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High-resolution computed tomographic analysis of tooth replacement pattern of the basal neoceratopsian Liaoceratops yanzigouensis informs ceratopsian dental evolution

机译:高分辨率新断层扫描的燕子沟基础基底新角刺鱼辽角刺牙齿替代模式的断层成像分析

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摘要

The dental morphology and tooth replacement pattern of Liaoceratops yanzigouensis, the earliest known neoceratopsian, are important for our understanding of the evolution of the ceratopsian dental system. Here we describe the dental morphology and tooth replacement of Liaoceratops yanzigouensis based on high-resolution computed tomographic (CT) scan data of three specimens including the holotype, the first study for basal ceratopsian. The three-dimensional reconstructions reveal some important new information, including: three teeth in the premaxilla in one side, two more teeth in the dentary than in the maxilla, incipiently developed mesial grooves on some crowns, two generations of replacement teeth within some tooth families; and most functional teeth were under heavy resorption by the replacement process, but still remained functional. Comparisons of tooth pair positions from opposite sides in the four jaw quadrants of three specimens revealed a degree of bilateral symmetry in replacement pattern. Reconstruction of Zahnreihen yields an avergae z-spacing of 2.58 with simultaneous front-to-back tooth replacement. Our study presents the earliest evidence of derived neoceratopsian traits of the complex dental batteries in ceratopsids. Most significantly, our models reveal the tracts of partially resorbed functional teeth which appears to track the growth of the jaws, traits previously undocumented in Ceratopsia.
机译:最早的新角鼻鱼辽牙鳄(Ciaoceratops yanzigouensis)的牙齿形态和牙齿置换模式对于我们了解角膜足牙齿系统的演变非常重要。在这里,我们基于高分辨率的计算机断层扫描(CT)扫描数据(包括原型)的三个标本的高分辨率计算机断层扫描(CT)扫描数据,描述了燕子鳄的牙齿形态和牙齿置换,这是首次针对基底角膜足动物的研究。三维重建显示了一些重要的新信息,包括:一侧的前颌中有三颗牙齿,牙齿中的牙齿比上颌中多了两颗,某些牙冠上逐渐形成了中胚沟,某些牙齿家族中的第二代置换牙齿;并且大多数功能性牙齿在置换过程中都处于重吸收状态,但仍然保持功能性。在三个样本的四个下颚象限中,从相对侧的齿对位置进行比较,发现置换模式中的双侧对称程度。重建Zahnreihen时,平均Z轴间距为2.58,同时进行前后牙齿更换。我们的研究提供了在角足类动物中复杂的牙槽骨的新的远足骨性状的最早证据。最重要的是,我们的模型揭示了部分被吸收的功能性牙齿的束带,这些束带似乎可以追踪颌骨的生长,而颌骨的生长是以前在角质病中未发现的特征。

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