Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
event decrease » cement decreases (Expand Search), levels decreased (Expand Search)
point decrease » point increase (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
event decrease » cement decreases (Expand Search), levels decreased (Expand Search)
point decrease » point increase (Expand Search)
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941
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942
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943
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944
Key safety measures including adverse events.
Published 2025“…Waist circumference (mean change (MC) −2.23 cm; 95% CI [−3.98, −0.49]; <i>p</i> = 0.01), BMI (MC −0.49 kg/m<sup>2</sup>; 95% CI [−0.88, −0.10[; <i>p</i> = 0.01), and android fat mass measured by DXA (MC −167 g; 95% CI [−264, −71[; <i>p</i> < 0.001) decreased in the COCP group over the study period whilst there was no statistically significant changes in these parameters in the metformin only group when compared to baseline.. …”
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945
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946
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947
Adverse event list.
Published 2025“…No statistically significant improvements were seen in the Montreal Cognitive Assessment (MoCA) (mean decrease −0.73; 95% CI; −2.1, 0.62; <i>p</i> = 0.255), Epworth Sleepiness Scale (mean increase 0.09; 95% CI; −2.6, 2.8; <i>p</i> > 0.999), Beck Depression Inventory (BDI) (mean decrease −1.27; 95% CI; −3.8, 1.3; <i>p</i> = 0.257), and the Starkstein Apathy Scale (mean increase 0.36; 95% CI; −1.6, 2.4; <i>p</i> = 0.822). …”
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948
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949
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950
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951
Comparison of GHQ-12 total scores pre- and post- guideline change in the mask-wearing behavior.
Published 2025Subjects: -
952
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953
Multiple linear regression analysis for psychological distress (GHQ-12 scores).
Published 2025Subjects: -
954
Amplitude for A/L = 0.29.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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955
Top view of the experimental setup.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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956
Amplitude for A/L = 0.338.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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957
Parameters of energy harvesting.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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958
Graph for Max Amplitude/Length at G<sub>y</sub> = 0.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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959
Amplitude for A/L = 0.02.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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960
Graph for maximum Frequency at G<sub>y</sub> = 0.
Published 2025“…The flapping frequency, amplitude, and optimal power of the rough cylinders were analyzed and compared with that of smooth cylinders experimentally, and the optimum point () in terms of power was attained. Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”