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首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >Sutural complexity in Late Jurassic ammonites and its relationship with phragmocone size and shape: a multidimensional approach using fractal analysis
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Sutural complexity in Late Jurassic ammonites and its relationship with phragmocone size and shape: a multidimensional approach using fractal analysis

机译:晚侏罗纪菊粉的缝合复杂性及其与芦苇大小和形状的关系:使用分形分析的多维方法

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The evolution of intricate septa and complex sutural patterns in cephalopod ammonoids is one of the best documented trends in the fossil record towards increased levels of complexity. Functional interpretation of septal folding is still, however, a matter of controversy. Tentative explanations have been linked to the structural reinforcement of phragmocones, mantle area increase, buoyancy control and even metabolic functions concerning respiration or cameral liquid transport. Here we use fractal analysis in order to estimate suture complexity in a large set ( N = 524) of Late Jurassic ammonites, and its covariation with phragmocone size, shape and ornamentation. Sutural complexity, estimated by fractal dimension (D-f), is closely related to phragmocone whorl height and the degree of shell involution, while this trend is reversed for tubercle size. On average, specimens from epioceanic habitats display lower D-f values than those inhabiting epicontinental waters. Our results reveal a complex relationship between sutural complexity and morphometric descriptors of phragmocones, indicating that septal folding was more closely related to shell geometry than to bathymetry. In addition, these results fit predictions of a recent model relating sutural complexity to energetic demands of ammonoid metabolism. However, future research should not neglect the implications of phylogenetic legacy as an important source of variability in fractal dimensions.
机译:头足类动物类错综复杂的隔膜和复杂缝合模式的演变是化石记录中记录的趋向复杂性增加的最好趋势之一。然而,中隔折叠的功能解释仍是一个有争议的问题。初步的解释与芦苇的结构增强,地幔面积增加,浮力控制,甚至涉及呼吸或照相液体运输的代谢功能有关。在这里,我们使用分形分析来估计大组晚侏罗纪炸药(N = 524)中的缝合线复杂性,以及其与芦苇大小,形状和装饰的协变关系。用分形维数(D-f)估算的缝合结构复杂性与伞形螺轮高度和壳向内退化程度密切相关,而结节大小则相反。平均而言,远洋生境的标本的D-f值比大陆上水域的标本低。我们的结果揭示了缝合复杂性与芦苇的形态计量描述子之间的复杂关系,表明间隔折叠与壳体几何形状而不是与测深法关系更紧密。此外,这些结果适合将缝合复杂性与氨类代谢的能量需求相关的最新模型的预测。但是,未来的研究不应忽视系统发育遗传学作为分形维数变化的重要来源的含义。

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