Showing 2,001 - 2,020 results of 8,630 for search 'significantly ((((((lower decrease) OR (we decrease))) OR (nn decrease))) OR (teer decrease))', query time: 0.46s Refine Results
  1. 2001
  2. 2002

    S1 Data - by Jan Willem Koten (17743224)

    Published 2024
    “…Moreover, it is unclear how within-subject time course reliability limits the robust detection of connectivity on the group level. We estimated connectivity from a working memory task. …”
  3. 2003

    Connectivity statistics. by Jan Willem Koten (17743224)

    Published 2024
    “…Moreover, it is unclear how within-subject time course reliability limits the robust detection of connectivity on the group level. We estimated connectivity from a working memory task. …”
  4. 2004

    Histogram of the area factorψ. by Hong Zhang (25820)

    Published 2025
    “…The measured <i>I</i><sub>s</sub> decreases following a power-law trend as <i>β</i> and <i>D</i> increase, with weathering reducing the sensitivity of <i>I</i><sub>s</sub> to <i>β</i> but not significantly altering its sensitivity to <i>D</i>. …”
  5. 2005

    Raw dataset Fig. 6. by Hong Zhang (25820)

    Published 2025
    “…The measured <i>I</i><sub>s</sub> decreases following a power-law trend as <i>β</i> and <i>D</i> increase, with weathering reducing the sensitivity of <i>I</i><sub>s</sub> to <i>β</i> but not significantly altering its sensitivity to <i>D</i>. …”
  6. 2006
  7. 2007
  8. 2008
  9. 2009

    Fluorescence Imaging of Neuroblastocyte Differentiation and Parkinson’s Brain Tissue Lesions Examined by a Norepinephrine-Activated Molecular Probe by Huming Yan (9917374)

    Published 2025
    “…Compared to the previously developed probe <i><b>SXU-NEQ</b></i>, the self-fluorescence intensity of probe <i><b>DQF</b></i> decreased significantly (I<i><sub><b>DQF</b></sub></i>/I<i><sub><b>SXU‑NEQ</b></sub></i> = 35%). …”
  10. 2010

    Schematic for measuring <i>D</i> and <i>D</i>′ values. by Hong Zhang (25820)

    Published 2025
    “…The measured <i>I</i><sub>s</sub> decreases following a power-law trend as <i>β</i> and <i>D</i> increase, with weathering reducing the sensitivity of <i>I</i><sub>s</sub> to <i>β</i> but not significantly altering its sensitivity to <i>D</i>. …”
  11. 2011

    <i>SLC2A2</i> is essential for liver differentiation in developing vertebrates by Yejin Kim (740789)

    Published 2025
    “…(D) Using hepatoblast marker <i>hhex</i>, we captured WISH images of uninjected embryos and <i>SLC2A2</i>-targeting morpholino-injected embryos at 2 dpf. …”
  12. 2012
  13. 2013
  14. 2014

    Minimal data set. by Xiaoxia Liu (294088)

    Published 2024
    “…Using the multiple scale method, we derive approximate analytical solutions for both the crystal interface growth rate and the solute concentration. …”
  15. 2015

    Scheme of g-λ model with larger values λ. by Zhanfeng Fan (20390992)

    Published 2024
    “…The findings suggest that when λ is respectively equal to 4.19, 8.57, 10, and 12.15, the peak particle velocity (PPV) of the transmitted waves is significantly close to the incident wave amplitude. Furthermore, when λ is fixed, the energy transmission coefficient increases with the incident wave amplitude but decreases with the incident wave frequency. …”
  16. 2016

    Summary statistics of key variables. by Saul Estrin (8629173)

    Published 2024
    “…We propose that, while there are still agglomeration benefits, the development path followed by cities in developing countries also creates significant agglomeration costs and these act to limit innovation. …”
  17. 2017
  18. 2018

    Flow chart of animal experiment. by Shudan Liu (7049483)

    Published 2025
    “…Then, we evaluated the effects of PMSC intervention on POI rats: Compared to the untreated MOD group, the estrous cycle of rats in the PMSC group gradually became regular, the ovarian weight and ovarian index were significantly increased, and the ovarian tissue structure was improved by showing an increase in the number of follicles and a decrease in the number of atretic follicles. …”
  19. 2019
  20. 2020