Showing 6,541 - 6,560 results of 31,876 for search '(( 10 ((nm decrease) OR (nn decrease)) ) OR ( 50 ((we decrease) OR (a decrease)) ))', query time: 0.64s Refine Results
  1. 6541

    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
  2. 6542

    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
  3. 6543

    Hybrid stochastic framework predicts efficacy of prophylaxis against HIV: An example with different dolutegravir prophylaxis schemes by Sulav Duwal (152805)

    Published 2018
    “…Combining the population pharmacokinetics of DTG with the stochastic framework, we predicted that plasma concentrations of 145.18 and 722.23nM prevent 50- and 90% sexual transmissions respectively. …”
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    The number of Brn3a-expressing RGCs undergoes a reduction during the first postnatal week. by Sylvie Voyatzis (332702)

    Published 2013
    “…The inner surface of the retina (RGC layer) is down. The density of Brn3a-expressing cells decreases from P0 to P7 and the retinal ganglion cell layer reorganizes from a multiple cell layer at P0 to a single cell layer at P7. …”
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    Table_1_Warmer Temperatures Affect the in situ Freezing Resistance of the Antarctic Vascular Plants.DOCX by Angela Sierra-Almeida (839647)

    Published 2018
    “…<p>Although positive effects on growth and reproduction of Antarctic vascular plants have been reported under warmer temperatures, it could also increase the vulnerability of these plants to freezing. Thus, we assessed in situ whether warming decreases the freezing resistance of Colobanthus quitensis and Deschampsia antarctica, and we compared the level and mechanism of freezing resistance of these species in the field with previous reports conducted in lab conditions. …”
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