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Data Sheet 3_Effects of aging on otolith morphology and functions in mice.xlsx
Published 2024“…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
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Data Sheet 8_Effects of aging on otolith morphology and functions in mice.xlsx
Published 2024“…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
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Data Sheet 1_Effects of aging on otolith morphology and functions in mice.docx
Published 2024“…Background<p>Increased fall risk caused by vestibular system impairment is a significant problem associated with aging. A vestibule is composed of linear acceleration-sensing otoliths and rotation-sensing semicircular canals. …”
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Amplitude for A/L = 0.29.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Top view of the experimental setup.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Amplitude for A/L = 0.338.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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1269
Parameters of energy harvesting.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Graph for Max Amplitude/Length at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Amplitude for A/L = 0.02.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Graph for maximum Frequency at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Graph for maximum Power at G<sub>y</sub> = 0.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Amplitude for A/L = 0.03.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Summary of experimentation results.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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Piezoelectric eel.
Published 2025“…Increased surface roughness significantly reduced power output, flapping frequency, and amplitude. …”
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