Showing 41 - 60 results of 119,420 for search '(( significant ((changes decrease) OR (larger decrease)) ) OR ( significant increases cell ))', query time: 4.43s Refine Results
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    Spatial information is significantly decreased in dCA1 and vCA1 in APP/PS1 mice. by Udaysankar Chockanathan (18510288)

    Published 2024
    “…The spatial information in dCA1 was significantly larger than circularly shuffled spike trains with similar mean firing rates for C57BL/6 mice (mean ± std: empirical = 0.132 ± 0.048, shuffled = 0.124 ± 0.035, p < 0.001, two-sided Wilcoxon rank-sum test, n<sub>empirical</sub> = 305 units from 5 recording sessions, n<sub>shuffled</sub> = 30500 simulated units from 5 recording sessions), but not for APP/PS1 mice (mean ± std: empirical = 0.128 ± 0.051, shuffled = 0.123 ± .047, p = 0.39, two-sided Wilcoxon rank-sum test, n<sub>empirical</sub> = 180 units from 4 recording sessions, n<sub>shuffled</sub> = 18000 simulated units from 4 recording sessions). …”
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    Affected cats have significantly increased astrocyte density within the grey matter. by Emily C. Graff (9745447)

    Published 2020
    “…(<b>F-J</b>) Olig-2 staining indicates no significant change in the density of oligodendrocytes in grey matter, though an insignificant decrease of ~30% was noted in white matter. …”
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    Number of significantly significant (P < 0.05) differentially abundant (SSDA) proteins showing increased or decreased activity (fold change +/- 1.5-fold) relative to time 0 following storage at 9°C or 20°C of infective juveniles of <i>S</i>.... by Peter E. Lillis (12368582)

    Published 2022
    “…<p>Number of significantly significant (P < 0.05) differentially abundant (SSDA) proteins showing increased or decreased activity (fold change +/- 1.5-fold) relative to time 0 following storage at 9°C or 20°C of infective juveniles of <i>S</i>. …”
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    Micropatterning significantly increases cell density. by Matthew W. Hagen (627944)

    Published 2019
    “…(B) Micropatterning significantly increases cell density across other culture conditions (p = 0.0002). …”