Showing 36,381 - 36,400 results of 65,167 for search '(( 50 ((a decrease) OR (we decrease)) ) OR ( a ((fold decrease) OR (mean decrease)) ))', query time: 1.21s Refine Results
  1. 36381

    Supplementary Material for: Time of delivery contributes to mortality and morbidity in preterm infants by Teivaanmäki T. (17006268)

    Published 2023
    “…Methods We explored the time and mode of birth of infants with birthweight of <1500g and gestational age of <32+0/7 weeks. …”
  2. 36382

    Scutellarin’s Cardiovascular Endothelium Protective Mechanism: Important Role of PKG-I<i>α</i> by Lin Li (28817)

    Published 2015
    “…The activation of PKG–1α was then studied using targeted proteomic analysis (MRM-MS) checking the phosphorylation state of the autophosphorylation domain (aa42-94). Significant decrease in phosphorylation of PKG-Iα at Ser50, Ser72, Ser89 was induced by HR injury while SCU treatment significantly increased the phosphorylation of PKG-Iα, not only at Ser50, Ser72 and Ser89, but also at Ser44 and Thr58 (two novel phosphorylation domains). …”
  3. 36383

    Relationship between cold sensitivity and inhibitor sensitivity of primary HIV-1 envelope glycoproteins. by Hillel Haim (216672)

    Published 2011
    “…Data represent the mean incubation time on ice required for a 25% decrease from initial infectivity (IT25) in an experiment performed with three replicate samples. …”
  4. 36384

    GFP sensor assay. by Ana R. Soares (156281)

    Published 2012
    “…Co-injection of the M1 reporter with the miR-2188 duplex produced normal GFP levels, indicating that the BS-1 mutation abolished miR-2188 binding. On the other hand, a significant decrease in GFP expression was observed after co-injection of the M2 reporter with miR-2188, relative to the controls, indicating that BS-2 was not critical for miR-2188 binding. …”
  5. 36385

    Quantification of <i>in vivo</i> silica nanoparticle clearance. by Pascal Detampel (7444607)

    Published 2019
    “…<b>D:</b> Whole organ imaging. Overlay of a white light image of the organs and a heat map-display of the fluorescence in liver (top), spleen (middle), and kidney (bottom) 24 h after instillation of Ø 50 nm Cy-7-labelled silica particles into the lung (right). …”
  6. 36386

    Cost-utility analysis of de-escalating biological disease-modifying anti-rheumatic drugs in patients with rheumatoid arthritis by Benjamin Birkner (8212203)

    Published 2020
    “…We compared continuing treatment (standard care) to a tapering approach (i.e., an immediate 50% dose reduction), withdrawal (i.e., an immediate 100% dose reduction) and tapering followed by withdrawal of bDMARDs. …”
  7. 36387

    Galectin-3 Functions as an Alarmin: Pathogenic Role for Sepsis Development in Murine Respiratory Tularemia by Bibhuti B. Mishra (392001)

    Published 2013
    “…<div><p>Sepsis is a complex immune disorder with a mortality rate of 20–50% and currently has no therapeutic interventions. …”
  8. 36388
  9. 36389

    Distinct Populations of Hepatic Stellate Cells in the Mouse Liver Have Different Capacities for Retinoid and Lipid Storage by Diana N. D'Ambrosio (204864)

    Published 2011
    “…<div><p>Hepatic stellate cell (HSC) lipid droplets are specialized organelles for the storage of retinoid, accounting for 50–60% of all retinoid present in the body. When HSCs activate, retinyl ester levels progressively decrease and the lipid droplets are lost. …”
  10. 36390

    Implications of high species turnover on the south-western Australian sandplains by Neil Gibson (3272331)

    Published 2017
    “…This high replacement rate, well documented in the mega-diverse south-west, appears to also be a consistent feature of arid zone vegetation systems despite a decrease in overall species richness. …”
  11. 36391

    Table_4_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  12. 36392

    Table_2_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  13. 36393

    Table_4_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  14. 36394

    Table_4_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  15. 36395

    Table_2_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  16. 36396

    Table_3_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  17. 36397

    Table_1_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.docx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  18. 36398

    Table_2_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  19. 36399

    Table_3_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”
  20. 36400

    Table_3_Complete and rapid regeneration of fragments from the upside-down jellyfish Cassiopea.xlsx by Malte Ostendarp (13217973)

    Published 2022
    “…We conducted a laboratory experiment for which we used 18 Cassiopea medusae of three different size classes that were cut into two pieces each, one fragment with oral arms and one without. …”