Showing 1,061 - 1,080 results of 133,719 for search '(( 5 ((((nn decrease) OR (point decrease))) OR (a decrease)) ) OR ( 2 c decrease ))', query time: 1.92s Refine Results
  1. 1061

    Decreased IL-7 responses in ICL. by Florence Bugault (278171)

    Published 2013
    “…A dose dependent response is observed, with a higher pSTAT5 expression at high IL-7 dose (2 nM) than at low IL-7 dose (20 pM). …”
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    Image_2_Loss of early B cell protein λ5 decreases bone mass and accelerates skeletal aging.jpeg by Mohamed Khass (695111)

    Published 2023
    “…To investigate the effect of λ5 and/or B cells on bone acquisition over time, we developed a panel of J<sub>H</sub><sup>-/-</sup>, λ5<sup>-/-</sup>, J<sub>H</sub><sup>-/-</sup> λ5<sup>-/-</sup>, and wild-type (WT) BALB/c mice and then studied postnatal bone development and aging in these mice at one, six, twelve, and twenty-two months of age. …”
  4. 1064

    Image_2_Loss of early B cell protein λ5 decreases bone mass and accelerates skeletal aging.jpeg by Mohamed Khass (695111)

    Published 2022
    “…To investigate the effect of λ5 and/or B cells on bone acquisition over time, we developed a panel of J<sub>H</sub><sup>-/-</sup>, λ5<sup>-/-</sup>, J<sub>H</sub><sup>-/-</sup> λ5<sup>-/-</sup>, and wild-type (WT) BALB/c mice and then studied postnatal bone development and aging in these mice at one, six, twelve, and twenty-two months of age. …”
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    At lower concentrations, METH decreases LTP. by Jarod Swant (246454)

    Published 2010
    “…At 0.1 µM METH, LTP was 1.58±.08 [<i>n</i> = 13(5)] (Fig. 1B); at 1 µM METH, LTP was 1.50±.07 [<i>n</i> = 13(7)] (Fig. 1C); at 10 µM METH, LTP was 1.58±.07 [<i>n</i> = 14(8)] (Fig. 1D); at 30 µM METH, LTP was 1.37±.06 [<i>n</i> = 15(4)] (Fig. 1E); and at 60 µM METH, LTP was 1.32±.24 [<i>n</i> = 4(2)] (Fig. 1E). …”
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    Global Land Use Change Impacts on Soil Nitrogen Availability and Environmental Losses by Jing Wang (6206297)

    Published 2025
    “…However, how global land use changes impact soil N supply and potential N loss remains elusive. By compiling a global data set of 1,782 paired observations from 185 publications, we show that land use conversion from natural to managed ecosystems significantly reduced NNM by 7.5% (−11.5, −2.8%) and increased NN by 150% (86, 194%), indicating decreasing N availability while increasing potential N loss through denitrification and nitrate leaching. …”
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