Showing 381 - 400 results of 21,342 for search '(( significant decrease decrease ) OR ( significant ((all decrease) OR (a decrease)) ))*', query time: 0.70s Refine Results
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    Image 2_G. vaginalis increases HSV-2 infection by decreasing vaginal barrier integrity and increasing inflammation in vivo.tif by Nuzhat Rahman (16660416)

    Published 2024
    “…</p>Results<p>G. vaginalis inoculated mice infected with HSV-2 had significantly decreased survival rates, increased pathology, and higher viral titers than PBS and L. crispatus inoculated mice. …”
  3. 383

    Image 5_G. vaginalis increases HSV-2 infection by decreasing vaginal barrier integrity and increasing inflammation in vivo.tif by Nuzhat Rahman (16660416)

    Published 2024
    “…</p>Results<p>G. vaginalis inoculated mice infected with HSV-2 had significantly decreased survival rates, increased pathology, and higher viral titers than PBS and L. crispatus inoculated mice. …”
  4. 384

    Image 3_G. vaginalis increases HSV-2 infection by decreasing vaginal barrier integrity and increasing inflammation in vivo.tif by Nuzhat Rahman (16660416)

    Published 2024
    “…</p>Results<p>G. vaginalis inoculated mice infected with HSV-2 had significantly decreased survival rates, increased pathology, and higher viral titers than PBS and L. crispatus inoculated mice. …”
  5. 385

    Image 1_G. vaginalis increases HSV-2 infection by decreasing vaginal barrier integrity and increasing inflammation in vivo.tif by Nuzhat Rahman (16660416)

    Published 2024
    “…</p>Results<p>G. vaginalis inoculated mice infected with HSV-2 had significantly decreased survival rates, increased pathology, and higher viral titers than PBS and L. crispatus inoculated mice. …”
  6. 386

    Image 4_G. vaginalis increases HSV-2 infection by decreasing vaginal barrier integrity and increasing inflammation in vivo.tif by Nuzhat Rahman (16660416)

    Published 2024
    “…</p>Results<p>G. vaginalis inoculated mice infected with HSV-2 had significantly decreased survival rates, increased pathology, and higher viral titers than PBS and L. crispatus inoculated mice. …”
  7. 387

    Summary map of all contacts with statistically significant SVM classifications. by Alexander P. Rockhill (6053618)

    Published 2024
    “…Yellow indicates an increase in time-frequency clusters during number trials versus inter-trial intervals while blue indicates a decrease in time-frequency clusters. White regions in the plot indicate that no directional change occurred. …”
  8. 388

    Table 1_A novel α-conotoxin [D1G, ΔQ14] LvIC decreased mouse locomotor activity.xls by Wen Wang (6570)

    Published 2025
    “…</p>Conclusion<p>Our findings indicate that α-conotoxin [D1G, ΔQ14] LvIC significantly decreased locomotor activity in mice. Additionally, it altered gene expression primarily in areas related to neuronal development, synapse formation, and neuron activity, while also reducing synapse strength. …”
  9. 389

    Table 2_A novel α-conotoxin [D1G, ΔQ14] LvIC decreased mouse locomotor activity.xls by Wen Wang (6570)

    Published 2025
    “…</p>Conclusion<p>Our findings indicate that α-conotoxin [D1G, ΔQ14] LvIC significantly decreased locomotor activity in mice. Additionally, it altered gene expression primarily in areas related to neuronal development, synapse formation, and neuron activity, while also reducing synapse strength. …”
  10. 390

    Model A: Logistic structural model. by Abigail A. Lee (19935335)

    Published 2024
    “…Additionally, higher income slightly predicted decreased HPV vaccine hesitancy. All other latent variables and covariates were not significantly predictive of intent to vaccinate in the overall structural mode. …”
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    Placebo test. by Le Zhu (1771669)

    Published 2025
    Subjects:
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