Showing 8,481 - 8,500 results of 198,822 for search '(( i a decrease ) OR ( 5 ((((point decrease) OR (fold decrease))) OR (a decrease)) ))', query time: 3.26s Refine Results
  1. 8481

    Image1_Decreasing incidence and mortality of lung cancer in Hungary between 2011 and 2021 revealed by robust estimates reconciling multiple data sources.TIFF by Gabriella Gálffy (177759)

    Published 2024
    “…The COVID-19 pandemic resulted in a statistically significant decrease in lung cancer incidence, especially in the 50–59 age group (both sexes).…”
  2. 8482

    Effect of asymmetric (<i>a ≠ b</i>) and symmetric (<i>a  =  b</i>) parasites’ contribution to total virulence (V). by Sandeepa M. Eswarappa (156396)

    Published 2012
    “…<p>Given a pair of values (<i>a, b</i>) the contour lines in each figure represent the total virulence on the host (<i>V = aA*+bB*</i>) for different values of <i>x</i> (parasite B competition/facilitation of parasite A) and <i>y</i> (parasite A competition/facilitation of parasite B). …”
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  4. 8484

    DataSheet_1_Partial root-zone drying subsurface drip irrigation increased the alfalfa quality yield but decreased the alfalfa quality content.docx by Yadong Wang (82064)

    Published 2024
    “…PRDSDI significantly decreased the crude protein by 5.4% and 8.4% in 2018 with 10-mm and 20-mm irrigation volumes and relative feed value by 15.0% with 20-mm irrigation volume in 2017 and 9.8% with 10-mm irrigation volume in 2018, respectively. …”
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  7. 8487

    image1_Leonurine-Repressed miR-18a-5p/SOCS5/JAK2/STAT3 Axis Activity Disrupts CML malignancy.tif by Hui-Min Liu (3323370)

    Published 2021
    “…Notably, we observed that miR-18a-5p was remarkably increased in CML cells. Treating CML cells with leonurine significantly decreased miR-18a-5p expression. …”
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  12. 8492

    DataSheet_1_Novel mediator in anaphylaxis: decreased levels of miR-375-3p in serum and within extracellular vesicles of patients.docx by Emilio Nuñez-Borque (17301673)

    Published 2023
    “…Extracellular vesicles (EVs) were characterized by Western blot, electron microscopy and NanoSight. A decrease of miR-375-3p levels was determined by qPCR in both serum and EVs of patients with anaphylaxis (****p<.0001). …”
  13. 8493
  14. 8494

    Deficiency of G1 regulators P53, P21and/or pRb decreases hepatocyte sensitivity to TGFβ cell cycle arrest-2 by Sharon Sheahan (38663)

    Published 2011
    “…As for all experiments the -null hepatocytes were obtained by infection at the time of plating of the hepatocytes of corresponding genotypes with adenovirus expressing Cre recombinase. (1) all deficient hepatocytes respond less well to inhibition of proliferation by TGFβ than control cells and deficient has the strongest effect. (2) and deficiency, singly or together have a similar effect on inhibition of proliferation by TGFβ. (3) deletion significantly reduces TGFβ-induced cell cycle arrest regardless of and status (compare control with ; - with with - and with TRPL). (4) double deficiency in and further decreases hepatocytes responses to TGFβ in term of regulation of proliferation, independently of status. (5) by contrast the effect of TGFβ on hepatocytes deficient in both and is not significantly different to that of null cells, and this is independent of status. …”
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  18. 8498

    Additional file 3 of Single-cell profiling reveals a reduced epithelial defense system, decreased immune responses and the immune regulatory roles of different fibroblast subpopula... by Lin Lin (46073)

    Published 2025
    “…(B) Proportion of TLR-expressing C1Q+ macrophages in CAG and control samples. (C) Feature plot showing TLR expression levels in C1Q+ macrophages in CAG samples. …”
  19. 8499
  20. 8500

    Retinoic acid decreases ATF-2 phosphorylation and sensitizes melanoma cells to taxol-mediated growth inhibition-0 by Ying Huang (53474)

    Published 2011
    “…<p><b>Copyright information:</b></p><p>Taken from "Retinoic acid decreases ATF-2 phosphorylation and sensitizes melanoma cells to taxol-mediated growth inhibition"</p><p>http://www.jmolecularsignaling.com/content/3/1/3</p><p>Journal of Molecular Signaling 2008;3():3-3.…”