Showing 61 - 80 results of 29,722 for search '(( e fold decrease ) OR ( 50 ((((teer decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 0.79s Refine Results
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    Fold change in EC<sub>50</sub> in all polyene resistant lines of <i>Leishmania spp</i>. by Edubiel A. Alpizar-Sosa (13848145)

    Published 2022
    “…<i>mexicana</i> in DM and E) AmBR-<i>L</i>. <i>infantum</i> in HOMEM. Values higher and lower than 1, indicate a decrease and rise in susceptibility relative to the parental line, respectively. …”
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    Pre-treatment LLM, month of start and end of sustained (≥ 4 months) decrease in LLM by ≥ 50% from pre-treatment LLM, to < 8100 mf/ml or < 30000 mf/ml by treatment arm for participants with a sustained decrease by ≥ 50%. by Joseph Kamgno (81039)

    Published 2016
    “…<p>Pre-treatment LLM, month of start and end of sustained (≥ 4 months) decrease in LLM by ≥ 50% from pre-treatment LLM, to < 8100 mf/ml or < 30000 mf/ml by treatment arm for participants with a sustained decrease by ≥ 50%.…”
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    Aquaporin 2 Mutations in <i>Trypanosoma brucei gambiense</i> Field Isolates Correlate with Decreased Susceptibility to Pentamidine and Melarsoprol by Fabrice E. Graf (469055)

    Published 2013
    “…Here we describe two different kinds of <i>TbAQP2</i> mutations found in <i>T. b. gambiense</i> field isolates: simple loss of <i>TbAQP2</i>, or loss of wild-type <i>TbAQP2</i> allele combined with the formation of a novel type of <i>TbAQP2/3</i> chimera. The identified mutant <i>T. b. gambiense</i> are 40- to 50-fold less sensitive to pentamidine and 3- to 5-times less sensitive to melarsoprol than the reference isolates. …”
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    The fatty acid elongation and degradation KEGG pathway showing the role of dehydrogenase (E.C. 1.1.1.35; 5374-fold decrease) in fatty acid elongation and degradation. by Sang-Hyuck Park (2389912)

    Published 2018
    “…<p>The fatty acid elongation and degradation KEGG pathway showing the role of dehydrogenase (E.C. 1.1.1.35; 5374-fold decrease) in fatty acid elongation and degradation.…”
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    Global Land Use Change Impacts on Soil Nitrogen Availability and Environmental Losses by Jing Wang (6206297)

    Published 2025
    “…Anthropogenic activities, particularly land use change and management practices, alter the global nitrogen (N) cycle. As a central part of the global N cycle, soil N supply from net N mineralization (NNM) and net nitrification (NN) contributes to over 50% of crop N uptake. …”
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