Showing 9,701 - 9,720 results of 32,444 for search '(( a step decrease ) OR ( 50 ((((we decrease) OR (mean decrease))) OR (a decrease)) ))', query time: 1.29s Refine Results
  1. 9701

    Description of the cohort (N = 118 patients). by Bastien Le Floc’h (14773916)

    Published 2023
    “…We conducted a large prospective study that included 118 patients on HLA-G plasma levels during a 12-month follow-up and compared them to the status of anti-HLA antibodies. …”
  2. 9702
  3. 9703
  4. 9704
  5. 9705

    Knee angle as a measure for standing capacity. by Ronaldo Ichiyama (260704)

    Published 2009
    “…<p>A stick diagram of the HL joints, at the hip, knee and ankle superimposed on the actual HL of one rat while under different levels of weight load: <i>a</i>. 10%, <i>b</i>. 50%, <i>c</i>. 60%, and <i>d</i>. 100% of body weight. …”
  6. 9706
  7. 9707

    Table_1_Effects of a low-sodium diet in patients with idiopathic hyperaldosteronism: a randomized controlled trial.docx by Lihua Zhou (478525)

    Published 2023
    “…We advocate a dietary sodium intake of 50 mmol/d for IHA patients.…”
  8. 9708

    Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties by Zhangchuan Peng (6330059)

    Published 2023
    “…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
  9. 9709

    Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties by Zhangchuan Peng (6330059)

    Published 2023
    “…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
  10. 9710

    Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties by Zhangchuan Peng (6330059)

    Published 2023
    “…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
  11. 9711

    Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties by Zhangchuan Peng (6330059)

    Published 2023
    “…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
  12. 9712

    Bending–Spinning Produces Silkworm and Spider Silk with Enhanced Mechanical Properties by Zhangchuan Peng (6330059)

    Published 2023
    “…In this study, the angle of freshly secreted silkworm (FS-S) silk was revealed to be 70.23°–87.93° and that of freshly secreted spider major ampullate (FS-MA) silk to be 0°–50°. Furthermore, the mechanical properties of FS-S silk and FS-MA silk changed after bending, first increasing and then decreasing as the bending angle was increased (0°–360°). …”
  13. 9713
  14. 9714
  15. 9715

    The effect of POm E-stimulation is time-dependent. by Carlos Castejon (2182382)

    Published 2016
    “…<p>This figure shows the change in mean sensory response magnitude by different POm E-stimulation intervals (50–1000 ms) before whisker stimulus. …”
  16. 9716
  17. 9717
  18. 9718
  19. 9719
  20. 9720

    Ultraflexible Oxide Fibers with an Amorphous Silica Interfacial Layer on Zirconia Nanograins by Dehua Ma (500180)

    Published 2025
    “…The design of flexible, bendable, and high-strength ZSFMs offers a method for using brittle ceramic components in military and civilian applications and many other fields.…”