Showing 5,781 - 5,800 results of 26,312 for search '(( 5 ((ng decrease) OR (mean decrease)) ) OR ( 50 ((we decrease) OR (a decrease)) ))', query time: 0.67s Refine Results
  1. 5781

    S1 File - by Naomasa Okimoto (18784343)

    Published 2024
    “…In addition to the CT value of ≥27.7 HU, PMCT findings of solid-natured gastrointestinal content and intra/peri-content bubbles ≥4 mm, extracted from the derivation set, increased the specificity for UGIB (96.5% and 98.8%, respectively) but decreased the sensitivity (61.5% and 38.5%, respectively) in the validation set. …”
  2. 5782
  3. 5783
  4. 5784
  5. 5785
  6. 5786
  7. 5787
  8. 5788
  9. 5789

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  10. 5790

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  11. 5791

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  12. 5792

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  13. 5793

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  14. 5794

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  15. 5795

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  16. 5796

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  17. 5797

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  18. 5798
  19. 5799

    Raw data. by Adrian Bartoszek (20826922)

    Published 2025
    “…Seizures were induced by adding PTZ to achieve a final concentration of 20 mM. In the PTZ-induced seizure model, the application of CAF in doses over 50 mg/L resulted in a decrease in the average movement. …”
  20. 5800

    Fig 4 - by Xiu-Qi Chen (13832389)

    Published 2023
    “…NETs in gastric tissues. Scale label 50 μm. NETs were observed in IgAV model group and decreased in DNase I intervention group but absent in control group. …”