Showing 11,621 - 11,640 results of 19,405 for search '(( 59 ((0 decrease) OR (a decrease)) ) OR ( 50 ((we decrease) OR (nn decrease)) ))', query time: 1.06s Refine Results
  1. 11621
  2. 11622

    Diversity, distribution and dynamics of large trees across an old-growth lowland tropical rain forest landscape by David B. Clark (7846700)

    Published 2019
    “…We censused all large trees in 238 0.50 ha plots, and also identified and measured all stems ≥10 cm diameter in 18 0.50 ha plots annually for 20 years (1997–2017). …”
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  11. 11631
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  14. 11634

    Experimental verification of model predictions. by Mphatso Kalemera (6476033)

    Published 2019
    “…We used the model to predict the outcome of the experiment; in 3.2x CD81 over-expressing cells we expect that complete blockade of SR-B1 inhibits infection by ~50%, compared to ~80% inhibition for unmodified cells. …”
  15. 11635
  16. 11636

    Effects of feed allowance and indispensable amino acid reduction on feed intake, growth performance and carcass characteristics of growing pigs by Stefano Schiavon (715026)

    Published 2018
    “…Pigs were slaughtered at 144 kg BW. Restricted feeding decreased feed intake (-7%), daily gain (-5%), carcass weight (-2.6%) and back-fat depth (-8.0%) but increased gain:feed ratio (+2%). …”
  17. 11637
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  19. 11639

    DataSheet_1_Multipotent mesenchymal stromal cells as treatment for poor graft function after allogeneic hematopoietic cell transplantation: A multicenter prospective analysis.pdf by Sophie Servais (534177)

    Published 2023
    “…Corresponding response rates increased to 67% (95% CI, 50 - 84%) OR and 53% (95% CI, 35 - 71%) CR within 180 days after MSC infusion. …”
  20. 11640

    DataSheet_1_Annexin A2 regulates Mycoplasma bovis adhesion and invasion to embryo bovine lung cells affecting molecular expression essential to inflammatory response.zip by Hui Zhang (7197)

    Published 2022
    “…We concluded that M. bovis borrowed host ANXA2 to mediate its adhesion and invasion thereby negatively regulating molecular expression essential to IL-17 signal pathway. …”