Showing 1,721 - 1,740 results of 28,792 for search '(( 5 ((ng decrease) OR (teer decrease)) ) OR ( 50 ((a decrease) OR (nn decrease)) ))', query time: 0.74s Refine Results
  1. 1721

    Decrease in iron recycling in the presence of inflammation: iron metabolism in critically ill patients by Martin Darveau (58661)

    Published 2011
    “…Under normal conditions, there is a balance between the iron transport paths and the iron stores: serum iron, 9–27 μmol/l; transferrin, 3–6 g/l; transferrin saturation (sat.), 30–50%; ferritin, 50–150 μg/l. …”
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    SmedCB shows a transient spike of protease activity following digestion and amputation, while chemical inhibition of both cathepsin B and L leads to a significant decrease in regen... by Louise S. Goupil (2922159)

    Published 2016
    “…<b>(C)</b> Worms treated with SmedCB dsRNA did not show any significant defects in regeneration compared to untreated controls, but treatment with K11777 <b>(D)</b> showed a highly significant decrease in growth compared to vehicle worms. …”
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    Dynamics of a Stick−Jump Contact Line of Water Drops on a Strip Surface by Xueyun Zhang (507745)

    Published 2009
    “…We studied the wetting characteristics of water drops as they advanced and receded on patterned surfaces in a direction perpendicular to the strip. Water drops were observed to advance or recede in a smooth manner when the strip width was smaller than 32 μm but in a stick−jump manner when the strip width was larger than 50 μm. …”
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    Trial profile. by Chanel Avenant (409756)

    Published 2024
    “…Both contraceptives substantially decreased, from D0 to 25W, the total testosterone [DMPA-IM D0 0.560, 25W 0.423 nmol/L, -24.3% (p < 0.0001); NET-EN D0 0.551, 25W 0.253 nmol/L, -54.1%, (p < 0.0001)], SHBG [DMPA-IM D0 45.0, 25W 32.7 nmol/L, -29.8% (p < 0.0001); NET-EN D0 50.2, 25W 17.6 nmol/L, -65.1% (p < 0.0001)], and calculated free testosterone levels [DMPA-IM D0 6.87, 25W 5.38 pmol/L, -17.2% (p = 0.0371); NET-EN D0 6.00, 25W 3.70, -40.0% (p < 0.0001)]. …”
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    CNP decrease mitochondrial membrane potential and induce mitochondrial fragmentation in melanoma cells. by Elif Aplak (7430123)

    Published 2020
    “…<p>A, 300 μM CNP (4 h) significantly decreased mitochondrial membrane potential in A375 cells, but not in melanocytes, indicated by changes of TMRM dependent fluorescence in mitochondria. …”
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