding RNAs (sRNAs). However, the impact of ProQ in many pathogenic bacteria remains poorly understood. …”
  9. 969
  10. 970

    HG module schematic. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  11. 971

    Label data volume and label distribution. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  12. 972

    The structure of the context guided block. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  13. 973

    SEnet module. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  14. 974

    AC-LayeringNetV2 architecture module. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  15. 975

    Cracks included in the dataset. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  16. 976

    Loss function comparison plot. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  17. 977

    Edge device performance benchmarking. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  18. 978

    Typical error cases. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  19. 979

    Computational efficiency comparison. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”
  20. 980

    Backbone comparison in crack detection. by Wenhao Ren (2561731)

    Published 2025
    “…Additionally, the model achieves a 6.55% reduction in size and a 0.03% decrease in computational complexity. These results highlight the practical applicability and efficiency of the proposed approach for automatic crack detection in building structures, emphasizing the novel integration of feature fusion and attention mechanisms to address challenges in real-time and high-accuracy detection of micro-cracks in complex environments.…”