Showing 8,661 - 8,680 results of 92,418 for search '(( a ((we decrease) OR (teer decrease)) ) OR ( i ((largest decrease) OR (larger decrease)) ))', query time: 1.05s Refine Results
  1. 8661

    App user onboarding trends. by Henri Claude Moungui (22227043)

    Published 2025
    “…</p><p>Methods</p><p>We conducted a pilot quasi‑experimental before‑and‑after study comparing three 6‑month phases—pre‑campaign, campaign, and post‑campaign. …”
  2. 8662

    App user base growth trends. by Henri Claude Moungui (22227043)

    Published 2025
    “…</p><p>Methods</p><p>We conducted a pilot quasi‑experimental before‑and‑after study comparing three 6‑month phases—pre‑campaign, campaign, and post‑campaign. …”
  3. 8663

    Data_sheet_1_Mangrove Loss and Gain in a Densely Populated Urban Estuary: Lessons From the Guangdong-Hong Kong-Macao Greater Bay Area.docx by Heng Wang (76752)

    Published 2021
    “…<p>Understanding the recent changes in mangrove adjacent to mega-cities is critical for conservation, management, and policymaking in coastal zones with fast population growth and global change. Here we investigated mangrove area changes in one of the world’s largest urban areas near the main estuaries in the Guangdong-Hong Kong-Macao Greater Bay Area (GBA). …”
  4. 8664

    Image_1_Involvement of the Precuneus/Posterior Cingulate Cortex Is Significant for the Development of Alzheimer’s Disease: A PET (THK5351, PiB) and Resting fMRI Study.TIFF by Takamasa Yokoi (5821856)

    Published 2018
    “…All participants underwent resting state functional MRI and <sup>18</sup>F-THK5351 PET scans. We used scaled subprofile modeling/principal component analysis (SSM/PCA) to reduce the complexity of multivariate data and to identify patterns that exhibited the largest statistical effects (variances) in THK5351 concentration in AD and healthy controls.…”
  5. 8665

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…The hepatotoxicity of acetaminophen (APAP) is generally attributed to the formation of a reactive quinoneimine metabolite (NAPQI) that depletes glutathione and covalently binds to hepatocellular proteins. …”
  6. 8666

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…The hepatotoxicity of acetaminophen (APAP) is generally attributed to the formation of a reactive quinoneimine metabolite (NAPQI) that depletes glutathione and covalently binds to hepatocellular proteins. …”
  7. 8667

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…The hepatotoxicity of acetaminophen (APAP) is generally attributed to the formation of a reactive quinoneimine metabolite (NAPQI) that depletes glutathione and covalently binds to hepatocellular proteins. …”
  8. 8668

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…The hepatotoxicity of acetaminophen (APAP) is generally attributed to the formation of a reactive quinoneimine metabolite (NAPQI) that depletes glutathione and covalently binds to hepatocellular proteins. …”
  9. 8669

    Literature search and screening process. by Xiaohong Mai (19338585)

    Published 2024
    “…<div><p>Increasing evidence has shown that gut microbiota (GM) was involved in the pathophysiology of musculoskeletal disorders through multiple pathways such as protein anabolism, chronic inflammation and immunity, and imbalanced metabolism. We performed a systematic review and meta-analysis of human studies to evaluate GM diversity differences between individuals with and without sarcopenia, and explore bacteria with potential to become biomarkers. …”
  10. 8670

    Sampling locations for banana aphids. by Aime Cheoh Enoh (20141758)

    Published 2024
    “…Four isolates (BIITAC6.2.2, BIITAC10.3.3, BIITAC8.1.5, and MIITAC6.2.2) were highly pathogenic, causing greater than 75% aphid mortality in all populations. A significant decrease in aphid fecundity was observed with BIITAC6.2.2, MIITAC6.2.2, and BIITAC10.3.3. …”
  11. 8671

    Mean value of the longitudinal scaling exponent as a function of the growth rate threshold <i>b</i><sub><i>c</i></sub>. by Fabiano L. Ribeiro (4893388)

    Published 2020
    “…The mean value of decreases drastically as <i>b</i><sub><i>c</i></sub> increases. …”
  12. 8672

    Microbial ecology and biogeochemistry of hypersaline sediments in Orca Basin by Lisa M. Nigro (8741892)

    Published 2020
    “…Illumina and clone library surveys consistently detected MG-I Thaumarchaeota and halotolerant Deltaproteobacteria in the hypersaline anoxic sediments, but relative abundances of the KB1 lineage differed between the two sequencing methods. …”
  13. 8673

    Flowchart of the study population. by Anders H. Hjulmand (18476019)

    Published 2024
    “…Mean test scores varied by demographic and socioeconomic characteristics, most notably with education and labour market affiliation of parents. For every 1-point decrease in the test scores, there was a 0.95% (95% CI: 0.93%; 0.97%) lower probability of scoring B or higher in the ninth-grade exam and a 1.03% (95% CI: 1.00%; 1.05%) lower probability of completing high school within five years after graduating from lower secondary school. …”
  14. 8674

    Video_2_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.MP4 by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  15. 8675

    Video_1_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.MP4 by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  16. 8676

    Data_Sheet_1_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.PDF by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  17. 8677

    Data_Sheet_1_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.PDF by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  18. 8678

    Video_1_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.MP4 by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  19. 8679

    Video_2_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.MP4 by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”
  20. 8680

    Video_2_NudC L279P Mutation Destabilizes Filamin A by Inhibiting the Hsp90 Chaperoning Pathway and Suppresses Cell Migration.MP4 by Min Liu (45756)

    Published 2021
    “…However, the regulatory mechanism of filamin A stability remains unclear. Here, we find that nuclear distribution gene C (NudC), a cochaperone of heat shock protein 90 (Hsp90), is required to stabilize filamin A in mammalian cells. …”