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采样率对相关随机游走和有偏随机游走测量的影响。

Sampling rate effects on measurements of correlated and biased random walks.

作者信息

Codling E A, Hill N A

机构信息

Department of Applied Mathematics, University of Leeds, Leeds LS2 9JT, UK.

出版信息

J Theor Biol. 2005 Apr 21;233(4):573-88. doi: 10.1016/j.jtbi.2004.11.008. Epub 2004 Dec 15.

Abstract

When observing the two-dimensional movement of animals or microorganisms, it is usually necessary to impose a fixed sampling rate, so that observations are made at certain fixed intervals of time and the trajectory is split into a set of discrete steps. A sampling rate that is too small will result in information about the original path and correlation being lost. If random walk models are to be used to predict movement patterns or to estimate parameters to be used in continuum models, then it is essential to be able to quantify and understand the effect of the sampling rate imposed by the observer on real trajectories. We use a velocity jump process with a realistic reorientation model to simulate correlated and biased random walks and investigate the effect of sampling rate on the observed angular deviation, apparent speed and mean turning angle. We discuss a method of estimating the values of the reorientation parameters used in the original random walk from the rediscretized data that assumes a linear relation between sampling time step and the parameter values.

摘要

在观察动物或微生物的二维运动时,通常需要设定一个固定的采样率,以便在特定的固定时间间隔进行观测,并将轨迹分割为一组离散的步长。采样率过小会导致有关原始路径和相关性的信息丢失。如果要用随机游走模型来预测运动模式或估计连续模型中使用的参数,那么能够量化并理解观察者设定的采样率对真实轨迹的影响就至关重要。我们使用具有现实重定向模型的速度跳跃过程来模拟相关和有偏的随机游走,并研究采样率对观测到的角偏差、表观速度和平均转向角的影响。我们讨论了一种从重新离散化的数据中估计原始随机游走中使用的重定向参数值的方法,该方法假设采样时间步长与参数值之间存在线性关系。

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