The braincase of Bissektipelta archibaldi — new insights into endocranial osteology, vasculature, and paleoneurobiology of ankylosaurian dinosaurs

Q3 Agricultural and Biological Sciences Biological Communications Pub Date : 2020-06-05 DOI:10.21638/spbu03.2020.201
I. Kuzmin, I. Petrov, A. Averianov, E. Boitsova, P. Skutschas, H. Sues
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引用次数: 3

Abstract

We describe in detail three braincases of the ankylosaur Bissektipelta archibaldi from the Late Cretaceous (Turonian) of Uzbekistan with the aid of computed tomography, segmentation, and 3D modeling. Bissektipelta archibaldi is confirmed as a valid taxon and attributed to Ankylosaurinae based on the results of a phylogenetic analysis. The topographic relationships between the elements forming the braincase are determined using a newly referred specimen with preserved sutures, which is an exceedingly rare condition for ankylosaurs. The mesethmoid appears to be a separate ossification in the newly referred specimen ZIN PH 281/16. We revise and discuss features of the neurocranial osteology in Ankylosauria and propose new diagnostic characters for a number of its subclades. We present a 3D model of the braincase vasculature of Bissektipelta and comment on vascular patterns of armored dinosaurs. A complex vascular network piercing the skull roof and the wall of the braincase is reported for ankylosaurs for the first time. We imply the presence of a lepidosaur-like dorsal head vein and the venous parietal sinus in the adductor cavity of Bissektipelta. We suggest that the presence of the dorsal head vein in dinosaurs is a plesiomorphic diapsid trait, and extant archosaur groups independently lost the vessel. A study of two complete endocranial casts of Bissektipelta allowed us to compare endocranial anatomy within Ankylosauria and infer an extremely developed sense of smell, a keen sense of hearing at lower frequencies (100–3000 Hz), and the presence of physiological mechanisms for precise temperature control of neurosensory tissues at least in derived ankylosaurids.
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Bissektipelta archibaldi的脑壳——对甲龙类恐龙颅内骨学、脉管系统和古神经生物学的新见解
我们通过计算机断层扫描、分割和3D建模,详细描述了乌兹别克斯坦白垩纪晚期(土仑阶)的三个甲龙Bissektipelta archibaldi的脑壳。根据系统发育分析结果,阿氏Bissektipelta被确认为一个有效的分类单元,并被归属于甲龙目。形成脑壳的元素之间的地形关系是使用一个保存有缝线的新标本来确定的,这对甲龙来说是极为罕见的情况。在新参考的标本ZIN PH 281/16中,筛中筛似乎是一个单独的骨化。我们对甲龙的神经颅骨学特征进行了修订和讨论,并提出了一些新的诊断特征。我们提出了一个Bissektipelta脑壳血管系统的3D模型,并评论了装甲恐龙的血管模式。首次报道了甲龙头骨顶部和脑壳壁的复杂血管网络。我们暗示在Bissektipelta的内收肌腔中存在类似鳞翅龙的头部背静脉和顶叶静脉窦。我们认为,恐龙头背静脉的存在是一种蛇颈龙类的底辟特征,现存的原龙类独立地失去了这一血管。一项对Bissektipelta两个完整的颅内铸型的研究使我们能够比较甲龙类的颅内解剖结构,并推断出极其发达的嗅觉、在较低频率(100-3000 Hz)下的敏锐听觉,以及至少在衍生的甲龙类中存在精确控制神经感觉组织温度的生理机制。
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来源期刊
Biological Communications
Biological Communications Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.70
自引率
0.00%
发文量
21
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