Showing 1,301 - 1,320 results of 42,357 for search '(( 50 ((ng decrease) OR (((mean decrease) OR (a decrease)))) ) OR ( a point decrease ))', query time: 0.93s Refine Results
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    Risk assessment for hospital admission in patients with COPD; a multi-centre UK prospective observational study by Jilles M. Fermont (3746068)

    Published 2020
    “…Poorer performance of SPPB was associated with both higher rate (IRR 1.08 per 1 point decrease, 95% CI 1.01 to 1.14) and increased length of stay (IRR 1.18 per 1 point decrease, 95% CI 1.10 to 1.27) for hospitalised AECOPD. …”
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    Proliferative keratinocytes and BrdU-positive label retaining cells are decreased in <i>Med1<sup>epi−/−</sup></i> mice. by Fumihito Noguchi (615295)

    Published 2014
    “…Scale bars = 50 µm. B: Quantification of proliferating cells on days 1, 3 and 5 after injury. …”
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    The proliferation and angiogenesis of the fat pad. by Yunjun Liao (728631)

    Published 2015
    “…<p>A: The number of Ki67+ cells (white arrow) was increased during expension (day 0 left, day 14 right). …”
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    Coumarin-Annelated Regioisomeric Heptahelicenes: Influence of Helicity on Excited-State Properties and Chiroptical Properties by Arindam Mukhopadhyay (1961227)

    Published 2019
    “…Two regioisomeric pairs of heptahelical mono- and biscoumarins that are differentiated by “<i>inward</i>” and “<i>outward</i>” disposition of the pyran-2-one moiety have been synthesized and investigated to understand the influence of helicity on excited-state and chiroptical properties. A slight variation in the helicities is found to manifest in contrasting excited-state properties of coumarin-annelated heptahelicenes; in addition to the intramolecular charge transfer, structural relaxation in the excited state is shown from theoretical calculations to cause decrease in the fluorescence quantum yield for a system with higher helicity. …”
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    Multiple Knee Points in the Degradation of a Commercial Lithium-ion Battery: A Case Study of the NCM/Graphite System (Supporting Information) by Yui FUJIHARA (17772971)

    Published 2025
    “…<div>Lithium-ion batteries are used on an increasingly large scale, making their lifetime prediction a critical issue. Especially, a rapid decrease in capacity after the mild degradation period, referred to as the knee point, is often observed, and thus understanding the knee point and its mechanism is a critical issue. …”
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