Laboratory of Vertebrate Evolution, College of Life Science, Capital Normal University, Beijing, 100048, China.
State Key Laboratory of Palaeobiology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing, 210008, China.
Sci Rep. 2018 Jan 10;8(1):391. doi: 10.1038/s41598-017-18703-1.
Among the characters of caenagnathid oviraptorosaurians, the lateral occlusal grooves and ridges on the occlusal surface of the jaw bones often receive special attention. Recent studies demonstrated that ontogenetic edentulism is present in caenagnathids, and therefore the lateral occlusal grooves and ridges are vestigial alveoli and interdental septa, respectively. In the present paper, the dentary structures of caenagnathids were reevaluated based on CT images of Caenagnathiasia sp. IVPP V20377. Several previously unknown features including crateriform vestigial alveoli, the morphology of the dentary interior hollow space, and the paired blind tubes beneath the dentary symphyseal shelf are recognized. Current lines of evidence suggest different jaw bone morphologies are likely produced by various tooth reduction patterns, which indicates ontogenetic dietary shift, if once presented in caenagnathids and Sapeornis, may have been different from the condition seen in Limusaurus. The 3D images of dentary interior spaces suggest that while tooth reduction progresses, the empty alveoli are partially modified into structures accommodating blood vessels that nourish the rhamphotheca, probably representing a functional compensation for the insufficient blood supply in toothed jaw bones.
在禽龙类兽脚亚目恐龙的特征中,颌骨咬合面上的侧向咬合槽和脊通常受到特别关注。最近的研究表明,禽龙类存在个体发育无齿现象,因此,侧向咬合槽和脊分别是退化的牙槽和牙间隔。在本文中,基于 CT 图像对禽龙类的齿骨结构进行了重新评估。研究识别出了几个以前未知的特征,包括坑状退化牙槽、齿骨内部中空空间的形态以及齿骨联合架下的成对盲管。目前的证据表明,不同的颌骨形态可能是由各种牙齿减少模式产生的,如果禽龙类和始祖鸟曾经存在个体发育的饮食转变,那么这种模式可能与 Limusaurus 中观察到的情况不同。齿骨内部空间的 3D 图像表明,随着牙齿减少的进展,空的牙槽部分被改造成容纳滋养角质鞘的血管结构,这可能代表了对牙齿颌骨供血不足的一种功能补偿。