Showing 17,441 - 17,460 results of 49,055 for search '(( 5 ((we decrease) OR (mean decrease)) ) OR ( 50 ((nn decrease) OR (a decrease)) ))', query time: 1.10s Refine Results
  1. 17441
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  3. 17443

    Analyses of directed phase lag index (dPLI [44]) for excitatory/inhibitory (E/I) ratios with respect to pyramidal (Pyr) and parvalbumin (PV) populations (<i>A</i>) and Pyr and soma... by Nobuhiko Wagatsuma (494052)

    Published 2025
    “…<p>Black circles and gray pentagons represent the mean values of dPLI from PV to Pyr and from SOM to Pyr populations, respectively. …”
  4. 17444

    A random forest model demonstrates the patient factors that were relatively different in 2022 compared to other years, identifying the factors that likely contributed to the increa... by Emily Lehan (19469130)

    Published 2024
    “…<p>(A) Mean receiver-operator characteristic curve area-under-the-curve for testing set performance of five tuned machine learning models to assist understanding the complex interplay of patient factors that were altered in 2022 compared to other years. …”
  5. 17445
  6. 17446

    Data Sheet 1_Efficacy and safety of Tanshinone capsule in Acne vulgaris: a systematic review and meta-analysis.docx by Yutong Deng (20908982)

    Published 2025
    “…We found that Tanshinone capsules can reduce acne recurrence rates [risk ratio (RR) 0.44, 95% confidence interval (CI): 0.34 to 0.57, p < 0.00001]; downregulate levels of necrosis factor-alpha (TNF-α) [ mean difference (MD) 0.44, −10.18, 95% CI: −13.57 to −8.04, p < 0.00001], interleukin (IL) 4 (MD -6.46, 95%CI: −7.14 to −5.77, p < 0.00001), IL-6 (MD -16.14, 95%CI: −30.10 to −2.18, p = 0.02), IL-8 (MD -4.48, 95%CI: −8.30 to −0.65, p = 0.02) and testosterone (MD -14.50, 95%CI: −17.59 to −11.40, p < 0.00001); lower Global Acne Grading System (GAGS) score (MD -4.71, 95%CI: −7.62 to −1.80, p = 0.002); decrease sebum secretion rates (MD -0.29, 95%CI: −0.49 to −0.10, p = 0.003), but the regulation of Luteinizing hormone (LH), Follicle-stimulating hormone (FSH), Estradiol (E<sub>2</sub>) is not obvious. …”
  7. 17447
  8. 17448

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  9. 17449

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  10. 17450

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  11. 17451

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  12. 17452

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  13. 17453

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  14. 17454

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  15. 17455

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  16. 17456

    From 2D to 1D Electronic Dimensionality in Halide Perovskites with Stepped and Flat Layers Using Propylammonium as a Spacer by Justin M. Hoffman (6890504)

    Published 2019
    “…The RP structures show a blue-shift in bandgap for decreasing <i>n</i> (1.90 eV for <i>n</i> = 4 and 2.03 eV for <i>n</i> = 3), while the SL structures have an even greater blue-shift (2.53 eV for <i>m</i> = 4, 2.74 eV for <i>m</i> = 3, and 2.93 eV for <i>m</i> = 2). …”
  17. 17457

    Targeting DNA-dependent protein kinase sensitizes hepatocellular carcinoma cells to proton beam irradiation through apoptosis induction by Changhoon Choi (3356525)

    Published 2019
    “…Proton beam radiotherapy is a reasonable radiotherapy option for hepatocellular carcinoma (HCC), but the impact of genetic difference on the HCC RBE remains unknown. Here, we determined proton RBE in human HCC cells by exposing them to various doses of either 6-MV X-rays or 230-MeV proton beams. …”
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