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The value of crossdating to retain high-frequency variability, climate signals, and extreme events in environmental proxies

机译:交叉保留环境变量中高频变化,气候信号和极端事件的价值

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摘要

High-resolution biogenic and geologic proxies in which one increment or layer is formed per year are crucial to describing natural ranges of environmental variability in Earth's physical and biological systems. However, dating controls are necessary to ensure temporal precision and accuracy; simple counts cannot ensure that all layers are placed correctly in time. Originally developed for tree-ring data, crossdating is the only such procedure that ensures all increments have been assigned the correct calendar year of formation. Here, we use growth-increment data from two tree species, two marine bivalve species, and a marine fish species to illustrate sensitivity of environmental signals to modest dating error rates. When falsely added or missed increments are induced at one and five percent rates, errors propagate back through time and eliminate high-frequency variability, climate signals, and evidence of extreme events while incorrectly dating and distorting major disturbances or other low-frequency processes. Our consecutive Monte Carlo experiments show that inaccuracies begin to accumulate in as little as two decades and can remove all but decadal-scale processes after as little as two centuries. Real-world scenarios may have even greater consequence in the absence of crossdating. Given this sensitivity to signal loss, the fundamental tenets of crossdating must be applied to fully resolve environmental signals, a point we underscore as the frontiers of growth-increment analysis continue to expand into tropical, freshwater, and marine environments.
机译:每年形成一个增量或一层的高分辨率生物和地质代理对于描述地球物理和生物系统中环境变化的自然范围至关重要。但是,约会控制对于确保时间精度和准确性是必不可少的。简单的计数不能确保及时正确放置所有图层。最初是为树木年轮数据开发的,只有这样的交叉程序才能确保为所有增量分配了正确的日历年。在这里,我们使用来自两个树种,两个海洋双壳类和一个海洋鱼类的增长增量数据来说明环境信号对适度约会误差率的敏感性。当以百分之一和百分之五的比率错误地增加或错过增量时,误差会随着时间传播回来,并消除高频变异性,气候信号和极端事件的证据,同时错误地约会和扭曲主要干扰或其他低频过程。我们连续进行的蒙特卡洛实验表明,误差在短短二十年之内就开始积累,并且在短短两个世纪之后,就可以消除除年代际尺度之外的所有过程。在没有交叉的情况下,现实世界的情况可能会产生更大的后果。鉴于这种对信号丢失的敏感性,必须采用交叉的基本原理来完全解决环境信号,随着增长增量分析的前沿不断扩展到热带,淡水和海洋环境,我们强调了这一点。

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