Showing 17,721 - 17,740 results of 65,719 for search '(( 2 d decrease ) OR ( 50 ((((ms decrease) OR (a decrease))) OR (nn decrease)) ))', query time: 1.44s Refine Results
  1. 17721

    Data_Sheet_1_Forming Olivine Phenocrysts in Basalt: A 3D Characterization of Growth Rates in Laboratory Experiments.docx by Adrien J. Mourey (7870853)

    Published 2019
    “…Growth rates estimated via 3D microtomography renderings of experimental crystals attain 10<sup>–7</sup> m/s, and are found to be almost an order of magnitude higher than those calculated using 2D sections of the same experiments. …”
  2. 17722
  3. 17723

    Image_3_Changes in synaptic inputs to dI3 INs and MNs after complete transection in adult mice.TIF by Sara Goltash (16493367)

    Published 2023
    “…Levels of VGLUT2<sup>+</sup> inputs to dI3 INs and MNs may show transient increases but fall below levels seen in sham-operated mice after a period of time. …”
  4. 17724

    Image_1_Changes in synaptic inputs to dI3 INs and MNs after complete transection in adult mice.tif by Sara Goltash (16493367)

    Published 2023
    “…Levels of VGLUT2<sup>+</sup> inputs to dI3 INs and MNs may show transient increases but fall below levels seen in sham-operated mice after a period of time. …”
  5. 17725

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  6. 17726

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  7. 17727

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  8. 17728

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  9. 17729

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  10. 17730

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  11. 17731
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  16. 17736
  17. 17737

    DataSheet1_ProDiVis: a method to normalize fluorescence signal localization in 3D specimens.pdf by Kyle T. Nguyen (19723936)

    Published 2024
    “…<p>A common problem in confocal microscopy is the decrease in intensity of excitation light and emission signal from fluorophores as they travel through 3D specimens, resulting in decreased signal detected as a function of depth. …”
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