Showing 6,981 - 7,000 results of 18,006 for search 'significantly ((((less decrease) OR (((teer decrease) OR (nn decrease))))) OR (a decrease))', query time: 0.65s Refine Results
  1. 6981

    Presentation 1_A framework for modeling county-level COVID-19 transmission.pdf by Yida Bao (15255682)

    Published 2025
    “…We then use Moran's I to evaluate spatial clustering, prompting Spatial Autoregressive and Spatial Error Models when autocorrelation is significant. Notably, spatial models outperform the Ordinary Least Squares approach—R<sup>2</sup> rises from 0.4849 with Ordinary Least Squares to 0.6846 under Spatial Error Model, while RMSE decreases from 2.0891 to 1.642—demonstrating improved fit and more accurate spatial transmission dynamics. …”
  2. 6982

    The efficacy of topical 8% capsaicin patches for the treatment of postsurgical neuropathic pain: a systematic review by Brandon Goodwin (20328988)

    Published 2024
    “…All studies that investigated neuropathic pain area denote a decrease in pain size, with some denoting a continued reduction with subsequent application.…”
  3. 6983
  4. 6984
  5. 6985
  6. 6986
  7. 6987

    Data set from the 2022 study. by Peter Sandøe (553063)

    Published 2025
    “…However, the number of cats living in residential homes nearly doubled, and, correspondingly, there was also a significant increase in the proportion of cats with indoor access. …”
  8. 6988
  9. 6989

    <i>Rab23</i> deletion perturbs ciliation in a context-dependent manner. by Wan Ying Leong (22075947)

    Published 2025
    “…A significant two-fold reduction in the number of primary cilia is observed in the cerebral cortex of actin-CKO mouse embryos. …”
  10. 6990

    Table 1_Obinutuzumab in systemic lupus erythematosus: a real-world experience.docx by Chunmei Wu (3202050)

    Published 2025
    “…Objectives<p>To describe the real-world efficacy and safety of obinutuzumab in a heterogeneous systemic lupus erythematosus (SLE) population, including severe or refractory manifestations.…”
  11. 6991
  12. 6992
  13. 6993
  14. 6994
  15. 6995
  16. 6996
  17. 6997
  18. 6998
  19. 6999
  20. 7000

    PARP9 knockdown promotes apoptosis and DNA damage. by Yating Li (1819822)

    Published 2024
    “…<p>(A) Gene Set Enrichment Analysis (GSEA) was conducted to identify the major enriched pathways of differentially expressed genes following PARP9 downregulation. …”