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化石形成的数学描述。

A mathematical description of fossilization.

作者信息

Loron Corentin C

机构信息

School of Physics and Astronomy, University of Edinburgh, Edinburgh, UK.

出版信息

R Soc Open Sci. 2024 Jul 17;11(7):231827. doi: 10.1098/rsos.231827. eCollection 2024 Jul.

Abstract

Fossils constitute an inestimable archive of past life on the Earth. However, the stochastic processes driving decay and fossilization and overwhelmingly distorting this archive, are challenging to interpret. Consequently, concepts of exceptional or poor preservation are often subjective or arbitrarily defined. Here, we offer an alternative way to think about fossilization. We propose a mathematical description of decay and fossilization relying on the change in the relative frequency and characteristics of biogenic objects (e.g. atoms, functional groups, molecules, body parts and organisms) within an organism-fossil system. This description partitions taphonomic changes into three categories: gain, loss and alteration of state. Although the changes undergone by organisms through decay, preservation and alteration vary a lot for different organisms under different conditions, we provide a unified formalism which can be applied directly in the comparison of different assemblages, experiments and fossils. Our expression is closely related to George R. Price's famous equation for the change in evolutionary traits and can be adapted to the study of palaeontological systems and many others.

摘要

化石构成了地球上过去生命的一份不可估量的档案。然而,驱动腐烂和石化并极大地扭曲这份档案的随机过程,很难解释。因此,关于保存异常或不佳的概念往往是主观的或任意定义的。在这里,我们提供了一种思考石化的替代方法。我们提出了一种基于生物化石系统内生物对象(如原子、官能团、分子、身体部位和生物体)相对频率和特征变化的腐烂和石化的数学描述。这种描述将埋藏学变化分为三类:状态的增加、损失和改变。尽管生物体在腐烂、保存和改变过程中经历的变化在不同条件下因不同生物体而异,但我们提供了一种统一的形式主义,可直接应用于不同组合、实验和化石的比较。我们的表达式与乔治·R·普赖斯关于进化特征变化的著名方程密切相关,并且可以适用于古生物学系统及许多其他系统的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3889/11251779/da8de139c965/rsos.231827.f001.jpg

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