Showing 121 - 140 results of 71,797 for search '(((( 50 ngn decrease ) OR ( 10 we decrease ))) OR ( 50 ((n decrease) OR (nn decrease)) ))', query time: 0.69s Refine Results
  1. 121
  2. 122
  3. 123

    JS-10 phantom. by Masakazu Tsujimoto (22339504)

    Published 2025
    “…Image reconstruction was performed using three-dimensional-ordered subset expectation maximization, adjusting the product of subset and iteration (SI product; 60, 120, 180) and Gaussian filter parameters (8, 10, 12 mm). For the JS-10 phantom, we evaluated the dose linearity (DL), the recovery coefficient (RC) of individual rods, the scatter ratio (SR), and the coefficient of variation (CV). …”
  4. 124
  5. 125
  6. 126
  7. 127
  8. 128
  9. 129
  10. 130

    Table_10_Decrease of Clone Diversity in IgM Repertoires of HBV Chronically Infected Individuals With High Level of Viral Replication.pdf by Binbin Hong (9989819)

    Published 2021
    “…To investigate the characteristics of antibody repertoires in patients with chronic HBV infection, we performed Illumina sequencing and IMGT/HighV-QUEST analysis of B lymphocytes from healthy adults and the HBV carriers with high or low level of viral replication. …”
  11. 131

    DataSheet_2_A cyclic peptide-based PROTAC induces intracellular degradation of palmitoyltransferase and potently decreases PD-L1 expression in human cervical cancer cells.docx by Yu-Ying Shi (15975992)

    Published 2023
    “…This targeted degradation effect is enhanced with increasing doses and treatment duration, with a DC50 value much lower than that of linear peptides. …”
  12. 132

    DataSheet_1_A cyclic peptide-based PROTAC induces intracellular degradation of palmitoyltransferase and potently decreases PD-L1 expression in human cervical cancer cells.docx by Yu-Ying Shi (15975992)

    Published 2023
    “…This targeted degradation effect is enhanced with increasing doses and treatment duration, with a DC50 value much lower than that of linear peptides. …”
  13. 133
  14. 134
  15. 135
  16. 136
  17. 137
  18. 138
  19. 139
  20. 140