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具有阶梯式响应的随机输入的跑动-翻转运动。

Run-and-tumble motion with steplike responses to a stochastic input.

机构信息

Department of Theoretical Sciences, S. N. Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700106, India.

出版信息

Phys Rev E. 2019 Jan;99(1-1):012402. doi: 10.1103/PhysRevE.99.012402.

Abstract

We study a simple run-and-tumble random walk whose switching frequencies between run mode and tumble mode depend on a stochastic signal. We consider a particularly sharp, steplike dependence, where the run-to-tumble switching probability jumps from zero to one as the signal crosses a particular value (say y_{1}) from below. Similarly, tumble-to-run switching probability also shows a jump like this as the signal crosses another value (y_{2}<y_{1}) from above. We are interested in characterizing the effect of signaling noise on the long-time behavior of the random walker. We consider two different time-evolutions of the stochastic signal. In one case, the signal dynamics is an independent stochastic process and does not depend on the run-and-tumble motion. In this case we can analytically calculate the mean value and the complete distribution function of the run duration and tumble duration. In the second case, we assume that the signal dynamics is influenced by the spatial location of the random walker. For this system, we numerically measure the steady state position distribution of the random walker. We discuss some similarities and differences between our system and Escherichia coli chemotaxis, which is another well-known run-and-tumble motion encountered in nature.

摘要

我们研究了一种简单的奔跑-翻转随机游动,其在奔跑模式和翻转模式之间的切换频率取决于随机信号。我们考虑了一种特别尖锐的阶跃依赖性,其中当信号从下方穿过特定值(例如 y_{1})时,奔跑-翻转切换概率从 0 跃变到 1。类似地,当信号从上方穿过另一个值(y_{2}<y_{1})时,翻转-奔跑切换概率也会发生类似的跃变。我们感兴趣的是研究信号噪声对随机游动长时间行为的影响。我们考虑了随机信号的两种不同时间演化。在一种情况下,信号动力学是一个独立的随机过程,不依赖于奔跑-翻转运动。在这种情况下,我们可以分析地计算奔跑持续时间和翻转持续时间的平均值和完整分布函数。在第二种情况下,我们假设信号动力学受到随机游动空间位置的影响。对于这个系统,我们通过数值方法测量了随机游动的稳态位置分布。我们讨论了我们的系统与大肠杆菌趋化性之间的一些相似和不同之处,大肠杆菌趋化性是自然界中另一种众所周知的奔跑-翻转运动。

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