Showing 21 - 40 results of 65,351 for search '(( 5 ((((we decrease) OR (nn decrease))) OR (mean decrease)) ) OR ( 25 c decrease ))', query time: 1.04s Refine Results
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    Loperamide decreases mechanical responsiveness of unmyelinated, nociceptive C-fibers. by Matthias Ringkamp (253465)

    Published 2013
    “…Dashed line indicates threshold assigned to afferents unresponsive to 25 g vF hair. B) Loperamide dose-dependently decreases the responsiveness to suprathreshold mechanical stimuli in both animal groups (ANOVA lesion: F<sub>(3,35)</sub> = 10.3, p<0.001; ANOVA sham: F<sub>(3,16)</sub> = 4.5, p<0.05). …”
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    Increased Dietary Intake of Saturated Fatty Acid Heptadecanoic Acid (C17:0) Associated with Decreasing Ferritin and Alleviated Metabolic Syndrome in Dolphins by Stephanie K. Venn-Watson (774138)

    Published 2015
    “…When a modified diet adding 25% pinfish and/or mullet was fed to six Group A dolphins over 24 weeks (increasing the average daily dietary C17:0 intake from 400 to 1700 mg), C17:0 serum levels increased, high ferritin decreased, and blood-based metabolic syndrome indices normalized toward reference levels. …”
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    Decreased capillary density and cardiac fibrosis in <i>Nkx2.5-Cre/Foxm1<sup>fl/fl</sup></i> heart. by Craig Bolte (299486)

    Published 2013
    “…Capillary density was decreased in <i>Nkx2.5-Cre/Foxm1<sup>fl/fl</sup></i> hearts at P11 (A–B, I), while coronary vessel formation was not altered (C–D). …”
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    Effects of Fluid Aging and Reservoir Temperature on Waterflooding in 2.5D Glass Micromodels by Duy Le-Anh (8722380)

    Published 2022
    “…To study improved oil recovery (IOR) via laboratory experiments at the pore scale, we performed waterflooding experiments in a glass 2.5D micromodel (dual depth: 12 and 27 μm) with crude oil (CRO) and brines of variable compositions at temperatures ranging from 22 °C (room temperature) to 90 °C. …”
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    Effects of Fluid Aging and Reservoir Temperature on Waterflooding in 2.5D Glass Micromodels by Duy Le-Anh (8722380)

    Published 2022
    “…To study improved oil recovery (IOR) via laboratory experiments at the pore scale, we performed waterflooding experiments in a glass 2.5D micromodel (dual depth: 12 and 27 μm) with crude oil (CRO) and brines of variable compositions at temperatures ranging from 22 °C (room temperature) to 90 °C. …”
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