Showing 8,781 - 8,800 results of 21,342 for search '(( significantly ((we decrease) OR (nn decrease)) ) OR ( significant decrease decrease ))', query time: 0.52s Refine Results
  1. 8781

    Factors affecting pyrethroid-LLINs integrity. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  2. 8782

    Factors associated with mosquito net integrity. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  3. 8783

    LLINs knockdown performance over time. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  4. 8784

    Factors affecting PBO-LLINs integrity. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  5. 8785

    Net bioefficacy data. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  6. 8786

    House structure and status. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  7. 8787

    LLINs hole positions over time. by Job Oyweri (22041452)

    Published 2025
    “…Net type, net age and house wall structures significantly influenced net integrity (p < 0.05). Torn nets were significantly more common in pyrethroid-LLIN households with mud-unplastered [OR=5.323 (95% CI = 1.685–16.816), p = 0.004] and corrugated iron walls [OR=6.31 (95% CI = 2.10–18.93), p < 0.001] and in PBO-LLIN households with mud-unplastered walls [OR=9.823 (95% CI = 1.487–64.898), p = 0.018]. …”
  8. 8788
  9. 8789
  10. 8790

    Effect of O-ag modifying glycosyltransferases on complement activation and <i>Salmonella</i> interactions with human serum. by Fermin E. Guerra (6084545)

    Published 2025
    “…<p>(A) O-ag modifications by glycosyltransferases in <i>S.</i> Paratyphi A decrease complement activation as measured by C5a release and (B) IgM binding. …”
  11. 8791
  12. 8792

    <i>rfbV</i> gene triplication in S. Paratyphi A increases VL O-ag production and reduces C3b deposition. by Fermin E. Guerra (6084545)

    Published 2025
    “…Increased VL O-ag production in <i>S.</i> Typhimurium decreases C3b binding, whereas L O-ag promotes C3b binding. …”
  13. 8793
  14. 8794
  15. 8795

    Soil disturbance cross-sectional model. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”
  16. 8796

    Test plan table. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”
  17. 8797

    Gas jet subsoiling model. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”
  18. 8798

    Schematic diagram of the airflow passage. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”
  19. 8799

    Variation in soil penetration resistance. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”
  20. 8800

    Supersonic gas jet subsoiler experiment. by Xia Li (14984)

    Published 2025
    “…Furthermore, the subsoiling effect was further improved as the working speed decreased and the frequency of air blasts increased, satisfying the subsoiling operation assessment standards. …”