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From the Cover: Synchrony affects Taylor’s law in theory and data

机译:从封面开始:同步影响泰勒定律的理论和数据

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摘要

Taylor’s law (TL) is a widely observed empirical pattern that relates the variances to the means of groups of nonnegative measurements via an approximate power law: varianceg ≈ a  ×  meangb, where g indexes the group of measurements. When each group of measurements is distributed in space, the exponent b of this power law is conjectured to reflect aggregation in the spatial distribution. TL has had practical application in many areas since its initial demonstrations for the population density of spatially distributed species in population ecology. Another widely observed aspect of populations is spatial synchrony, which is the tendency for time series of population densities measured in different locations to be correlated through time. Recent studies showed that patterns of population synchrony are changing, possibly as a consequence of climate change. We use mathematical, numerical, and empirical approaches to show that synchrony affects the validity and parameters of TL. Greater synchrony typically decreases the exponent b of TL. Synchrony influenced TL in essentially all of our analytic, numerical, randomization-based, and empirical examples. Given the near ubiquity of synchrony in nature, it seems likely that synchrony influences the exponent of TL widely in ecologically and economically important systems.
机译:泰勒定律(TL)是一种广泛观察到的经验模式,通过近似幂定律将方差与非负测量组的均值相关:方差≈a×平均g b ,其中g代表测量组。当每组测量值分布在空间中时,此幂定律的指数b被推测为反映空间分布中的聚集。自从TL最初证明了种群生态学中空间分布物种的种群密度以来,它已在许多领域得到了实际应用。人口的另一个广泛观察的方面是空间同步,这是在不同位置测量的人口密度的时间序列随时间相关的趋势。最近的研究表明,人口同步的模式正在改变,这可能是气候变化的结果。我们使用数学,数值和经验方法来证明同步影响TL的有效性和参数。更高的同步性通常会降低TL的指数b。在我们所有的分析,数值,基于随机和经验的示例中,同步影响了TL。考虑到自然界中几乎普遍存在同步,在生态和经济上重要的系统中,同步似乎很可能广泛影响TL的指数。

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