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The sharpest tools in the box? Quantitative analysis of conodont element functional morphology

机译:盒子里最犀利的工具?牙形石元素功能形态的定量分析

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摘要

Conodonts have been considered the earliest skeletonizing vertebrates and their mineralized feeding apparatus interpreted as having performed a tooth function. However, the absence of jaws in conodonts and the small size of their oropharyngeal musculature limits the force available for fracturing food items, presenting a challenge to this interpretation. We address this issue quantitatively using engineering approaches previously applied to mammalian dentitions. We show that the morphology of conodont food-processing elements was adapted to overcome size limitations through developing dental tools of unparalleled sharpness that maximize applied pressure. Combined with observations of wear, we also show how this morphology was employed, demonstrating how Wurmiella excavata used rotational kinematics similar to other conodonts, suggesting that this occlusal style is typical for the clade. Our work places conodont elements within a broader dental framework, providing a phylogenetically independent system for examining convergence and scaling in dental tools.
机译:牙形石被认为是最早的骨架化脊椎动物,它们的矿化食物被解释为具有牙齿功能。然而,牙形石没有颌骨,且口咽肌肉组织较小,限制了可用于破碎食品的力,这给这种解释带来了挑战。我们使用以前应用于哺乳动物牙列的工程方法定量地解决了这个问题。我们显示牙形食物加工元件的形态通过开发无与伦比的锋利度的牙科工具(可最大化施加压力)来克服尺寸限制。结合观察到的磨损,我们还展示了这种形态的应用方式,展示了蠕虫如何利用类似于其他牙形石的旋转运动学,表明这种咬合风格是典型的进化枝。我们的工作将牙釉质元素放在更广泛的牙科框架内,提供了系统独立的系统来检查牙科工具的会聚和结垢。

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