Showing 281 - 300 results of 20,715 for search '(( 5 ((nn decrease) OR (mean decrease)) ) OR ( 100 ((nm decrease) OR (a decrease)) ))', query time: 0.63s Refine Results
  1. 281

    The SW480 cells were treated with the S100A1 (blue, Lanes 2, 3 and 4). by Md. Imran Khan (4853302)

    Published 2019
    “…<p>Decrease in fold was observed when treated with the complex of 100 nM S100A4-S100A1 (green) and value of <i>p</i> is considering as <i>p</i> ≤ 0.05.…”
  2. 282
  3. 283
  4. 284

    Fig 9 - by Deepu Dowarha (5673440)

    Published 2020
    Subjects:
  5. 285
  6. 286
  7. 287
  8. 288

    Fig 16 - by Deepu Dowarha (5673440)

    Published 2020
    Subjects:
  9. 289
  10. 290
  11. 291
  12. 292

    In Situ Observation of the Movement of Magnetic Particles in Polyurethane Elastomer Densely Packed Magnetic Particles Using Synchrotron Radiation X‑ray Computed Tomography by Kejun Chen (10781400)

    Published 2022
    “…The orientation angle for magnetic elastomers with <i>ϕ</i> = 0.24 was approximately 55° at 0 mT and decreased remarkably with the magnetic field. At magnetic fields above 150 mT, the orientation angle gradually decreased with the field and showed a constant value of 38° at 300 mT, suggesting that magnetic particles move and form a chain-like structure although the chains do not align perfectly in the direction of the magnetic field. …”
  13. 293

    In Situ Observation of the Movement of Magnetic Particles in Polyurethane Elastomer Densely Packed Magnetic Particles Using Synchrotron Radiation X‑ray Computed Tomography by Kejun Chen (10781400)

    Published 2022
    “…The orientation angle for magnetic elastomers with <i>ϕ</i> = 0.24 was approximately 55° at 0 mT and decreased remarkably with the magnetic field. At magnetic fields above 150 mT, the orientation angle gradually decreased with the field and showed a constant value of 38° at 300 mT, suggesting that magnetic particles move and form a chain-like structure although the chains do not align perfectly in the direction of the magnetic field. …”
  14. 294

    Dysregulated alternative splicing in DM1 hiNeurons at 10 DPI. by Mougina K. Eltahir (12988153)

    Published 2022
    “…(d) Scatter plots pertaining to Fig 5c show decreased inclusion of <i>MAPT</i> e2 (top), <i>CSNK1D</i> e9 (bottom left) and <i>MPRIP</i> e9 (bottom right) in DM1 hiNeurons. …”
  15. 295
  16. 296
  17. 297
  18. 298
  19. 299
  20. 300