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greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
point decrease » point increase (Expand Search)
fold decrease » fold increase (Expand Search), fold increased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 point » _ point (Expand Search)
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Juvenile demyelination leads to a decrease in axonal complexity of PFC PV interneurons.
Published 2025“…<b>F</b>. Example image of a biocytin-labeled PFC PV interneuron from a control mouse (left) and from cuprizone-treated mouse (right); scale bar: 50 µm. …”
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<i>Kdm6a</i> conditional KO mice have decreased repopulating potential in serial competitive transplantation assays.
Published 2021“…Significant differences in the chimerism of SLAM cells compared to whole BM were found in KO-F mice (55.2-fold increase in CD45.2<sup>+</sup> KO-F SLAM cells as compared to CD45.2<sup>+</sup> cells in the whole BM, p = 0.0163) and KO-M mice (11.31-fold increase in CD45.2<sup>+</sup> KO-M SLAM cells as compared to CD45.2<sup>+</sup> cells in the whole BM, p = 0.0010). …”
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Behavior of split<sup><50cM</sup> <i>ClvR</i> V2 with linkage.
Published 2021“…<p>Incorporating linkage into split <i>ClvR</i> (split<sup><50cM</sup> <i>ClvR</i> V2) results in a graded increase in drive strength, and duration of <i>Rescue</i>/Cargo/gRNAs at high frequency, as the degree of linkage increases (map distance decreases). …”
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TUDCA decreases ER stress in HOX neonatal rat lungs.
Published 2022“…<p>(<b>A</b>) The expression levels of ER stress markers (P-PERK 0.6±0.1-fold, p<0.001, n = 5; PERK 0.7±0.1-fold, p = 0.00364, n = 5; P-IRE1α 0.6±0.0-fold, p<0.001, n = 5; IRE1α 0.6±0.1-fold, p<0.001, n = 5; GRP78 0.8±0.1-fold, p<0.001, n = 5; cleaved ATF6 0.1±0.0-fold, p<0.001, n = 5; spliced XBP1 0.3±0.0-fold, p<0.001, n = 5; 2 males and 3 females) are all decreased while the N-glycosylated VEGFR2 is increased (3.5±0.2-fold, p<0.001, n = 5) in HOX neonatal lungs at P10 indicating TUDCA can attenuate hyperoxia-induced ER stress. …”
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