Elasmosaurs were extremely long-necked, aquatic reptiles that used four flippers for locomotion. Their distinctive long neck distinguishes them from all other Mesozoic forms, yet the potential uses and constraints of this structure are poorly understood, particularly with regard to feeding. Several associated series of elasmosaurian cervical vertebrae were used to measure ranges of potential flexion. Two-dimensional models, based on a complete specimen of the Late Cretaceous elasmosaur Aphrosaurus furlongi, were created to measure mobility in both vertical and horizontal planes. Accuracy of the models was assessed through comparative analyses with currently extant vertebrate analogues (e.g. snake, turtle, seal). Results suggest that the elasmosaurian neck was capable of a 75-177 degrees ventral, 87-155 degrees dorsal, and 94-176 degrees lateral range of movement depending upon the thickness of cartilage reconstructed between each vertebra. Neck postures such as a 'swan-like' S-shape are shown to be implausible because they require >360 degrees vertical flexion. However, maintenance of a straight neck while swimming, together with considerable lateral and/or ventral movement during prey capture and feeding are feasible.

译文

elimmosaurs是非常长颈的水生爬行动物,使用四个鳍状肢进行运动。它们独特的长脖子使它们与所有其他中生代形式区分开来,但是人们对这种结构的潜在用途和限制知之甚少,尤其是在喂养方面。使用几个相关的弹性颈椎系列来测量潜在的屈曲范围。基于晚白垩纪elasmosaurus furlongi的完整标本,创建了二维模型,以测量垂直和水平平面中的迁移率。通过与目前现存的脊椎动物类似物 (例如蛇,乌龟,海豹) 的比较分析来评估模型的准确性。结果表明,根据每个椎骨之间重建的软骨厚度,弹性颈部能够进行75-177度的腹侧运动,87-155度的背侧运动和94-176度的横向运动。颈部姿势 (例如 “天鹅状” 的形状) 显示为不可信的,因为它们需要> 360度的垂直屈曲。但是,游泳时保持直颈,以及在捕获和喂食猎物期间进行相当大的侧向和/或腹侧运动是可行的。

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