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首页> 外文期刊>Palaeontology >Computed tomography, anatomical description and three-dimensional reconstruction of the lower jaw of Eusthenopteron foordi Whiteaves, 1881 from the Upper Devonian of Canada
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Computed tomography, anatomical description and three-dimensional reconstruction of the lower jaw of Eusthenopteron foordi Whiteaves, 1881 from the Upper Devonian of Canada

机译:加拿大东部泥盆纪1881年Eusthenopteron foordi Whiteaves下颌的计算机断层扫描,解剖学描述和三维重建

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摘要

The cranial anatomy of the iconic early tetrapod Eusthenopteron foordi is probably the best understood of all fossil fishes. In contrast, the anatomy of the lower jaw - crucial for both phylogenetics and biomechanical analyses - has been only superficially described. Computed tomography data of three Eusthenopteron skulls were segmented using visualization software to digitally separate bone from matrix and individual bones from each other. Here, we present a new description of the lower jaw of Eusthenopteron based on microcomputed tomography data, including the following: detailed description of sutural morphology and the mandibular symphysis; confirmed occurrence of pre- and intercoronoid fossae on the dorsal aspect of the lower jaw; and the arrangement of the submandibular bones. Furthermore, we identify a novel dermal ossification, the postsymphysial, present on the anteromedial aspect of the lower jaw in Eusthenopteron and describe its distribution in other stem tetrapod taxa. Sutural morphology is used to infer load regimes and, along with overall skull and lower jaw morphology, suggests that Eusthenopteron may have used biting along with suction feeding to capture and consume large prey. Finally, visualization software was used to repair and reconstruct the lower jaw, resulting in a three-dimensional digital reconstruction.
机译:标志性的早期四足动物Eusthenopteron foordi的颅骨解剖可能是所有化石鱼类中最了解的。相比之下,下颌的解剖学-对系统发育学和生物力学分析均至关重要-仅在表面上进行了描述。使用可视化软件对三个Eusthenopteron头骨的计算机断层扫描数据进行分段,以数字方式将骨骼中的骨骼与各个骨骼彼此分开。在这里,我们基于显微计算机断层扫描数据提出了一种对Eusthenopteron下颌的新描述,包括以下内容:缝合形态和下颌骨的详细描述;确认在下颌背侧发生前冠状窝和冠状冠间窝;和下颌骨的排列。此外,我们确定了一种新的皮肤骨化症,即后突性骨化症,存在于Eusthenopteron中下颌的前内侧,并描述了其在其他四足类群中的分布。缝合线形态可用来推断负荷情况,并与整个颅骨和下颌形态一起,提示洋龙鱼可能已经使用咬咬和吸食来捕获和消耗大量猎物。最后,使用可视化软件修复和重建下颌,从而进行三维数字重建。

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