Showing 101,321 - 101,340 results of 121,949 for search '(( 2 e decrease ) OR ( 5 ((((point decrease) OR (fold decrease))) OR (a decrease)) ))', query time: 2.04s Refine Results
  1. 101321

    Data_Sheet_1_Comparison of the effects of rumen-protected and unprotected L-leucine on fermentation parameters, bacterial composition, and amino acids metabolism in in vitro rumen... by Jishan An (17436939)

    Published 2023
    “…Correlation analysis indicated that there are 5 bacteria at the genus level that may be positively correlated with MCP and propionate (p < 0.05). …”
  2. 101322

    Pathotype and Genetic Diversity amongst Indian Isolates of <i>Xanthomonas oryzae</i> pv. <i>oryzae</i> by Deo Mishra (491213)

    Published 2013
    “…A rice line with <i>xa5, xa13</i> and <i>Xa21</i> resistance genes is resistant to all strains, including those belonging to pathotype XI. …”
  3. 101323

    Data_Sheet_1_Genetic Predisposition to Low-Density Lipoprotein Cholesterol May Increase Risks of Both Individual and Familial Alzheimer's Disease.DOCX by Jiang-Shan Tan (11584507)

    Published 2022
    “…</p><p>Conclusions: High level of LDL-C may increase the risks of both individual and familial AD. Decreasing the LDL-C to a reasonable level may help to reduce the related risk.…”
  4. 101324

    Effects of extracts on body weight. by Srabonti Saha (17452756)

    Published 2025
    “…Protective activity against DNA damage was assessed using a method that induces damage with a Fenton reagent. …”
  5. 101325

    The composition of milk used with the treatment. by Srabonti Saha (17452756)

    Published 2025
    “…Protective activity against DNA damage was assessed using a method that induces damage with a Fenton reagent. …”
  6. 101326

    Image_2_Genetic Predisposition to Low-Density Lipoprotein Cholesterol May Increase Risks of Both Individual and Familial Alzheimer's Disease.TIF by Jiang-Shan Tan (11584507)

    Published 2022
    “…</p><p>Conclusions: High level of LDL-C may increase the risks of both individual and familial AD. Decreasing the LDL-C to a reasonable level may help to reduce the related risk.…”
  7. 101327

    Table 1_Bacteroides ovatus-derived N-methylserotonin inhibit colorectal cancer via the HTR1D-mediated cAMP-PKA-NF-κB signaling axis.docx by Jikai He (11888466)

    Published 2025
    “…</p>Methods<p>(1) Fecal samples from CRC patients (n=26) and healthy controls (n=20) were collected for metagenomic sequencing and untargeted metabolomics analysis; (2) The ability of B.o to produce NMS from orange fiber was validated in vitro; (3) A CRC mouse model was established using azoxymethane (AOM)/dextran sulfate sodium (DSS) induction, followed by evaluation of body weight, rectal bleeding, colorectal length, tumor number, and intestinal barrier function; (4) Network pharmacology, molecular docking, and western blot analysis were combined to verify the mechanism of action; (5) 16S rRNA sequencing was performed to analyze gut microbiota changes.…”
  8. 101328

    Early Phthalates Exposure in Pregnant Women Is Associated with Alteration of Thyroid Hormones by Po-Chin Huang (762850)

    Published 2016
    “…Median MnBP and MECPP levels in pregnant Taiwanese women were 21.5 and 17.6 μg/g-creatinine, respectively, that decreased after the 2011 Taiwan DEHP scandal. …”
  9. 101329

    DNA damage protecting effects of MEExCC. by Srabonti Saha (17452756)

    Published 2025
    “…Protective activity against DNA damage was assessed using a method that induces damage with a Fenton reagent. …”
  10. 101330

    Table 2_Bacteroides ovatus-derived N-methylserotonin inhibit colorectal cancer via the HTR1D-mediated cAMP-PKA-NF-κB signaling axis.xlsx by Jikai He (11888466)

    Published 2025
    “…</p>Methods<p>(1) Fecal samples from CRC patients (n=26) and healthy controls (n=20) were collected for metagenomic sequencing and untargeted metabolomics analysis; (2) The ability of B.o to produce NMS from orange fiber was validated in vitro; (3) A CRC mouse model was established using azoxymethane (AOM)/dextran sulfate sodium (DSS) induction, followed by evaluation of body weight, rectal bleeding, colorectal length, tumor number, and intestinal barrier function; (4) Network pharmacology, molecular docking, and western blot analysis were combined to verify the mechanism of action; (5) 16S rRNA sequencing was performed to analyze gut microbiota changes.…”
  11. 101331

    Image_4_Genetic Predisposition to Low-Density Lipoprotein Cholesterol May Increase Risks of Both Individual and Familial Alzheimer's Disease.TIF by Jiang-Shan Tan (11584507)

    Published 2022
    “…</p><p>Conclusions: High level of LDL-C may increase the risks of both individual and familial AD. Decreasing the LDL-C to a reasonable level may help to reduce the related risk.…”
  12. 101332

    Effects of extracts on organs weight. by Srabonti Saha (17452756)

    Published 2025
    “…Protective activity against DNA damage was assessed using a method that induces damage with a Fenton reagent. …”
  13. 101333

    DNA damage protecting effects of PEExCC. by Srabonti Saha (17452756)

    Published 2025
    “…Protective activity against DNA damage was assessed using a method that induces damage with a Fenton reagent. …”
  14. 101334

    Image_1_Genetic Predisposition to Low-Density Lipoprotein Cholesterol May Increase Risks of Both Individual and Familial Alzheimer's Disease.TIF by Jiang-Shan Tan (11584507)

    Published 2022
    “…</p><p>Conclusions: High level of LDL-C may increase the risks of both individual and familial AD. Decreasing the LDL-C to a reasonable level may help to reduce the related risk.…”
  15. 101335

    Long-term effects of soil warming on soil respiration in subtropical and temperate forests by yanchun liu (19650631)

    Published 2024
    “…<p dir="ltr">we experimentally warmed the surface soil of a subtropical (ST) and a warm temperate forest (WT) by ~ 1.5°C from 2012 to 2022 and compared the differences in SR, chemical stability of SOM, and microbial community composition between the two sites. …”
  16. 101336

    C−O Coupling of LPt<sup>IV</sup>Me(OH)X Complexes in Water (X = <sup>18</sup>OH, OH, OMe; L = di(2-pyridyl)methane sulfonate) by Julia R. Khusnutdinova (1619044)

    Published 2020
    “…In <sup>18</sup>O-labeled water a mixture of two isotopologous methanols, Me<sup>18</sup>OH and Me<sup>16</sup>OH, formed in 1:1 to 5:1 ratios. …”
  17. 101337

    C−O Coupling of LPt<sup>IV</sup>Me(OH)X Complexes in Water (X = <sup>18</sup>OH, OH, OMe; L = di(2-pyridyl)methane sulfonate) by Julia R. Khusnutdinova (1619044)

    Published 2020
    “…In <sup>18</sup>O-labeled water a mixture of two isotopologous methanols, Me<sup>18</sup>OH and Me<sup>16</sup>OH, formed in 1:1 to 5:1 ratios. …”
  18. 101338

    C−O Coupling of LPt<sup>IV</sup>Me(OH)X Complexes in Water (X = <sup>18</sup>OH, OH, OMe; L = di(2-pyridyl)methane sulfonate) by Julia R. Khusnutdinova (1619044)

    Published 2020
    “…In <sup>18</sup>O-labeled water a mixture of two isotopologous methanols, Me<sup>18</sup>OH and Me<sup>16</sup>OH, formed in 1:1 to 5:1 ratios. …”
  19. 101339
  20. 101340