Showing 31,941 - 31,960 results of 105,386 for search '(( 5 ((a decrease) OR (mean decrease)) ) OR ( e ((fold decrease) OR (point decrease)) ))', query time: 1.02s Refine Results
  1. 31941

    Human antibodies. by Laura Bellassen (22209109)

    Published 2025
    “…Together, these results identify SLAMF5 as a key regulator of myeloid cell activation in neuroinflammation and suggest that it may represent a promising therapeutic target for autoimmune disorders such as MS.…”
  2. 31942

    Meta-analysis of laparoscopic vs. open resection of gastric gastrointestinal stromal tumors by Liangying Ye (4015070)

    Published 2017
    “…The LAP patients also exhibited a decrease in overall complications (P<0.01). In addition, regarding the subgroup of larger GISTs (>5 cm), the present study did not report significant differences in operation time (P = 0.93), postoperative complications (P = 0.30), or recurrence rate (P = 0.61) between the two groups, though LAP was associated with favorable results regarding blood loss (P = 0.03) and hospital stay (P<0.01).…”
  3. 31943

    Torque response of DNA loaded with (H3.3-H4)<sub>2</sub> tetrasomes. by Rifka Vlijm (133750)

    Published 2015
    “…(B) The torque stored in DNA loaded with 5 tetrasomes plotted as a function of the number of applied rotations, <i>θ</i>. …”
  4. 31944
  5. 31945
  6. 31946

    Axial length changes after one week of wearing orthokeratology lenses. by Zhao-Yang Meng (18389630)

    Published 2025
    “…A vast majority of cases (82.5%) featured a decrease in axial length after wearing orthokeratology lenses.…”
  7. 31947
  8. 31948

    Image_1_Chlorophyll fluorescence is a potential indicator to measure photochemical efficiency in early to late soybean maturity groups under changing day lengths and temperatures.j... by Sonal Mathur (7402217)

    Published 2023
    “…Experiments were performed for 3-day lengths (12.5, 13.5, and 14.5 h) and five temperatures (22/14°C, 26/18°C, 30/22°C, 34/26°C, and 40/32°C), respectively. …”
  9. 31949
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  11. 31951
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  14. 31954

    Estimated demographic history in four simple demographic scenarios with seed banking where <i>μ</i> = 2.5 × 10<sup>−9</sup>. by Thibaut Paul Patrick Sellinger (8677419)

    Published 2021
    “…The simulated demographic history is represented in black. a) Demographic history simulated under a constant population size. b) Demographic history simulated under a bottleneck. c) Demographic history simulated under an expansion. d) Demographic history simulated under a decrease. …”
  15. 31955

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”
  16. 31956

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”
  17. 31957

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”
  18. 31958

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”
  19. 31959

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”
  20. 31960

    Regiospecifically Fluorinated Polycyclic Aromatic Hydrocarbons via Julia–Kocienski Olefination and Oxidative Photocyclization. Effect of Fluorine Atom Substitution on Molecular Sha... by Shaibal Banerjee (1632715)

    Published 2016
    “…A modular synthesis of regiospecifically fluorinated polycyclic aromatic hydrocarbons (PAHs) is described. 1,2-Diaryl­fluoroalkenes, synthesized via Julia–Kocienski olefination (70–99% yields), were converted to isomeric 5- and 6-fluorobenzo­[<i>c</i>]­phenanthrene, 5-and 6-fluorochrysene, and 9- and 10-benzo­[<i>g</i>]­chrysene (66–83% yields) by oxidative photocyclization. …”