Showing 1 - 20 results of 78,301 for search '(( 5 ((a decrease) OR (_ decrease)) ) OR ((( _ points decrease ) OR ( end point decrease ))))', query time: 1.44s Refine Results
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    Table_1_When and Why Did Human Brains Decrease in Size? A New Change-Point Analysis and Insights From Brain Evolution in Ants.XLSX by Jeremy M. DeSilva (7247009)

    Published 2021
    “…<p>Human brain size nearly quadrupled in the six million years since Homo last shared a common ancestor with chimpanzees, but human brains are thought to have decreased in volume since the end of the last Ice Age. …”
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    Downregulation of DOM decreases the abundance of PER and TIM. by Zhenxing Liu (399809)

    Published 2019
    “…Downregulation of DOM decreased PER levels at CT1-5 and CT17-21. (Scale bar: 50 um.) …”
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    NatB inactivation decreased the level of MAPK and proposed model of EGFR/MAPK signaling regulation by NatB and the N-end rule pathways. by Zhentao Sheng (107495)

    Published 2020
    “…<p>(A-B) <i>psid-D1</i> (A) or <i>psid-D4</i> (B) clones in 3rd instar fat body, which were marked by GFP expression (pointed by arrowheads), showed decreased MAPK levels (anti-MAPK staining, red). …”
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    Density plots of normalised consumer final power (PC) for the six example networks, shown over decreasing ratios of mean consumer to mean resource potential, . by Natalie Davis (8556036)

    Published 2020
    “…<p>Each plot shows the density for the normalised consumer final power at = 0.75, 0.5, and 0.25, from left to right, as the ratio decreases due to increased resource flow during the simulation. …”
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    mGluR5 receptor decreased glycinergic currents. by Zi-Yang Zhang (4988555)

    Published 2019
    “…<p>(<b>A–B</b>) Bath perfusion of DHPG for 3 min reduced GlyR-IPSCs (<b>A</b>; 70.2 ± 4.2% of baseline at 15–20 min post-DHPG, <i>t</i>[16] = 6.707, <i>p</i> < 0.001, paired Student <i>t</i> test), but not GABA<sub>A</sub>-receptor–mediated IPSCs (<b>B</b>; 102.9 ± 3.3% of baseline at 15–20 min post-DHPG, <i>t</i>[5] = 0.347, <i>p</i> = 0.743) in spinal slices of mice. …”
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