Showing 2,041 - 2,060 results of 9,050 for search 'significantly ((((we decrease) OR (((teer decrease) OR (mean decrease))))) OR (larger decrease))', query time: 0.42s Refine Results
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  9. 2049

    Ablation results. by Gang Xu (219455)

    Published 2025
    “…Evaluation on the ScanNetV2 multi-view 3D object detection dataset demonstrates that ImVoxelGNet achieves a performance improvement of up to 2.2% in mean average precision (mAP). This improvement effectively demonstrates the efficacy of our method in significantly enhancing 3D object detection performance through improved geometric perception and comprehensive scene understanding. …”
  10. 2050

    Anthelmintics Derived from the Kinase Inhibitor SGI-1776 for the Treatment of Gastrointestinal Worm Infections by Mostafa A. Elfawal (22430138)

    Published 2025
    “…The compounds’ physical properties were significantly predictive of their activity. <b>15</b> and <b>51</b> were the most potent against whipworm and showed decreased and no activity against human PIM kinases, suggesting increased selectivity against the GIN counterparts. …”
  11. 2051

    Underlying numerical data for Figs 1–7 and S1-S6. by Sreya Das (20531295)

    Published 2025
    “…We show that <i>PIF4</i> promoter activity is higher in the <i><i>pif4</i></i> mutant but significantly reduced in <i>PIF4</i> overexpression transgenic lines. …”
  12. 2052

    Complexity comparison results. by Gang Xu (219455)

    Published 2025
    “…Evaluation on the ScanNetV2 multi-view 3D object detection dataset demonstrates that ImVoxelGNet achieves a performance improvement of up to 2.2% in mean average precision (mAP). This improvement effectively demonstrates the efficacy of our method in significantly enhancing 3D object detection performance through improved geometric perception and comprehensive scene understanding. …”
  13. 2053

    Ablation results on Nerf-Det [28]. by Gang Xu (219455)

    Published 2025
    “…Evaluation on the ScanNetV2 multi-view 3D object detection dataset demonstrates that ImVoxelGNet achieves a performance improvement of up to 2.2% in mean average precision (mAP). This improvement effectively demonstrates the efficacy of our method in significantly enhancing 3D object detection performance through improved geometric perception and comprehensive scene understanding. …”
  14. 2054

    Ablation results on noise. by Gang Xu (219455)

    Published 2025
    “…Evaluation on the ScanNetV2 multi-view 3D object detection dataset demonstrates that ImVoxelGNet achieves a performance improvement of up to 2.2% in mean average precision (mAP). This improvement effectively demonstrates the efficacy of our method in significantly enhancing 3D object detection performance through improved geometric perception and comprehensive scene understanding. …”
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  16. 2056

    Raw metabolomic data. by Bhuripit Saraphol (20855573)

    Published 2025
    “…In this study, we compared the fecal microbiome and the untargeted fecal metabolome of normal (BCS ≥  3, n =  16) and thin (BCS <  3, n =  16) Holstein Friesian dairy cows. …”
  17. 2057

    Schematic diagram of the experimental workflow. by Bhuripit Saraphol (20855573)

    Published 2025
    “…In this study, we compared the fecal microbiome and the untargeted fecal metabolome of normal (BCS ≥  3, n =  16) and thin (BCS <  3, n =  16) Holstein Friesian dairy cows. …”
  18. 2058

    Study data. by Jie Liu (15128)

    Published 2025
    “…</p><p> Methods </p><p>We conducted a single-center, retrospective study during the COVID-19 outbreak in China, from December 7, 2022, to January 31, 2023. …”
  19. 2059

    Summary of clinical outcomes after 9 months. by Jie Liu (15128)

    Published 2025
    “…</p><p> Methods </p><p>We conducted a single-center, retrospective study during the COVID-19 outbreak in China, from December 7, 2022, to January 31, 2023. …”
  20. 2060

    Approval by the research ethics committee. by Jie Liu (15128)

    Published 2025
    “…</p><p> Methods </p><p>We conducted a single-center, retrospective study during the COVID-19 outbreak in China, from December 7, 2022, to January 31, 2023. …”