Showing 19,281 - 19,300 results of 102,951 for search '(( a web decrease ) OR ( 5 ((point decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 2.01s Refine Results
  1. 19281

    Image_5_The Association Between Alveolar Dead Space Fraction and Mortality in Pediatric Acute Respiratory Distress Syndrome: A Prospective Cohort Study.TIF by Sheow Boon Oh (12157812)

    Published 2022
    “…</p>Results<p>Sixty-nine PARDS patients with a median (interquartile range) age of 4.5 (0.8, 10.6) years were included in this analysis. …”
  2. 19282

    DA-dip detectable region in the competitive model. by Hidetoshi Urakubo (578508)

    Published 2021
    “…<p>(A) <i>AC</i><sub>primed</sub> is observed under the stepwise decreasing signal of DA. …”
  3. 19283

    Data_Sheet_1_Catheter-Based Therapies Decrease Mortality in Patients With Intermediate and High-Risk Pulmonary Embolism: Evidence From Meta-Analysis of 65,589 Patients.DOCX by Arkadiusz Pietrasik (12879863)

    Published 2022
    “…</p>Objective<p>We conducted a systematic review with meta-analysis to compare the efficacy and safety of CDT and ST in intermediate-high and high-risk PE.…”
  4. 19284

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  5. 19285

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  6. 19286

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  7. 19287

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  8. 19288
  9. 19289

    S1 Data - by Richard Junior Zapata Dongo (17912565)

    Published 2025
    “…In addition, our analysis using bioinformatics indicated that ABT-199 not only targets BCL2 but also binds to the active site of all ALK mutants, it was contrasted by <i>in vitro</i> ALK kinase activity inhibition by ABT-199 (5.5 μM). This interaction was further supported by a significant decrease of ALK phosphorylation in single and combination treatment with 300nM ABT-199. …”
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  14. 19294

    List of DESs prepared in this work. by Hossam K. Abdrabou (16436541)

    Published 2023
    “…The results showed that the addition of small amounts of water, e.g., 5 and 10 wt% during preparation, can significantly decrease the viscosity of the resulting DESs, up to 25% at room temperature, while maintaining the high CO<sub>2</sub> absorption capacity and high thermal stability. …”
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  17. 19297

    RT-qPCR Primer. by Dequan Wang (6007007)

    Published 2024
    “…The findings of the current study revealed a significant decrease in miR-1247-3p expression in CRC cells, especially those resistant to drugs. …”
  18. 19298
  19. 19299

    miR-1247-3p plasmid. by Dequan Wang (6007007)

    Published 2024
    “…The findings of the current study revealed a significant decrease in miR-1247-3p expression in CRC cells, especially those resistant to drugs. …”
  20. 19300

    Dual luciferase primer. by Dequan Wang (6007007)

    Published 2024
    “…The findings of the current study revealed a significant decrease in miR-1247-3p expression in CRC cells, especially those resistant to drugs. …”