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Cutting the first ‘teeth’: a new approach to functional analysis of conodont elements

机译:切割第一个牙齿:牙形石元素功能分析的新方法

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摘要

The morphological disparity of conodont elements rivals the dentition of all other vertebrates, yet relatively little is known about their functional diversity. Nevertheless, conodonts are an invaluable resource for testing the generality of functional principles derived from vertebrate teeth, and for exploring convergence in a range of food-processing structures. In a few derived conodont taxa, occlusal patterns have been used to derive functional models. However, conodont elements commonly and primitively exhibit comparatively simple coniform morphologies, functional analysis of which has not progressed much beyond speculation based on analogy. We have generated high-resolution tomographic data for each morphotype of the coniform conodont Panderodus acostatus. Using virtual cross sections, it has been possible to characterize changes in physical properties associated with individual element morphology. Subtle changes in cross-sectional profile have profound implications for the functional performance of individual elements and the apparatus as a whole. This study has implications beyond the ecology of a single conodont taxon. It provides a basis for reinterpreting coniform conodont taxonomy (which is based heavily on cross-sectional profiles), in terms of functional performance and ecology, shedding new light on the conodont fossil record. This technique can also be applied to more derived conodont morphologies, as well as analogous dentitions in other vertebrates and invertebrates.
机译:牙形石元素的形态差异可与所有其他脊椎动物的牙列相媲美,但对其功能多样性知之甚少。尽管如此,牙形石还是宝贵的资源,可用于测试源自脊椎动物牙齿的功能性原理的普遍性,以及探索一系列食品加工结​​构中的融合。在一些派生的牙形科分类单元中,咬合模式已用于派生功能模型。然而,牙形石元素通常和原始显示相对简单的圆锥形形态,其功能分析并没有超出基于类比的推测。我们已经为圆锥形牙形尖齿Panderodus acostatus的每种形态产生了高分辨率的层析数据。使用虚拟横截面,可以表征与单个元素形态相关的物理性质的变化。横截面轮廓的细微变化对单个元件和整个设备的功能性能具有深远的影响。这项研究的意义超出了单个牙形石分类群的生态范围。它为从功能性能和生态学角度重新解释锥状牙形石分类学(很大程度上基于横截面轮廓)提供了基础,为牙形石化石记录提供了新的思路。该技术还可以应用于更多衍生的牙形体形态,以及其他脊椎动物和无脊椎动物中的类似牙列。

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