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Saws, Scissors, and Sharks: Late Paleozoic Experimentation with Symphyseal Dentition

机译:锯,剪刀和鲨鱼:对称牙本质的古生代实验

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ABSTRACT Sharks of Late Paleozoic oceans evolved unique dentitions for catching and eating soft bodied prey. A diverse but poorly preserved clade, edestoids are noted for developing biting teeth at the midline of their jaws. Helicoprion has a continuously growing root to accommodate 100 crowns that spiraled on top of one another to form a symphyseal whorl supported and laterally braced within the lower jaw. Reconstruction of jaw mechanics shows that individual serrated crowns grasped, sliced, and pulled prey items into the esophagus. A new description and interpretation of Edestus provides insight into the anatomy and functional morphology of another specialized edestoid. Edestus has opposing curved blades of teeth that are segmented and shed with growth of the animal. Set on a long jaw the lower blade closes with a posterior motion, effectively slicing prey across multiple opposing serrated crowns. Further examples of symphyseal whorls among Edestoidae are provided from previously undescribed North American examples of Toxoprion , Campyloprion , Agassizodus , and Sinohelicoprion . The symphyseal dentition in edestoids is associated with a rigid jaw suspension and may have arisen in response to an increase in pelagic cephalopod prey during the Late Paleozoic. Anat Rec, 2018. ? 2018 Wiley Periodicals, Inc. Anat Rec, 303:363–376, 2020. ? 2018 American Association for Anatomy
机译:摘要古生代海洋的鲨鱼进化了独特的牙列,用于捕捉和吃柔软的身体猎物。在颌骨中线的中线开发牙齿的刺激性,射精是一种多样化但不好的思考。螺旋冰具有连续生长的根,以容纳& 100冠彼此螺旋螺旋形,以形成在下颌内支撑和横向支撑的对称螺纹。颌骨力学的重建表明,个体锯齿状冠抓住,切片和拉动猎物进入食道。 Edestus的新描述和解释提供了洞察另一个专门辐射的解剖学和功能形态。 Edestus具有与动物生长分段和脱落的牙齿的弯曲叶片。在长下颚上设置下刀片,下刀片以后运动关闭,有效地切割横跨多个相对的锯齿状冠。 Edestoidae中的对称螺纹的进一步实例是从先前未描述的北美毒抗原,振铃,agassizodus和Sinohelicoplion的北美实例提供。 Edestoids中的对称牙列与刚性钳口悬浮液有关,并且可能响应于古生代晚古生代术期间的骨质头球猎物的增加而产生。 ANAT REC,2018.? 2018 Wiley期刊,Inc。Anat Rec,303:363-376,2020。 2018年美国解剖学协会

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