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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant effect » significant impact (Expand Search)
significant amount » significant impact (Expand Search)
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Summary of significance levels for comparison of surgical segment ROM between different test groups.
Published 2025Subjects: -
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<i>Elsholtzia ciliata</i> extract (ECE) treatment decreases coronavirus-induced plaque formation.
Published 2025“…<b>(B)</b> ECE treatment decreases plaque formation in a dose-dependent manner. …”
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IRE1 depletion decreases heterochromatin, DNA, and H3K9me3 methylation, and UHRF1.
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Voxel-based whole-hemisphere analysis shows regional and dose-dependent decrease of microglia.
Published 2025“…<p>(A) Each 3-dimensional map of statistically affected voxels (p < 0.05, with the red scale, representing the significance in decrease of microglia, and the cyan scale, representing the increase in microglia; reference atlas is grey) summarizes all the treated and control samples within a cohort (3 samples per group). …”
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Data Sheet 1_Decreased neuronal excitability in hypertriglyceridemia hamsters with acute seizures.docx
Published 2024“…Following seizure induction, free palmitic acid levels in the frontal cortex dialysate significantly decreased, while the expression of palmitoyl acyltransferase 14 (ZDHHC14) in the frontal cortex tissue was higher in Apoc2<sup>−/−</sup> hamsters than in wild-type hamsters. …”
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Y-27632 collaborated with BA to attenuate the increase in the integrity and decrease in the permeability of epithelial barrier injury induced by LPS in Caco2 monolayers.
Published 2024“…(<b>B)</b> Y-27632 collaborated with BA to attenuate the effect of LPS on TEER in Caco2 cells on day 22. (<b>C</b>) Y-27632 collaborated with BA to alleviate the decrease in FD-4 flux in LPS-induced Caco2 cells on day 22. …”
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Downregulation of <i>TcPiezo1</i> expression decreases Ca<sup>2+</sup> entry in <i>T. cruzi.</i>
Published 2025“…(B) Downregulation of <i>TcPiezo1</i> expression showed a significant decrease of intracellular Ca<sup>2+</sup> (+Tet). …”
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