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Significance The elderly are likely to become tired due to the effort required for phonation.
The high background membrane resistance of arterioles may make them susceptible to such an effect.
These studies indicate that working students may have their learning ability negatively affected by being tired and sleepy.
In the basolateral membrane, amiloride-sensitive Na+ channels may make a relatively small contribution to the unusual resting potential.
The sweep-side coated membrane exhibits largely enhanced permeation fluxes than feed-side coated membrane, and the feed-side coated membrane shows better phase stability under the same conditions (these results reveal that the sweep side is the permeability limitation side and the feed is the phase stability limitation side).
To fully repair and avoid the irreversible wearout, we propose a biology-inspired sleep-when-getting-tired strategy.
These results support the theoretical premise underlying the derivation of the rising sweep: Spectral energy with the appropriate temporal organization, dictated by basilar membrane traveling wave properties, will increase CAP synchrony.
It can also make it possible to reduce the frequency of membrane cleaning and the consumption of cleaning chemicals.
The conclusion of the study is that feeling very tired is a complex paradoxical rhythm.
Strong sweep rate dependence of the hysteresis indicates that crossover of the relaxation process takes place upon increasing the sweep rate.