Showing 541 - 560 results of 593 for search '(( significant decrease decrease ) OR ( significant ((fold decrease) OR (a decrease)) ))~', query time: 0.39s Refine Results
  1. 541

    Data Sheet 8_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  2. 542

    Data Sheet 5_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  3. 543

    Data Sheet 1_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  4. 544

    Data Sheet 7_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  5. 545

    Data Sheet 3_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  6. 546

    Table 1_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.xlsx by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  7. 547

    Data Sheet 6_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  8. 548

    Data Sheet 2_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  9. 549

    Data Sheet 10_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  10. 550

    Data Sheet 9_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  11. 551

    Data Sheet 4_Assessing the disease burden of lower respiratory infections attributable to particulate matter pollution: trends from 1990 to 2021 and projections for 2022-2050.pdf by Erman Wu (19021269)

    Published 2025
    “…Background<p>Particulate matter pollution (PMP) remains a leading risk factor for lower respiratory infections (LRIs) globally. …”
  12. 552

    Protein and gene expression levels of p62 and LC3B in miR-7974 mimic-transfected MCF-7 cells. by Stralina Eneh (21213312)

    Published 2025
    “…Representative western blots were cropped from respective western blot images for the protein of interest and grouped together. <b>(B)</b> The fold change of p62 and <b>(C)</b> LC3BI between negative control/cell-only samples and miR-7974-treated samples were statistically significant. …”
  13. 553

    Table1_Trp-574-Leu and the novel Pro-197-His/Leu mutations contribute to penoxsulam resistance in Echinochloa crus-galli (L.) P. Beauv..docx by Penglei Sun (18343673)

    Published 2024
    “…The whole-plant dose–response testing of E. crus-galli to penoxsulam confirmed the evolution of moderate-level resistance in two populations, JL-R (9.88-fold) and HLJ-R (8.66-fold), and a high-level resistance in AH-R (59.71-fold) population. …”
  14. 554

    CCDC66 localizes to the axoneme and regulates primary cilium stability but not cilia formation in IMCD3 cells. by Jovana Deretic (13113617)

    Published 2025
    “…The mean cilia length in CCDC66-depleted cells decreased to 0.67-fold compared to the mean control length. …”
  15. 555

    Comparison of 3D culture systems on mesenchymal stem cell longevity, regenerative potential, and secretome production by Jacob Hodge (2699521)

    Published 2025
    “…</p> <p>Bio-Block ASCs exhibited ~2-fold higher proliferation than spheroid and Matrigel groups, with senescence reduced 30–37% and apoptosis decreased 2–3-fold. …”
  16. 556

    Figure 2 from Distant Metastases of Breast Cancer Resemble Primary Tumors in Cancer Cell Composition but Differ in Immune Cell Phenotypes by Laura Kuett (20493991)

    Published 2025
    “…<b>D,</b> Tumor cell phenotypic cluster enrichment in each metastatic patient group compared with average metastasis composition by differential abundance testing. Circles display significantly enriched (red) or decreased (blue; FDR < 0.05; multiple testing correction with the Benjamin–Hochberg method) results, with size indicating the log-transformed fold change.…”
  17. 557

    Figure 6 from Distant Metastases of Breast Cancer Resemble Primary Tumors in Cancer Cell Composition but Differ in Immune Cell Phenotypes by Laura Kuett (20493991)

    Published 2025
    “…<b>F</b> and <b>G,</b> Immune cell phenotypic cluster enrichment in each clinical breast cancer subtype (<b>F</b>) or metastasis-defined patient group (<b>G</b>) at metastatic sites compared with average metastasis composition by differential abundance testing. Circles display significantly enriched (red) or decreased (blue; FDR < 0.05; multiple testing correction with the Benjamin–Hochberg method) results, with size indicating the log-transformed fold change.  …”
  18. 558

    PRMT5 isoforms during zebrafish developmental stages by Zain Zakaria (20354028)

    Published 2024
    “…Western blot analysis revealed that Prmt5 protein expression can be detected as early as 6 hrs post-fertilization (hpf), gradually increases 9.3-fold by 18 hpf, and decreases 2 to 3-fold between 24 and 72 hpf.…”
  19. 559

    Molecular signatures underlying multisensory gamma stimulation-associated cognitive benefits in the hippocampus. by Md Rezaul Islam (19649494)

    Published 2025
    “…<p><b>A)</b> Experimental scheme for the single nuclei RNA-seq experiment in Ts65Dn mice <b>B)</b> Unbiased clustering of hippocampal snRNA-seq data for 15884 nuclei represented on a UMAP. …”
  20. 560

    Image 1_Prevention of chemotherapy drug-mediated human hair follicle damage: combined use of cooling with antioxidant suppresses oxidative stress and prevents matrix keratinocyte c... by Khalidah Ibraheem (9525220)

    Published 2025
    “…Optimal cooling at 18°C rescued cell viability, significantly (p < 0.001) restored HF proliferation (42% Ki-67+ cells) and pigmentation, suppressed apoptosis (10% TUNEL+ cells), restored anagen (∼70%) and induced a 2-3-fold increase in hair shaft elongation (p < 0.001), whereas cooling at 26°C was only partially effective. …”