Showing 141 - 160 results of 25,512 for search '(( 50 a decrease ) OR ((( 50 ((teer decrease) OR (nn decrease)) ) OR ( a point decrease ))))', query time: 0.57s Refine Results
  1. 141
  2. 142
  3. 143

    The primers related to FAM50A. by Longhai Li (4052044)

    Published 2025
    “…Knockdown of FAM50A decreased cell proliferation ability, the proportion of EdU positive cells, and the number of CRC cell colonies, whereas overexpressing FAM50A promoted proliferative phenotypes. …”
  4. 144
  5. 145
  6. 146
  7. 147
  8. 148
  9. 149
  10. 150

    Temporal profiles of the key BO-NN features. by Julia Berezutskaya (9080269)

    Published 2020
    “…Right plot show the gradual decrease in the TM tuning for the features highlighted in <b>c</b> as well as the gradual increase in the temporal response profile (i.e. optimal shifts for the prediction of the key BO-NN features using Praat features shown in <b>a</b>). …”
  11. 151
  12. 152
  13. 153
  14. 154

    Transcriptomics Points-of-Departure (tPODs) to Support Hazard Assessment of Benzo[<i>a</i>]pyrene in Early-Life-Stage Rainbow Trout by Alper James Alcaraz (20977320)

    Published 2025
    “…This study aimed to derive benchmark concentrations from RNaseq data (transcriptomic points-of-departure; tPOD) from a short-term exposure study with early life stages of rainbow trout (RBT; Oncorhynchus mykiss) using benzo[<i>a</i>]pyrene (B[<i>a</i>]P) as the model compound. tPODs were then calibrated with higher organizational-level responses observed during an extended 28 day exposure period. …”
  15. 155

    Population dynamics modeling of split<sup>50cM</sup> <i>ClvR</i> V1 drive introduced at different release percentages, and an example illustrating the role that LOF alleles play in... by Georg Oberhofer (3401438)

    Published 2021
    “…In all panels in which fitness costs are present <b>(D-F)</b> there is a 50% release of WT in generation 150. Allele and genotype frequencies after this point are indicated with dotted lines. …”
  16. 156
  17. 157
  18. 158
  19. 159
  20. 160