Showing 3,521 - 3,540 results of 9,046 for search 'significantly ((((we decrease) OR (larger decrease))) OR (mean decrease))', query time: 0.32s Refine Results
  1. 3521

    Experimental timeline overview. by Leriana Garcia Reis (12646978)

    Published 2024
    “…Whereas continuous light increased gestation length and tended to increase PN litter growth. Here we report that patterns of grams of feed intake, an indicator of feeding activity, were affected by light, diet, period of the day (day versus night) and physiological state (gestation and lactation), with significant interactions among all these variables (P<0.05). …”
  2. 3522

    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. 3523

    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. 3524

    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. 3525

    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. 3526

    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). …”
  7. 3527

    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. 3528

    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. 3529

    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. 3530

    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. 3531

    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. 3532

    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). …”
  13. 3533

    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. 3534
  15. 3535
  16. 3536

    Effects of Ni<sup>2+</sup> on mitochondrial (A), glycolytic (B), and total (C) ATP production rates in BMDM. by Jesse Corbin (21736578)

    Published 2025
    “…An <i>F</i> test was used to determine if the slope was significantly different than zero. Data are presented as means ± SEM of 4 and 3 independent experiments for OCR and PER respectively, each performed with sextuplicate samples.…”
  17. 3537

    Effects of Ni<sup>2</sup><sup>+</sup> on the mitochondrial and glycolytic energy metabolism of BMDM. by Jesse Corbin (21736578)

    Published 2025
    “…A double dagger (‡) indicates a significant decrease of OCR (slope = −0.14 ± 0.04, <i>R</i><sup>2</sup> = 0.40, <i>F</i>(1, 22)=15.0, <i>p </i>< 0.001) from 0 to 72 ppm Ni<sup>2+</sup>. …”
  18. 3538
  19. 3539

    Heat map showing correlations between comet assay parameters, and warm and cold ischemia times. by Miroslava Jandová (22553132)

    Published 2025
    “…<p>Red values are significant at p < 0.05. Negative values mean that there is a “the more, the less” relationship between the quantities, i.e., as one quantity increases, the other quantity decreases. …”
  20. 3540

    Source data for Fig 2. by Qi Xu (134661)

    Published 2025
    “…Our <i>ex vivo</i> inhibition experiment revealed that L-kynurenine, a product of tryptophan metabolism, inhibits T-cell proliferation and induces T-cell apoptosis, further suppressing T-cell mediated responses against bacteria. Importantly, when we knocked out the <i>Ido1</i> gene or inhibited IDO1 expression using a specific inhibitor 1-MT in mice, we observed a significant enhancement in T-cell mediated responses against hv<i>Kp</i>. …”