Showing 5,601 - 5,620 results of 27,013 for search '(( 5 ((teer decrease) OR (nn decrease)) ) OR ( 50 ((we decrease) OR (a decrease)) ))', query time: 0.58s Refine Results
  1. 5601

    Items. by Samuel W. Terman (13584382)

    Published 2023
    “…<div><p>Epilepsy is a common, serious condition. Fortunately, seizure risk decreases with increasing seizure-free time on antiseizure medications (ASMs). …”
  2. 5602

    Survey feedback. by Samuel W. Terman (13584382)

    Published 2023
    “…<div><p>Epilepsy is a common, serious condition. Fortunately, seizure risk decreases with increasing seizure-free time on antiseizure medications (ASMs). …”
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    Molluscicidal activity and physiological toxicity of quaternary benzo[c]phenanthridine alkaloids (QBAs) from <i>Macleaya cordata</i> fruits on <i>Oncomelania hupensis</i> by Wenshan Ke (7490798)

    Published 2019
    “…We sought to identify a high-efficiency biogenic molluscicide against <i>Oncomelania</i> with low toxicity, to avoid chemical molluscicide contamination and toxicity in aquatic organisms. …”
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  10. 5610

    Climate complexity in the migratory cycle of <i>Ammodramus bairdii</i> by Alexander Peña-Peniche (5687786)

    Published 2018
    “…A continuous and alarming decrease of its populations has been observed over the last 50 years, and studying its seasonal distribution and associated climatic niches could help improve strategies for its conservation. …”
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  14. 5614

    PCAIs inhibit NCI-H23 cell line viability. by Matthew D. Gregory (19929096)

    Published 2024
    “…Polyisoprenylated Cysteinyl amide Inhibitors (PCAIs) constitute a group of potential cancer therapy agents that we designed to specifically disrupt and suppress hyperactive G-protein signaling, such as that caused by mutated RAS proteins. …”
  15. 5615

    PCAIs disrupt actin filaments in NCI-H23 cells. by Matthew D. Gregory (19929096)

    Published 2024
    “…Polyisoprenylated Cysteinyl amide Inhibitors (PCAIs) constitute a group of potential cancer therapy agents that we designed to specifically disrupt and suppress hyperactive G-protein signaling, such as that caused by mutated RAS proteins. …”
  16. 5616

    PCAIs suppress 3D NCI-H23 cell invasion. by Matthew D. Gregory (19929096)

    Published 2024
    “…Polyisoprenylated Cysteinyl amide Inhibitors (PCAIs) constitute a group of potential cancer therapy agents that we designed to specifically disrupt and suppress hyperactive G-protein signaling, such as that caused by mutated RAS proteins. …”
  17. 5617

    PCAIs suppress NCI-H23 cancer cell migration. by Matthew D. Gregory (19929096)

    Published 2024
    “…Polyisoprenylated Cysteinyl amide Inhibitors (PCAIs) constitute a group of potential cancer therapy agents that we designed to specifically disrupt and suppress hyperactive G-protein signaling, such as that caused by mutated RAS proteins. …”
  18. 5618

    PCAIs induce apoptosis in NCI-H23 cells. by Matthew D. Gregory (19929096)

    Published 2024
    “…Polyisoprenylated Cysteinyl amide Inhibitors (PCAIs) constitute a group of potential cancer therapy agents that we designed to specifically disrupt and suppress hyperactive G-protein signaling, such as that caused by mutated RAS proteins. …”
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