Showing 1,421 - 1,440 results of 2,611 for search '(( significantly ((smaller decrease) OR (small decrease)) ) OR ( significantly linear decrease ))', query time: 0.56s Refine Results
  1. 1421

    Supporting datasets for all figures. by Matthew Drill (22258391)

    Published 2025
    “…Inhibition of P2X7R with small molecule antagonist AZ10606120, for 72 hours significantly decreased U251 cell number (p < 0.0001), and significantly increased tumour cell death, as evidenced by increased LDH release (p < 0.001). …”
  2. 1422

    Evaluation results. by Briya Tariq (19666901)

    Published 2024
    “…It focuses on identifying and quantifying clinically significant materials in the presence of metal objects. …”
  3. 1423

    Dataset with steel insert. by Briya Tariq (19666901)

    Published 2024
    “…It focuses on identifying and quantifying clinically significant materials in the presence of metal objects. …”
  4. 1424

    Reference dataset. by Briya Tariq (19666901)

    Published 2024
    “…It focuses on identifying and quantifying clinically significant materials in the presence of metal objects. …”
  5. 1425

    Dataset with aluminium insert. by Briya Tariq (19666901)

    Published 2024
    “…It focuses on identifying and quantifying clinically significant materials in the presence of metal objects. …”
  6. 1426
  7. 1427
  8. 1428
  9. 1429

    Connectivity (frontal, axial, and sagittal planes) and color maps of between-group analysis of the tDCS intervention. by Rael Lopes Alves (7877942)

    Published 2024
    “…<p>The colored edge represents connections with significant differences. (A) Maps shows decreased connectivity between left ACC and right INS in the HB-a-tDCS on DLPFC group in the delta frequency band which present large effect size (Cohen’s d = 1.69). …”
  10. 1430

    Connectivity maps and color maps of within-group analysis of the tDCS intervention. by Rael Lopes Alves (7877942)

    Published 2024
    “…Effect sizes are based on Cohen’s d: small = 0.2, medium = 0.5, large = 0.8. Values are given in t-values. …”
  11. 1431

    Molecular Insights into the Crystallization of 4’-Hydroxyacetophenone from Water: Solute Aggregation, Liquid–Liquid Phase Separation, and Polymorph Selection by Carlos E. S. Bernardes (7183481)

    Published 2025
    “…Analysis of the solution properties before the onset of LLPS revealed that, in the HAP mole fraction range <i>x</i><sub>HAP</sub> < 0.004 (Zone I), where hydrate H2 ultimately crystallizes, small, solvated clusters are initially present in solution, which remain approximately invariant in size, shape, and HAP/H<sub>2</sub>O proportion as the temperature decreases. …”
  12. 1432

    Molecular Insights into the Crystallization of 4’-Hydroxyacetophenone from Water: Solute Aggregation, Liquid–Liquid Phase Separation, and Polymorph Selection by Carlos E. S. Bernardes (7183481)

    Published 2025
    “…Analysis of the solution properties before the onset of LLPS revealed that, in the HAP mole fraction range <i>x</i><sub>HAP</sub> < 0.004 (Zone I), where hydrate H2 ultimately crystallizes, small, solvated clusters are initially present in solution, which remain approximately invariant in size, shape, and HAP/H<sub>2</sub>O proportion as the temperature decreases. …”
  13. 1433

    Molecular Insights into the Crystallization of 4’-Hydroxyacetophenone from Water: Solute Aggregation, Liquid–Liquid Phase Separation, and Polymorph Selection by Carlos E. S. Bernardes (7183481)

    Published 2025
    “…Analysis of the solution properties before the onset of LLPS revealed that, in the HAP mole fraction range <i>x</i><sub>HAP</sub> < 0.004 (Zone I), where hydrate H2 ultimately crystallizes, small, solvated clusters are initially present in solution, which remain approximately invariant in size, shape, and HAP/H<sub>2</sub>O proportion as the temperature decreases. …”
  14. 1434

    The ADMET analysis of the selected compounds. by Ali Alisaac (14658440)

    Published 2025
    “…Unlike LasI and QscR, AiiA does not rely on small molecule binding for activation. However, a known LasI or QscR inhibitor would have served as a more appropriate positive control, which will be considered in future studies. …”
  15. 1435

    AMDET profiling parameters and shorting criteria. by Ali Alisaac (14658440)

    Published 2025
    “…Unlike LasI and QscR, AiiA does not rely on small molecule binding for activation. However, a known LasI or QscR inhibitor would have served as a more appropriate positive control, which will be considered in future studies. …”
  16. 1436

    LSTM model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  17. 1437

    CNN model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  18. 1438

    Ceramic bearings. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  19. 1439

    Geometric contact arc length model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”
  20. 1440

    Indentation fracture mechanics model. by Longfei Gao (698900)

    Published 2025
    “…According to the experimental results, when the grinding depth increases to 21 μm, the average training loss of the model further decreases to 0.03622, and the surface roughness Ra value significantly decreases to 0.1624 μm. …”