Showing 141 - 160 results of 58,610 for search '(((( i values decrease ) OR ( ((al large) OR (a large)) decrease ))) OR ( i large increases ))', query time: 2.38s Refine Results
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    <b>Supporting data for manuscript</b> "<b>Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins</b>" by Kira Shaw (18796168)

    Published 2025
    “…<p dir="ltr">The CSV file 'Eyreetal_DrainingVein_SourceData' contains the averaged time series traces and extracted metrics from individual experiments used across Figures 1-5 in the manuscript "Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins". …”
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    The effect of tensile feedback on constrictions in a disrupted zone with decreased constriction probability. by Michael C. Holcomb (11084420)

    Published 2021
    “…<p>(<b>A,B</b>) Simulation snapshots for the AGF model with a band of cells whose constriction probability is decreased by the factor <i>α</i><sub>r</sub> = 0.6 (top) 0.4 (middle) and 0.2 (bottom) relative to the probability outside the affected zone. …”
  4. 144

    Data_Sheet_1_Decreased modular segregation of the frontal–parietal network in major depressive disorder.docx by Zhihui Lan (13135119)

    Published 2022
    “…Fifty-one MDD patients and forty-three matched healthy controls (HC) were recruited in the present study. …”
  5. 145

    Data_Sheet_1_Phenotypic Clumping Decreases With Flock Richness in Mixed-Species Bird Flocks.csv by Priti Bangal (9979259)

    Published 2021
    “…We examined the relationship between phenotypic clumping and flock richness using four variables—body size, foraging behavior, foraging height and taxonomic relatedness. Using a null model approach, we found that small flocks were more phenotypically clumped for body size than expected by chance; however, phenotypic clumping decreased as flocks increased in size and approached expected phenotypic variation in large flocks. …”
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    Gravity-Guided Growth of Large-Area High-Quality Two-Dimensional Ruddlesden–Popper Perovskite Thin Films for Stable Ultraviolet Photodetectors by Tong Guo (158839)

    Published 2021
    “…This work provides a promising solution for scalable fabrication of the large-area high-quality 2D perovskite thin films that can serve as a good candidate for stable photodetectors.…”
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    Data_Sheet_1_The Proximal Drivers of Large Fires: A Pyrogeographic Study.docx by Hamish Clarke (8666307)

    Published 2020
    “…As in most fire-prone environments, the majority of annual burned area is due to a relatively small number of large fires. We train and test an Artificial Neural Network’s ability to predict spatial patterns in the probability of large fires (>1,250 ha) in forests and grasslands as a function of proxies of the four major controls on fire activity. …”
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    Table_1_Variation of Small and Large Wild Bee Communities Under Honeybee Pressure in Highly Diverse Natural Habitats.DOCX by Imre Demeter (11780864)

    Published 2021
    “…<p>During the study, the honeybee effects on wild bees were tested and hypothesized that smaller distances from beehives will increase competitions between honeybees and wild bees, while greater distances will have a deleterious effect on competition. …”
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    Kit-mediated autophagy suppression driven by a viral oncoprotein emerges as a crucial survival mechanism in Merkel cell carcinoma by Hao Shi (158171)

    Published 2025
    “…</p> <p><b>Abbreviation</b>: 3-MA, 3-methyladenine; AL, autolysosome; AP, autophagosome; Baf-A1, bafilomycin A<sub>1</sub>; BARA, β-α repeated autophagy specific domain; BH3, BCL2 homology 3 domain; CCD, coiled-coil domain; CHX, cycloheximide; Co-IP, co-immunoprecipitation; CQ, chloroquine; CTR, control; DAPI, 4′,6-diamidino-2-phenylindole; EBSS, Earle’s balanced salt solution; ECD, evolutionarily conserved domain; EEE, three-tyrosine phosphomimetic mutations Y229E Y233E Y352E; ER, endoplasmic reticulum; FFF, three-tyrosine non-phosphomimetic mutations; FFPE, formalin-fixed paraffin-embedded; FL, full-length; GIST, gastrointestinal stromal tumor; IB, immunoblotting; IHC, immunohistochemistry; KIT-HEK293, KIT stably expressing HEK293 cells; KRT20/CK20, keratin 20; LT, large T-antigen; LT339, MCPyV truncated LT antigen; LTco, codon-optimized MCPyV LT antigen; MCC, Merkel cell carcinoma; MCPyV<sup>−</sup>, MCPyV-negative; MCPyV, Merkel cell polyomavirus; MCPyV<sup>+</sup>, MCPyV-positive; PARP1, poly(ADP-ribose) polymerase 1; PCI, pan-caspase inhibitor; PI, propidium iodide; PtdIns3K, class III phosphatidylinositol 3-kinase; PtdIns3P, phosphatidylinositol-3-phosphate; RB1, RB transcriptional corepressor 1; RTKs, receptor tyrosine kinases; KITLG/SCF, KIT ligand; sT, small T-antigen; sTco, codon-optimized MCPyV sT antigen; T-B, Tat-BECN1; T-S, Tat-scrambled; TEM, transmission electron microscopy.…”
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    Image 1_Large scale deletion and rebalancing within the k1C kafirin family in sorghum.tif by Tyler W. Ferris (22481194)

    Published 2025
    “…Despite confirming a ~400-kb deletion in the k1C family of both edited lines encompassing seven active genes, no significant decrease was observed in k1C expression or compensatory increase in non-kafirin proteins. …”
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