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A mathematical explanation of an increase in bacterial swimming speed with viscosity in linear-polymer solutions.

机译:在线性聚合物溶液中随着粘度增加细菌游泳速度增加的数学解释。

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摘要

Bacterial swimming speed is sometimes known to increase with viscosity. This phenomenon is peculiar to bacterial motion. Berg and Turner (Nature. 278:349-351, 1979) indicated that the phenomenon was caused by a loose, quasi-rigid network formed by polymer molecules that were added to increase viscosity. We mathematically developed their concept by introducing two apparent viscosities and obtained results similar to the experimental data reported before. Addition of polymer improved the propulsion efficiency, which surpasses the decline in flagellar rotation rate, and the swimming speed increased with viscosity.
机译:有时已知细菌的游泳速度会随着粘度的增加而增加。这种现象是细菌运动所特有的。 Berg and Turner(Nature。278:349-351,1979)指出,这种现象是由聚合物分子形成的疏松的准刚性网络所引起的,这些聚合物分子被添加以增加粘度。我们通过引入两种表观粘度在数学上发展了它们的概念,并获得了与之前报道的实验数据相似的结果。聚合物的添加改善了推进效率,其超过鞭毛旋转速率的下降,并且游泳速度随粘度增加。

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