Showing 7,021 - 7,040 results of 106,149 for search '(( a we decrease ) OR ( 50 ((((mean decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 1.45s Refine Results
  1. 7021

    AZ2.0 by Binay Panda (768771)

    Published 2015
    “…The updated genome assembly (v2.0) yielded 3- and 3.5-fold increase in N50 and N75, <br>respectively; 2.6-fold decrease in the total number of scaffolds; 1.25-fold increase in the number of <br>valid transcriptome alignments; 13.4-fold less mis-assembly and 1.85-fold increase in the <br>percentage repeat, resulted due to removal of mis-assembly and closure of gaps fromover the earlier <br>assembly (v1.0). …”
  2. 7022
  3. 7023
  4. 7024

    Decrease of neuronal FKBP4/FKBP52 modulates perinuclear lysosomal positioning and MAPT/Tau behavior during MAPT/Tau-induced proteotoxic stress by Béatrice Chambraud (3371201)

    Published 2021
    “…In this study, we demonstrate that FKBP4 decrease in a human neuronal cell line (SH-SY5Y) and in dorsal root ganglion (DRG) neurons from human MAPT<sup>P301S</sup> transgenic mice affected the function of the autophagy-lysosomal system under MAPT induced proteotoxic stress conditions. …”
  5. 7025
  6. 7026
  7. 7027
  8. 7028
  9. 7029

    Elevation and latitude drives structure and tree species composition in Andean forests: Results from a large-scale plot network by Agustina Malizia (459844)

    Published 2020
    “…We used the Andean Forest Network (Red de Bosques Andinos, <a href="https://redbosques.condesan.org/" target="_blank">https://redbosques.condesan.org/</a>) database which, at present, includes 491 forest plots (totaling 156.3 ha, ranging from 0.01 to 6 ha) representing a total of 86,964 identified tree stems ≥ 10 cm diameter at breast height belonging to 2341 identified species, 584 genera and 133 botanical families. …”
  10. 7030
  11. 7031
  12. 7032

    Table_1_Cycling Quiescence in Temozolomide Resistant Glioblastoma Cells Is Partly Explained by microRNA-93 and -193-Mediated Decrease of Cyclin D.XLS by Jessian L. Munoz (6389198)

    Published 2019
    “…Since Cyclin D1 is a major regulator of cell cycle progression, we performed cause-effect studies and showed a blunting effects of miR-93 and -193 in Cyclin D1 expression. …”
  13. 7033

    On-treatment decrease of NKG2D correlates to early emergence of clinically evident hepatocellular carcinoma after interferon-free therapy for chronic hepatitis C by Po-sung Chu (549427)

    Published 2017
    “…The decrease of NKG2D until EOT was predictive of early HCC emergence at a cut-off of -52% (AUC = 0.92).…”
  14. 7034

    A H<sub>2</sub>S-Nampt Dependent Energetic Circuit Is Critical to Survival and Cytoprotection from Damage in Cancer Cells by Reiko Sanokawa-Akakura (254909)

    Published 2014
    “…Consistent with existence of a H<sub>2</sub>S-Nampt energetic circuit, in damage recovered cancer cells, H<sub>2</sub>S, Nampt and ATP production exhibit a significant correlation. …”
  15. 7035

    Baseline patient characteristics. by Oscar F. C. van den Bosch (22184246)

    Published 2025
    “…However, the effects of these agents on respiratory variability, which reflects the adaptability of the respiratory system, have not been thoroughly explored. We evaluated these effects in a randomized controlled pilot trial. …”
  16. 7036

    Table1_Mitochondrial DNA mutations can influence the post-implantation development of human mosaic embryos.xlsx by Akifumi Ijuin (16817115)

    Published 2023
    “…We hypothesized that mitochondrial function, one of the most critical factors for embryonic development, can influence human post-implantation embryonic development, including a decrease of aneuploid cells in mosaic embryos.…”
  17. 7037

    Table5_Mitochondrial DNA mutations can influence the post-implantation development of human mosaic embryos.DOCX by Akifumi Ijuin (16817115)

    Published 2023
    “…We hypothesized that mitochondrial function, one of the most critical factors for embryonic development, can influence human post-implantation embryonic development, including a decrease of aneuploid cells in mosaic embryos.…”
  18. 7038
  19. 7039
  20. 7040