بدائل البحث:
linear decrease » linear increase (توسيع البحث)
larger decrease » marked decrease (توسيع البحث)
we decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), nn decrease (توسيع البحث)
linear decrease » linear increase (توسيع البحث)
larger decrease » marked decrease (توسيع البحث)
we decrease » _ decrease (توسيع البحث), a decrease (توسيع البحث), nn decrease (توسيع البحث)
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1921
Study selection flow diagram.
منشور في 2025"…</p><p>Results</p><p>From the initial 1826 articles identified, we included 28 studies from eight countries in a total of 6411 nonagenarians. …"
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1922
Inclusion and exclusion criteria.
منشور في 2025"…</p><p>Results</p><p>From the initial 1826 articles identified, we included 28 studies from eight countries in a total of 6411 nonagenarians. …"
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1923
Key characteristics of the included publications.
منشور في 2025"…</p><p>Results</p><p>From the initial 1826 articles identified, we included 28 studies from eight countries in a total of 6411 nonagenarians. …"
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1924
Weight and plasma biochemistry.
منشور في 2025"…In the present study, we found significant diurnal rhythmicity of <i>Casr</i>, encoding the Cinacalcet drug target in hyperplastic parathyroid glands (p = 0.006). …"
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1925
Baseline clinical data.
منشور في 2025"…In vitro experiments showed that the addition of Gal-9 led to a significant increase in the proportion of TIM-3<sup>+</sup>M1 and TIM-3<sup>+</sup>M2 macrophages and a decrease in M1 cell proportions and M1/M2 ratio. …"
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1926
Tailoring Ionic Conductivity of Polymeric Ionic Liquid Block Copolymers through Morphology Control
منشور في 2025"…We further show that transport-blocking defects are largely absent from PIL-rich morphologies having nonionic cylindrical or spherical domains embedded in a PIL matrix. …"
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1927
Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity
منشور في 2025"…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …"
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1928
Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity
منشور في 2025"…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …"
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1929
Alkenyl/Thiol Co-Functionalized Titanium-Oxo Nanoclusters Enable Synergistic Lithography for Enhanced Resolution and Sensitivity
منشور في 2025"…Such dual cross-linkable group functionalization brought additional thiol–ene click reactions upon exposure to enhance intercluster polymerization, which significantly improved the lithography sensitivity of TOCs, with the required exposure energy being reduced by over 70% (decreasing from >1000 μC/cm<sup>2</sup> of alkenyl-TOC to <300 μC/cm<sup>2</sup> of alkenyl/thiol-TOC). …"
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1930
Defect-Triggered Reversible Phase Transformation for Boosting Electrochemical Performance of Coordination Polymers
منشور في 2024"…Contrary to this common sense, here we demonstrate that both implanting defects and eliminating defects can significantly boost the specific capacitance of the defect-engineered CPs (DECPs), which are about 1.23 and 1.62 times that of the pristine CP, respectively, without loss of rate capability even after 10,000 charge–discharge cycles. …"
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1931
Defect-Triggered Reversible Phase Transformation for Boosting Electrochemical Performance of Coordination Polymers
منشور في 2024"…Contrary to this common sense, here we demonstrate that both implanting defects and eliminating defects can significantly boost the specific capacitance of the defect-engineered CPs (DECPs), which are about 1.23 and 1.62 times that of the pristine CP, respectively, without loss of rate capability even after 10,000 charge–discharge cycles. …"
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1932
Primer sequences.
منشور في 2024"…We examined the mRNA expression of <i>Ddit3</i> (CHOP) and <i>Casp3</i> (caspase-3) on day one after the surgery; mRNA expression of both genes appeared to decrease in the KUS121 group, as compared with the control group, although differences between groups were not significant. …"
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1933
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1934
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1935
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1936
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1937
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1938
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1939
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
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1940
Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature
منشور في 2024"…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"