Showing 65,561 - 65,580 results of 101,677 for search '(( 5 ((c decrease) OR (a decrease)) ) OR ( 5 ((teer decrease) OR (mean decrease)) ))', query time: 1.87s Refine Results
  1. 65561

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  2. 65562

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  3. 65563

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  4. 65564

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  5. 65565

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  6. 65566

    Table_1_Safety assessment of high doses of vaporized oxalic acid on honey bee worker health and queen quality.docx by Emilio Enrique Tellarini Prieto (19336840)

    Published 2024
    “…</p>Results<p>We found that colonies treated with 20 g OA (20 times the label dose) had a statistically significant increase in worker bee mortality, with a non-significant, 23% decrease in brood relative to controls. …”
  7. 65567

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  8. 65568

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  9. 65569

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  10. 65570

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  11. 65571

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  12. 65572

    The Cellular and Molecular Basis of Bitter Tastant-Induced Bronchodilation by Cheng-Hai Zhang (385288)

    Published 2013
    “…Interestingly, they increase global intracellular [Ca<sup>2+</sup>]<sub>i</sub>, although to a much lower level than bronchoconstrictors. We show that these Ca<sup>2+</sup> changes in cells at rest are mediated via activation of the canonical bitter taste signaling cascade (i.e., TAS2R-gustducin-phospholipase Cβ [PLCβ]- inositol 1,4,5-triphosphate receptor [IP3R]), and are not sufficient to impact airway contractility. …”
  13. 65573

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  14. 65574

    Tandem Imaging of Breath Ethanol and Acetaldehyde Based on Multiwavelength Enzymatic Biofluorometry by Kenta Iitani (4175995)

    Published 2024
    “…Reduction of AcH by ADH<sub>RD</sub> consumed NADH, leading to a decrease in blue fluorescence (ex. 340 nm, fl. 490 nm). …”
  15. 65575

    Minimum number of receptors required for stable binding and the influence of receptor diffusion on binding. by Oliwia M. Szklarczyk (485214)

    Published 2013
    “…(<b>B</b>) The mean number of stably bound receptors decreases with decreasing diffusivity of the receptors. …”
  16. 65576

    Table_1_Meta-Analysis of Dyslipidemia Management for the Prevention of Ischemic Stroke Recurrence in China.DOCX by Kang-Ning Chen (9659927)

    Published 2020
    “…</p><p>Conclusions: Effective lipid-lowering therapy could decrease the blood LDL-C level, which had a protective effect against stroke recurrence. …”
  17. 65577
  18. 65578

    Comparison of the fraction of positive relations for different behavioral updating. by Xiaochen He (455300)

    Published 2018
    “…<p>The simulation is carried out 10 times on a random network consisting of 100 nodes with average network connectivity 〈<i>k</i>〉 = 4. …”
  19. 65579

    Enhanced megakaryopoiesis and thrombopoieisis after DT-mediated MK ablation. by Catherine Angénieux (145933)

    Published 2016
    “…(<b>A</b>) PLT counts of saline- and DT-treated mice (n = 5 and 20, respectively) were measured on day 7 and 8. …”
  20. 65580

    Enols of Substituted Cyanomalonamides by Ahmad Basheer (1914646)

    Published 2007
    “…Similar tendency for either the CC/CC or the C−O/CO bonds was observed. This is ascribed to a hydrogen shift between two regioisomeric enols in an asymmetric double-well potential, which becomes faster at a higher temperature. …”