Showing 261 - 280 results of 105,872 for search '(( 1 wt decrease ) OR ( 5 ((point decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 1.74s Refine Results
  1. 261
  2. 262
  3. 263
  4. 264
  5. 265
  6. 266
  7. 267
  8. 268
  9. 269
  10. 270
  11. 271
  12. 272
  13. 273
  14. 274

    rVλ6Wil fibrils cause a decrease in cardiomyocytes MTT reduction without inducing cell death. by Helen P. McWilliams-Koeppen (116503)

    Published 2015
    “…(C) Cell number, quantified using crystal violet (black) did not decrease over 72 h of incubation with 1 μM rVλ6Wil fibrils despite a decrease in MMT reduction (grey; n = 3 samples per time point). …”
  15. 275

    The corticospinal pathway is more susceptible to iterative stimulation and have lower conduction velocity in <i>taiep</i> rats. by Jose R. Eguibar (8563227)

    Published 2024
    “…<p><b>A)</b> Motor-evoked potentials (MEPs) induced by iterative electrical stimulation on the cerebral cortex showed a decrease in their amplitudes when increasing the stimulation rate from 5 to 30 Hz in <i>taiep</i> (blue squares), but not in WT rats (empty circles). …”
  16. 276

    Decrease in number of activated macrophages in demyelinated nerves subjected to 1hr ES. by Nikki A. McLean (643606)

    Published 2014
    “…Note: ES results in a significant decrease in the ED-1 IF 10d post-LPC (5d post-ES; K) and 12d post-LPC (7d post-ES; N) relative to LPC only in a pattern suggestive of movement toward lateral edges and egress (arrow). …”
  17. 277
  18. 278
  19. 279
  20. 280

    Decreased proliferation and increased apoptosis in <i>Mab21l2</i> mutant embryos. by Yohei Saito (180130)

    Published 2012
    “…Scale bars represent 100 µm (A, D, H, K) and 50 µm (N and P). (R) Quantitative RT-PCR for genes regulating cell proliferation and apoptosis (<i>N-myc</i>, <i>Id2</i>, <i>Cyclin D1</i>, <i>Cyclin D2</i>), marker genes of myocardial differentiation (<i>Anf</i>, <i>Chisel</i>, <i>Mlc2v</i>), genes essential for the development of the trabecular myocardium (<i>Erbb2</i>, <i>Erbb4</i>, <i>Bmp10</i>), genes essential for heart development (<i>Nkx2.5</i>, <i>Gata4</i>), and endocardial transcripts (<i>Flk1</i>, <i>Tie1</i>, <i>Tie2</i>) normalized to <i>Gapdh</i> expression using RNA from dissected hearts of E11.5 WT and <i>Mab21l2</i> mutant (−/−) embryos. …”