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mean decrease » a decrease (Expand Search)
ppm decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
ms decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
c decrease » c decreased (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
50 mean » 20 means (Expand Search)
50 ppm » 5 ppm (Expand Search)
50 ms » 50 mg (Expand Search), 50 mm (Expand Search)
50 c » 5 c (Expand Search), 50 μ (Expand Search), 50 _ (Expand Search)
mean decrease » a decrease (Expand Search)
ppm decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
ms decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
c decrease » c decreased (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
50 mean » 20 means (Expand Search)
50 ppm » 5 ppm (Expand Search)
50 ms » 50 mg (Expand Search), 50 mm (Expand Search)
50 c » 5 c (Expand Search), 50 μ (Expand Search), 50 _ (Expand Search)
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Repetitive stress induces a decrease in sound-evoked activity.
Published 2025“…Marked at time = 0 is the onset of the 100-ms white noise. (c) Top: Mean activity change, mean stress activity minus mean baseline activity, calculated per cell at different noise intensities. …”
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Pulse Ultrasound-Based Response Enhancement of a MOX Gas Sensor
Published 2024“…Comparing the steady responses of five target gases under the pulse and continuous ultrasound, respectively, it is found that the pulse ultrasound causes a better catalysis effect, and response enhancement (RE) by the pulse ultrasound with an optimal pulse width depends on the ultrasonic strength as well as the species and concentration of the target gas. For 2 ppm methanol, the RE by the pulse ultrasound is 50%, relative to the continuous ultrasound, when the pulse width, duty ratio, and working frequency are 0.4 ms, 50%, and 110.1 kHz, respectively. …”
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Pulse Ultrasound-Based Response Enhancement of a MOX Gas Sensor
Published 2024“…Comparing the steady responses of five target gases under the pulse and continuous ultrasound, respectively, it is found that the pulse ultrasound causes a better catalysis effect, and response enhancement (RE) by the pulse ultrasound with an optimal pulse width depends on the ultrasonic strength as well as the species and concentration of the target gas. For 2 ppm methanol, the RE by the pulse ultrasound is 50%, relative to the continuous ultrasound, when the pulse width, duty ratio, and working frequency are 0.4 ms, 50%, and 110.1 kHz, respectively. …”