首页> 外文期刊>Journal of Systematic Palaeontology >A new icriodontid conodont cluster with specific mesowear supports an alternative apparatus motion model for Icriodontidae
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A new icriodontid conodont cluster with specific mesowear supports an alternative apparatus motion model for Icriodontidae

机译:具有特定介观磨损的新的角鲨齿牙形石簇支持I齿科的另一种装置运动模型

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Increasing numbers of conodont discoveries with soft tissue preservation, natural assemblages and fused clusters of the hard tissue have strengthened the hypothesis regarding the function and mechanism of the conodont feeding apparatus. Exceptional fossil preservation serves as a solid basis for modern reconstructions of the conodont apparatus illustrating the complex interplay of the single apparatus elements. Reliable published models concern the ozarkodinid apparatus of Pennsylvanian and Early Triassic conodonts. Recognition of microwear and mammal-like occlusion, especially of platform elements belonging to individuals of the genus Idiognathodus, allows rotational closure to be interpreted as the crushing mechanism of ozarkodinid platform (P1) elements. Here we describe a new icriodontid conodont cluster of Caudicriodus woschmidti that consists of one pair of icriodontan (1) and 10 pairs of coniform (C1-5) elements, with I elements being preserved in interlocking position. The special kind of element arrangement within the fused cluster provides new insights into icriodontid apparatus reconstruction and notation of elements. However, orientation of coniform elements is limited to a certain degree by possible preservational bias. Four possible apparatus models are introduced and discussed. Recognition of specific wear on denticle tips of one of the icriodontan elements forms the basis for an alternative hypothesis of apparatus motion. Analysis of tip wear suggests a horizontal, slightly elliptical motion of opposed, antagonistically operating 1 elements. This is supported by similar tip wear from much better preserved, but isolated, elements of Middle Devonian icriodontids. More detailed interpretation of the masticatory movement will allow enhanced understanding of anatomical specifications, diet and paleobiology of different euconodont groups.
机译:随着软组织的保存,自然组合和硬组织的融合簇,牙形石发现的数量不断增加,这强化了有关牙形石进给装置的功能和机理的假说。出色的化石保存为牙形石设备的现代重建奠定了坚实的基础,阐明了单个设备元素之间的复杂相互作用。可靠的已发表模型涉及宾夕法尼亚和早三叠世牙形牙形石的ozarkodinid装置。识别微磨损和类哺乳动物的咬合,尤其是识别属于犬齿亚纲个体的平台元件,可以将旋转闭合解释为ozarkodinid平台(P1)元件的压碎机制。在这里,我们描述了一个新的Caudicriodus woschmidti的象牙齿牙形齿簇,它由一对icriodontan(1)和10对圆锥形(C1-5)元素组成,其中I元素被保留在互锁位置。融合簇内的特殊类型的元素排列提供了新的见解,介绍了牙齿矫正器的重建和元素表示法。然而,圆锥形元件的取向在一定程度上受到可能的保存偏差的限制。介绍并讨论了四种可能的设备模型。对二十碳四烯鞣质元素之一的齿尖上的特定磨损的识别构成了装置运动的另一种假设的基础。刀头磨损分析表明,相对的,对立的,相对运动的1个元素呈水平椭圆形运动。泥盆纪中锋白垩纪中保存得更好但又孤立的类似尖端磨损也支持了这一点。对咀嚼运动的更详细的解释将使人们对不同的共生齿组的解剖学特征,饮食和古生物学有更深入的了解。

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