Showing 361 - 380 results of 68,378 for search '(( e non decrease ) OR ( 5 ((((a decrease) OR (mean decrease))) OR (we decrease)) ))', query time: 0.65s Refine Results
  1. 361

    Spatial information of excitatory neurons in APP/PS1 mice are decreased in dCA1 and vCA1. by Udaysankar Chockanathan (18510288)

    Published 2024
    “…<p>(A) In dCA1, spatial information was decreased in APP/PS1 mice relative to C57BL/6 controls (mean ± std: C57BL/6 = 0.134 ± 0.050, APP/PS1 = 0.132 ± 0.054, p < 0.01, two-sided Wilcoxon rank-sum test, n<sub>C57BL/6</sub> = 229 units from 5 recording sessions, n<sub>APP/PS1</sub> = 124 units from 4 recording sessions). …”
  2. 362

    Decreased Incidence of Type 1 Diabetes in Young Finnish Children by Anna Parviainen (9343391)

    Published 2020
    “…In the middle age group, a significant decrease was observed only among females. …”
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    Data_Sheet_1_Soil Properties Interacting With Microbial Metagenome in Decreasing CH4 Emission From Seasonally Flooded Marshland Following Different Stages of Afforestation.docx by Qian Zhang (49333)

    Published 2022
    “…Compared to the non-afforested land use types, net CH<sub>4</sub> emission decreased from bare land, natural vegetation and 5-year forest plantation and transitioned to net CH<sub>4</sub> sinks in the 10- and 20-year forest plantations. …”
  18. 378

    Temperature-Responsive Peptide–Nucleotide Coacervates by Tiemei Lu (4244926)

    Published 2021
    “…Partitioning of two dyes proves that the local hydrophobicity inside the peptide–nucleotide coacervates is different for every nucleoside triphosphate. We derive a simple relation between the temperature and salt concentration at the critical point based on a mean-field model of phase separation. …”
  19. 379

    Temperature-Responsive Peptide–Nucleotide Coacervates by Tiemei Lu (4244926)

    Published 2021
    “…Partitioning of two dyes proves that the local hydrophobicity inside the peptide–nucleotide coacervates is different for every nucleoside triphosphate. We derive a simple relation between the temperature and salt concentration at the critical point based on a mean-field model of phase separation. …”
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