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A simple direct method for finding persistence times of populations and application to conservation problems.

机译:一种简单的直接方法可找到种群的持续时间并将其应用于保护问题。

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摘要

The computation of persistence times of populations has become a central focus in conservation biology. We describe a simple, direct method for finding the statistics of persistence times by assuming that there is a maximum population size. Thus, even though the population dynamics may be very complex for population sizes below the maximum, it is possible to write a finite set of equations from which the mean and second moment of the persistence time can be found by using simple, algebraic methods. We apply the method to compute the mean and coefficient of variation of persistence times of populations that suffer large decrements (catastrophes). Our results show that in the presence of catastrophes, the increase in mean persistence time with large populations is not nearly as rapid as other theories suggest and that catastrophes occurring at even modest rates can considerably increase the risk of extinction.
机译:种群持续时间的计算已成为保护生物学的重点。我们描述了一种简单直接的方法,通过假设存在最大的人口数量来找到持续时间的统计数据。因此,即使对于小于最大数量的种群规模,种群动态可能非常复杂,也可以编写一组有限的方程组,通过使用简单的代数方法,可以得出持续时间的均值和二阶矩。我们应用该方法来计算遭受较大减量(灾难)的人口的持续时间的均值和变异系数。我们的结果表明,在发生灾难的情况下,人口众多的平均持续时间的增加并不像其他理论所显示的那样快,而且即使发生适度的灾难也可能大大增加灭绝的风险。

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