Showing 12,961 - 12,980 results of 13,152 for search '(( a ((larger decrease) OR (linear decrease)) ) OR ( a ((latent decrease) OR (largest decrease)) ))', query time: 0.50s Refine Results
  1. 12961

    Data Sheet 1_Predicting mortality in heart failure: BUN/creatinine ratio in MIMIC-III.csv by Changsen Zhu (20821991)

    Published 2025
    “…</p>Conclusions<p>Admission BCR values are non-linearly associated with mortality in heart failure patients, suggesting its utility as a prognostic tool in critical care.…”
  2. 12962

    Distribution of RNA-seq reads across CRPV genome. by Pengfei Jiang (282718)

    Published 2024
    “…No. JF303889.1) linearized at nt 7421 in one representative tissue sample (R4941) with a decreasing reads scale shown in the upper right corner. …”
  3. 12963

    Data_Sheet_1_Molecular Mechanics Study of Flow and Surface Influence in Ligand–Protein Association.PDF by Shivansh Kaushik (10775871)

    Published 2021
    “…When the xk263 diffusion flux increased, the effective xk263 concentration around HIVp, xk263–HIVp association time and binding probability decreased non-linearly regardless of interacting with the self-assembled monolayer surface or not. …”
  4. 12964

    Hepatitis E virus alters spermatozoa motility and morphology. by Kush K. Yadav (18585627)

    Published 2024
    “…PR–progressive motility of sperm (moving active, either linearly or in a circle, regardless of speed); NP–non-progressive motility (all other patterns of motility with absent progression. …”
  5. 12965

    Data_Sheet_1_Differences in nitrogen and phosphorus sinks between the harvest and non-harvest of Miscanthus lutarioriparius in the Dongting Lake wetlands.PDF by Zenghui Peng (2118727)

    Published 2022
    “…Similarly, except for the relative release index of nitrogen in the leaves, all the relative release indices decreased in the flood period. At the end of the in situ decomposition experiment, the relative release indices of both the nitrogen and phosphors were greater than zero, indicating that there was a net release of nitrogen and phosphorus. …”
  6. 12966

    Image1_To investigate the correlation between normal fetal biventricular myocardial function and gestational age using velocity vector imaging.jpeg by Min Hou (500737)

    Published 2023
    “…</p>Conclusion<p>In normal fetuses, the peak myocardial velocity of the biventricular segments showed a decreasing trend from the basal to the apical segment. …”
  7. 12967

    Centrosome growth by localised assembly and distributed disassembly. by Deb Sankar Banerjee (12890259)

    Published 2022
    “…<p>(A) Localized assembly around the centriole and disassembly throughout the pericentriolic matter generate a size-dependent disassembly rate which ensures robust size control. …”
  8. 12968

    Score of ultra-processed food consumption and its association with sociodemographic factors in the Brazilian National Health Survey, 2019 by Caroline dos Santos Costa (5942315)

    Published 2022
    “…After adjustment for confounders, the prevalence of consuming five or more subgroups of ultra-processed foods decreased linearly with age, increased linearly with wealth quintiles and it was higher in urban areas, in the Southeast and South regions (compared to the others) and in men. …”
  9. 12969

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  10. 12970

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  11. 12971

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  12. 12972

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  13. 12973

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  14. 12974

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  15. 12975

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  16. 12976

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  17. 12977

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  18. 12978

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  19. 12979

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  20. 12980

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”