Showing 33,481 - 33,500 results of 62,107 for search '(( 50 ((nn decrease) OR (a decrease)) ) OR ( 5 ((step decrease) OR (we decrease)) ))', query time: 1.32s Refine Results
  1. 33481

    Table_1_Differential nasal swab cytology represents a valuable tool for therapy monitoring but not prediction of therapy response in chronic rhinosinusitis with nasal polyps treate... by Zeynep Danisman (15308860)

    Published 2023
    “…</p>Results<p>In both MGG (p<0.0001) and ICC analysis (p<0.001) a significant decrease of eosinophils was seen under Dupilumab treatment. …”
  2. 33482

    DataSheet_2_Differential nasal swab cytology represents a valuable tool for therapy monitoring but not prediction of therapy response in chronic rhinosinusitis with nasal polyps tr... by Zeynep Danisman (15308860)

    Published 2023
    “…</p>Results<p>In both MGG (p<0.0001) and ICC analysis (p<0.001) a significant decrease of eosinophils was seen under Dupilumab treatment. …”
  3. 33483

    DataSheet_2_Differential nasal swab cytology represents a valuable tool for therapy monitoring but not prediction of therapy response in chronic rhinosinusitis with nasal polyps tr... by Zeynep Danisman (15308860)

    Published 2023
    “…</p>Results<p>In both MGG (p<0.0001) and ICC analysis (p<0.001) a significant decrease of eosinophils was seen under Dupilumab treatment. …”
  4. 33484

    Table_1_Differential nasal swab cytology represents a valuable tool for therapy monitoring but not prediction of therapy response in chronic rhinosinusitis with nasal polyps treate... by Zeynep Danisman (15308860)

    Published 2023
    “…</p>Results<p>In both MGG (p<0.0001) and ICC analysis (p<0.001) a significant decrease of eosinophils was seen under Dupilumab treatment. …”
  5. 33485

    DataSheet_1_Differential nasal swab cytology represents a valuable tool for therapy monitoring but not prediction of therapy response in chronic rhinosinusitis with nasal polyps tr... by Zeynep Danisman (15308860)

    Published 2023
    “…</p>Results<p>In both MGG (p<0.0001) and ICC analysis (p<0.001) a significant decrease of eosinophils was seen under Dupilumab treatment. …”
  6. 33486
  7. 33487

    Simulated effects of phenytoin on control and schizophrenic models. by Peter J. Siekmeier (391910)

    Published 2013
    “…Lampl et al <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0058607#pone.0058607-Lampl1" target="_blank">[63]</a> and others <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0058607#pone.0058607-Fink1" target="_blank">[64]</a>, <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0058607#pone.0058607-Chao1" target="_blank">[65]</a> have shown that phenytoin concentrations in this range produce a decrease in Na<sup>+</sup> channel conductance of between 34% and 50%. …”
  8. 33488

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  9. 33489

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  10. 33490

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  11. 33491

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  12. 33492

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  13. 33493

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  14. 33494

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  15. 33495

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  16. 33496

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  17. 33497

    Magneto-optical Response of 3<i>d</i>‑Decorated Polyoxomolybdates with ε‑Keggin Structure by I. V. Andreev (1833067)

    Published 2014
    “…We tentatively position the observed effect among other known magneto-optical effects and predict that similar features may be found for other {M<sub>4</sub><sup>II</sup>Mo<sub>12</sub><sup>V</sup>} analogues.…”
  18. 33498

    Analysis of Genome-Wide Changes in the Translatome of Arabidopsis Seedlings Subjected to Heat Stress by Emilio Yángüez (447643)

    Published 2013
    “…For the majority of mRNAs, translation is severely repressed, causing a decreased of 50% in the association of the bulk of mRNAs to polysomes. …”
  19. 33499

    Microbial load. by Román Zapién-Campos (9592478)

    Published 2020
    “…Other parameters: <i>N</i> = 10<sup>4</sup>. We use <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1008392#pcbi.1008392.e017" target="_blank">Eq (5a)</a> where no definition of <i>p</i><sub><i>i</i></sub> and <i>α</i><sub><i>i</i></sub> is required.…”
  20. 33500

    Presentation1_Effects of Chang-Kang-Fang Formula on the Microbiota-Gut-Brain Axis in Rats With Irritable Bowel Syndrome.zip by Xiwen Ling (12518065)

    Published 2022
    “…Recent studies show that 5.0 g/kg/d CKF can alleviate the symptoms of IBS rats by modulating the brain-gut axis through the production of brain-gut peptides (BGPs), thus relieving pain, and reversing the effects of intestinal propulsion disorders. …”