Showing 1 - 20 results of 3,910 for search '(( right ((b decrease) OR (a decrease)) ) OR ( a ((larger decrease) OR (marked decrease)) ))', query time: 0.49s Refine Results
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    Repetitive stress induces a decrease in sound-evoked activity. by Ghattas Bisharat (20706928)

    Published 2025
    “…These mice exhibited a minimal change in noise-evoked PPy activity when comparing the first and second week of imaging (2-way ANOVA, F = 1.79, <i>p</i> = 0.11, post hoc baseline w1 50 dB: baseline w2 50 dB <i>p</i> = 1 Bonferroni corrected, nested ANOVA (mouse nested within session) F = 1.76, <i>p</i> = 0.12, mean ± SE). …”
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    B2 decreases glycolytic intermediates in cells. by Craig Eyster (392633)

    Published 2025
    “…Each column is a separate biological replicate (n = 5). The box indicates the clustering of decreased downstream glycolytic intermediates in B2-treated cells. …”
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    Predicting pattern diversity decreases as a function of and . by Selim Haj Ali (21222613)

    Published 2025
    “…<p>For 50 Erdős-Rényi graphs with 30 nodes and 70 edges, we split the results into two columns according to the two initial degenerate unstable eigenmodes  +  : on the left, (if ), and on the right, (if ). (a) and (b): Average negative predictive value for and , respectively for and . …”
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    Juvenile demyelination leads to a decrease in axonal complexity of PFC PV interneurons. by Sara Hijazi (21656615)

    Published 2025
    “…The number of PV-positive cells was quantified in high magnification images. <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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    ECoG timescales decrease during spatial attention. by Isabel Raposo (21615517)

    Published 2025
    “…<p><b>(A)</b> Top: behavioral timescales do not differ between different groups of participants (exp. 1 and 3/4) doing the same task; Bottom: Illustration of ECoG electrode placement for all subjects for both two location (left) and four location (right) tasks for the frontal, motor and parietal regions. …”
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