Showing 261 - 280 results of 70,799 for search '(( a point decrease ) OR ( 5 ((point decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 0.58s Refine Results
  1. 261
  2. 262
  3. 263
  4. 264
  5. 265
  6. 266
  7. 267

    Validation of primary screen hits reveals compounds that recapitulate increased spheroid size (swell) or decreased MUC5AC in the lumen. by Pranjali Beri (14945400)

    Published 2023
    “…Compounds that appeared to cause toxicity were identified by observing a significant decrease in spheroid counts in the swell readout or a significant decrease in the total nuclear intensity of the MUC5AC ratio readout. …”
  8. 268
  9. 269
  10. 270
  11. 271
  12. 272

    A multicopy <i>ASH1</i> plasmid increases <i>ASH1</i> mRNA and decreases <i>HO</i> mRNA levels. by Emily J. Parnell (6803422)

    Published 2020
    “…<i>ASH1</i> mRNA analysis under conditions of <i>ASH1</i> overexpression, using cell samples identical to those in <a href="http://www.plosgenetics.org/article/info:doi/10.1371/journal.pgen.1009133#pgen.1009133.g001" target="_blank">Fig 1E</a> (Tup1-V5 ChIP analysis). …”
  13. 273
  14. 274

    <strong>Figure 1.</strong> <strong>Actin filament depolymerization has no effect on the decrease in the cytosolic ATP level induced by blockade of ATP production in forebrain neuro... by Sabrina Holland (16557051)

    Published 2023
    “…<p> The growth cone was defined as the distal 10 microns of the axon shaft. If a growth cone exhibited lamellipodia then the distal most extent of the lamellipodium was taken as the distal most point on the growth cone, if not the distal most extent of the axon shaft was used as the defining distal point. …”
  15. 275
  16. 276

    Temperature-Responsive Peptide–Nucleotide Coacervates by Tiemei Lu (4244926)

    Published 2021
    “…Partitioning of two dyes proves that the local hydrophobicity inside the peptide–nucleotide coacervates is different for every nucleoside triphosphate. We derive a simple relation between the temperature and salt concentration at the critical point based on a mean-field model of phase separation. …”
  17. 277

    Temperature-Responsive Peptide–Nucleotide Coacervates by Tiemei Lu (4244926)

    Published 2021
    “…Partitioning of two dyes proves that the local hydrophobicity inside the peptide–nucleotide coacervates is different for every nucleoside triphosphate. We derive a simple relation between the temperature and salt concentration at the critical point based on a mean-field model of phase separation. …”
  18. 278
  19. 279
  20. 280