Showing 1,581 - 1,600 results of 103,630 for search '(( e point decrease ) OR ( 5 ((((we decrease) OR (a decrease))) OR (nn decrease)) ))', query time: 1.37s Refine Results
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    Identifying radiation-induced survivorship syndromes affecting bowel health in a cohort of gynecological cancer survivors by Gunnar Steineck (226792)

    Published 2017
    “…<div><p>Background</p><p>During radiotherapy unwanted radiation to normal tissue surrounding the tumor triggers survivorship diseases; we lack a nosology for radiation-induced survivorship diseases that decrease bowel health and we do not know which symptoms are related to which diseases.…”
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    DataSheet_1_Inherited Tolerance in Cattle to the Apicomplexan Protozoan Theileria parva is Associated with Decreased Proliferation of Parasite-Infected Lymphocytes.docx by Perle Latre de Late (11497924)

    Published 2021
    “…We reveal here that first- and second-generation descendants of a single Bos indicus bull survived severe challenge with T. parva, (overall survival rate 57.3% compared to 8.7% for unrelated animals) in a series of five field studies. …”
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    Influence of Thiolate Ligands on Reductive N−O Bond Activation. Probing the O<sub>2</sub><sup>−</sup> Binding Site of a Biomimetic Superoxide Reductase Analogue and Examining the P... by Gloria Villar-Acevedo (2232583)

    Published 2011
    “…Like NO-bound <i>trans</i>-cysteinate-ligated SOR (SOR-NO), the rhombic <i>S</i> = 3/2 EPR signal of NO-bound <i>cis</i>-thiolate-ligated [Fe(S<sup>Me<sub>2</sub></sup>N<sub>4</sub>(tren)(NO)]<sup>+</sup> (<b>2</b>; <i>g</i> = 4.44, 3.54, 1.97), the isotopically sensitive ν<sub>NO</sub>(ν<sub><sup>15</sup>NO</sub>) stretching frequency (1685(1640) cm<sup>−1</sup>), and the 0.05 Å decrease in Fe−S bond length are shown to be consistent with <i>the oxidative addition of NO to Fe(II)</i> to afford an Fe(III)−NO<sup>−</sup> {FeNO}<sup>7</sup> species containing high-spin (<i>S</i> = 5/2) Fe(III) antiferromagnetically coupled to NO<sup>−</sup> (<i>S</i> = 1). …”
  11. 1591

    Influence of Thiolate Ligands on Reductive N−O Bond Activation. Probing the O<sub>2</sub><sup>−</sup> Binding Site of a Biomimetic Superoxide Reductase Analogue and Examining the P... by Gloria Villar-Acevedo (2232583)

    Published 2011
    “…Like NO-bound <i>trans</i>-cysteinate-ligated SOR (SOR-NO), the rhombic <i>S</i> = 3/2 EPR signal of NO-bound <i>cis</i>-thiolate-ligated [Fe(S<sup>Me<sub>2</sub></sup>N<sub>4</sub>(tren)(NO)]<sup>+</sup> (<b>2</b>; <i>g</i> = 4.44, 3.54, 1.97), the isotopically sensitive ν<sub>NO</sub>(ν<sub><sup>15</sup>NO</sub>) stretching frequency (1685(1640) cm<sup>−1</sup>), and the 0.05 Å decrease in Fe−S bond length are shown to be consistent with <i>the oxidative addition of NO to Fe(II)</i> to afford an Fe(III)−NO<sup>−</sup> {FeNO}<sup>7</sup> species containing high-spin (<i>S</i> = 5/2) Fe(III) antiferromagnetically coupled to NO<sup>−</sup> (<i>S</i> = 1). …”
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    Alternate Wetting and Drying Limits Arsenic in Porewater and Rice Grain under Severe Future Climate Conditions by Aria H. Duncan (22445853)

    Published 2025
    “…Grain total As concentrations decreased by 1.5× with AWD under a 33 °C climate and by 1.3× under a 38 °C climate. …”
  18. 1598

    Alternate Wetting and Drying Limits Arsenic in Porewater and Rice Grain under Severe Future Climate Conditions by Aria H. Duncan (22445853)

    Published 2025
    “…Grain total As concentrations decreased by 1.5× with AWD under a 33 °C climate and by 1.3× under a 38 °C climate. …”
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    Alternate Wetting and Drying Limits Arsenic in Porewater and Rice Grain under Severe Future Climate Conditions by Aria H. Duncan (22445853)

    Published 2025
    “…Grain total As concentrations decreased by 1.5× with AWD under a 33 °C climate and by 1.3× under a 38 °C climate. …”
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    Alternate Wetting and Drying Limits Arsenic in Porewater and Rice Grain under Severe Future Climate Conditions by Aria H. Duncan (22445853)

    Published 2025
    “…Grain total As concentrations decreased by 1.5× with AWD under a 33 °C climate and by 1.3× under a 38 °C climate. …”