Showing 6,661 - 6,680 results of 14,181 for search '(( significantly ((mean decrease) OR (nn decrease)) ) OR ( significant increase decrease ))', query time: 0.35s Refine Results
  1. 6661

    Differentially abundant proteins in the haemolymph.  by Louise M. Coates (22298169)

    Published 2025
    “…<p>Volcano plots of the differentially abundant proteins in the haemolymph between infected and uninfected crickets <b>(a)</b>; infected and post-infected crickets <b>(b)</b>; post-infected and uninfected crickets <b>(c)</b>; dehydrated and hydrated crickets <b>(d)</b>; dehydrated and re-hydrated crickets <b>(e)</b>; and re-hydrated and hydrated crickets <b>(f)</b>.Proteins with non-significant differential abundance are represented by circles (grey), proteins with a significant increase in abundance in the first group are represented by triangles (black) and proteins with a significant decrease in abundance in the first group are represented by squares (black). …”
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  4. 6664

    Penguin ease of transport for real vs. fully-compensated travel vectors relative to the ground during the return journey with respect to depth use and prey acquisition. by Richard M. Gunner (12652026)

    Published 2025
    “…Note that the overall depth decreases over time showing that birds allocate increasing time to horizontal travel. …”
  5. 6665

    Emotional stimulation test. by Sung Ah Chung (21672770)

    Published 2025
    “…</p><p>Results</p><p>A higher correction rate of unpleasant facial emotional perception—defined as the proportion of emotional stimuli (positive, negative, and neutral expressions) interpreted as unpleasant—was significantly associated with reduced HRV, as evidenced by lower high-frequency (HF) power and decreased standard deviation of normal-to-normal intervals (SDNN). …”
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  8. 6668

    The upper plots show the changes in ZMK for summer and autumn. by Peyman Karami (5909264)

    Published 2025
    “…The lower plots show significant increasing and decreasing trends for different biomes in Iran.…”
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  10. 6670

    Basic features of microtopography. by Qingping Gou (22641045)

    Published 2025
    “…The results showed that: the difference of shallow soil moisture in different microtopographies on a slope surface was not significant, the difference of deep soil moisture was significant, and the soil moisture overuse was the largest in the gully (GU), amounting to 386.36 mm, and the smallest in the ephemeral gully (EG) (131.02 mm); the GU, the sink hole (SH), and the scarp (SC) showed a trend of decreasing and then increasing with the increase of soil depth, and the platform (PL) has little overall trend of change in soil moisture with the increase of soil depth, and the soil moisture of US and EG shows the trend of “decreasing-then increasing-then decreasing” with the increase of soil depth. …”
  11. 6671

    Soil bulk density of different microtopographies. by Qingping Gou (22641045)

    Published 2025
    “…The results showed that: the difference of shallow soil moisture in different microtopographies on a slope surface was not significant, the difference of deep soil moisture was significant, and the soil moisture overuse was the largest in the gully (GU), amounting to 386.36 mm, and the smallest in the ephemeral gully (EG) (131.02 mm); the GU, the sink hole (SH), and the scarp (SC) showed a trend of decreasing and then increasing with the increase of soil depth, and the platform (PL) has little overall trend of change in soil moisture with the increase of soil depth, and the soil moisture of US and EG shows the trend of “decreasing-then increasing-then decreasing” with the increase of soil depth. …”
  12. 6672

    FSA inhibits MaAKT1 channels through <i>S</i>-glutathionylation. by Jun Zhang (48506)

    Published 2025
    “…Representative whole-cell current traces and summary of the preventive effect of DTT (5 mM) in the pipette on FSA-induced MaAKT1 inhibition (n = 3). Ns, not significant compared with control group. (<b>C</b>) FSA treatment decreases intracellular GSH level (left), increases GSSG level (middle), and reduces GSH/GSSG ratio (right) (n = 3). …”
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  16. 6676

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature by Yunlong Jiao (6672764)

    Published 2024
    “…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
  17. 6677

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature by Yunlong Jiao (6672764)

    Published 2024
    “…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
  18. 6678

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature by Yunlong Jiao (6672764)

    Published 2024
    “…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
  19. 6679

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature by Yunlong Jiao (6672764)

    Published 2024
    “…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”
  20. 6680

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature by Yunlong Jiao (6672764)

    Published 2024
    “…Specifically, the Leidenfrost temperature on micropit surfaces increases with greater micropit area occupancy, while it decreases on micropillar surfaces under similar conditions, which is mainly attributed to the differential impact of area occupancy on droplet heat transfer efficiency. …”