Showing 201 - 220 results of 135,246 for search '(( 50 ((((a decrease) OR (nn decrease))) OR (we decrease)) ) OR ( 1 0 decrease ))', query time: 0.84s Refine Results
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    Loss of <i>Nf1</i> increases sleep fragmentation and decreases sleep depth. by Elizabeth B. Brown (4582978)

    Published 2023
    “…Compared to control and heterozygote flies, arousal threshold significantly decreases in <i>nf1</i><sup>P1</sup> mutants and occurs during the day (+, <i>P</i><0.0001; het, <i>P</i><0.0001) and night (+, <i>P</i><0.0001; het, <i>P</i><0.0001). …”
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    Extracellular vesicles isolated from patients undergoing remote ischemic preconditioning decrease hypoxia-evoked apoptosis of cardiomyoblasts after isoflurane but not propofol expo... by Frederik Abel (8452101)

    Published 2020
    “…Prior isoflurane exposure <i>in vitro</i> even increased protection (RIPC-EVs/control, apoptotic ratio: 0.79; p = 0.0035; Sham-EVs/control, apoptotic ratio:1.04) while propofol (50μM) abrogated protection by RIPC-EVs (RIPC-EVs/control, Apoptotic ratio: 1.01; Sham-EVs/control, apoptotic ratio: 0.94; p = 0.602). …”
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    Image_2_SIRT1 haplo-insufficiency results in reduced cortical bone thickness, increased porosity and decreased estrogen receptor alpha in bone in adult 129/Sv female mice.tif by Hanna Artsi (777390)

    Published 2022
    “…</p>Discussion<p>These findings demonstrate that 50% reduction in SIRT1 is sufficient to induce the hallmarks of skeletal aging namely, decreased cortical thickness and increased porosity in female mice, highlighting the role of SIRT1 as a regulator of cortical bone quantity and quality. …”
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    Image_1_SIRT1 haplo-insufficiency results in reduced cortical bone thickness, increased porosity and decreased estrogen receptor alpha in bone in adult 129/Sv female mice.tif by Hanna Artsi (777390)

    Published 2022
    “…</p>Discussion<p>These findings demonstrate that 50% reduction in SIRT1 is sufficient to induce the hallmarks of skeletal aging namely, decreased cortical thickness and increased porosity in female mice, highlighting the role of SIRT1 as a regulator of cortical bone quantity and quality. …”
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    The <i>rcan-1</i> rearrangement allele decreases expression of <i>rcan-1</i>. by Yuehui Zhao (3146229)

    Published 2020
    “…The gene with the largest and most significant expression decrease was <i>rcan-1</i>. Red: p<0.01, log<sub>2</sub>(Fold Change) > 1. …”
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