Pochat-Cottilloux Yohan, Martin Jeremy E, Jouve Stéphane, Perrichon Gwendal, Adrien Jérome, Salaviale Céline, de Muizon Christian, Cespedes Ricardo, Amiot Romain
Univ Lyon, Univ Lyon 1, ENSL, CNRS, LGL-TPE, Villeurbanne, France.
Centre de Recherche en Paléontologie - Paris (CR2P), Sorbonne Université, Paris, France.
Anat Rec (Hoboken). 2022 Oct;305(10):2708-2728. doi: 10.1002/ar.24826. Epub 2021 Nov 26.
The endocranial structures of the sebecid crocodylomorph Zulmasuchus querejazus (MHNC 6672) from the Lower Paleocene of Bolivia are described in this article. Using computed tomography scanning, the cranial endocast, associated nerves and arteries, endosseous labyrinths, and cranial pneumatization are reconstructed and compared with those of extant and fossil crocodylomorphs, representative of different ecomorphological adaptations. Z. querejazus exhibits an unusual flexure of the brain, pericerebral spines, semicircular canals with a narrow diameter, as well as enlarged pharyngotympanic sinuses. First, those structures allow to estimate the alert head posture and hearing capabilities of Zulmasuchus. Then, functional comparisons are proposed between this purportedly terrestrial taxon, semi-aquatic, and aquatic forms (extant crocodylians, thalattosuchians, and dyrosaurids). The narrow diameter of the semicircular canals but expanded morphology of the endosseous labyrinths and the enlarged pneumatization of the skull compared to other forms indeed tend to indicate a terrestrial lifestyle for Zulmasuchus. Our results highlight the need to gather new data, especially from altirostral forms in order to further our understanding of the evolution of endocranial structures in crocodylomorphs with different ecomorphological adaptations.
本文描述了来自玻利维亚下古新世的西贝鳄类祖玛鳄(Zulmasuchus querejazus,MHNC 6672)的颅内结构。利用计算机断层扫描技术,重建了颅腔模型、相关神经和动脉、骨迷路以及颅骨气腔,并与现存和化石西贝鳄类的这些结构进行了比较,这些现存和化石西贝鳄类代表了不同的生态形态适应类型。祖玛鳄表现出大脑的异常弯曲、脑周棘、直径狭窄的半规管以及扩大的咽鼓管窦。首先,这些结构有助于估计祖玛鳄警觉时的头部姿势和听力能力。然后,对这个据称是陆生的分类单元与半水生和水生类型(现存鳄鱼、海鳄类和恐鳄类)进行了功能比较。与其他类型相比,祖玛鳄半规管直径狭窄,但骨迷路形态扩大且颅骨气腔增大,这确实倾向于表明其陆生生活方式。我们的结果强调了收集新数据的必要性,特别是来自高吻型类群的数据,以便进一步了解具有不同生态形态适应的西贝鳄类颅内结构的演化。