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Notosuchian 骨板的组织学特征:具有覆盖的厚皮革状皮肤层的证据。

Osteohistological characterization of notosuchian osteoderms: Evidence for an overlying thick leathery layer of skin.

机构信息

Centre de Recherche en Paléontologie Paris (CR2P, UMR 7207), Muséum national d'Histoire naturelle, CNRS, Sorbonne Université, Paris, France.

Centro de Ciências Biológicas e da Saúde, Laboratório de Paleontologia da URCA, Universidade Regional do Cariri, Rua Carolino Sucupira-Pimenta, Crato, Ceará, Brazil.

出版信息

J Morphol. 2023 Jan;284(1):e21536. doi: 10.1002/jmor.21536.

Abstract

Osteoderms are mineralized structures embedded in the dermis, known for nonavian archosaurs, squamates, xenarthrans, and amphibians. Herein, we compared the osteoderm histology of Brazilian Notosuchia of Cretaceous age using three neosuchians for comparative purposes. Microanatomical analyses showed that most of them present a diploe structure similar to those of other pseudosuchians, lizards, and turtles. This structure contains two cortices (the external cortex composed of an outer and an inner layers, and the basal cortex) and a core in-between them. Notosuchian osteoderms show high bone compactness (>0.85) with varying degrees of cancellous bone in the core. The neosuchian Guarinisuchus shows the lowest bone compactness with a well-developed cancellous layer. From an ontogenetic perspective, most tissues are formed through periosteal ossification, although the mineralized tissues observed in baurusuchid LPRP/USP 0634 suggest a late metaplastic development. Histology suggests that the ossification center of notosuchian osteoderm is located at the keel. Interestingly, we identified Sharpey's fibers running perpendicularly to the outer layer of the external cortex in Armadillosuchus arrudai, Itasuchus jesuinoi, and Baurusuchidae (LPRP/USP 0642). This feature indicates a tight attachment within the dermis, and it is evidence for the presence of an overlying thick leathery layer of skin over these osteoderms. These data allow a better understanding of the osteohistological structure of crocodylomorph dermal bones, and highlight their structural diversity. We suggest that the vascular canals present in some sampled osteoderms connecting the inner layer of the external cortex and the core with the external surface may increase osteoderm surface and the capacity of heat transfer in terrestrial notosuchians.

摘要

骨板是嵌入真皮中的矿化结构,已知存在于非鸟兽脚亚目恐龙、有鳞目爬行动物、贫齿目动物和两栖动物中。在此,我们比较了来自白垩纪的巴西坚蜥目恐龙的骨板组织学,使用了三个新鳄类作为比较目的。微观解剖分析表明,它们中的大多数具有类似于其他伪鳄类、蜥蜴和海龟的板层结构。这种结构包含两个皮质(由外皮层和内皮层组成的外部皮质和基底皮质)和它们之间的核心。坚蜥目恐龙的骨板具有较高的骨密度(>0.85),核心部位的骨小梁骨有不同程度的存在。新鳄类 Guarinisuchus 的骨密度最低,具有发达的小梁骨层。从个体发生学的角度来看,大多数组织是通过骨膜骨化形成的,尽管在 baurusuchid LPRP/USP 0634 中观察到的矿化组织表明存在晚期的变形发育。组织学表明,坚蜥目恐龙的骨化中心位于龙骨上。有趣的是,我们在 Armadillosuchus arrudai、Itasuchus jesuinoi 和 Baurusuchidae(LPRP/USP 0642)中发现了Sharpey 纤维垂直于外皮层的外层运行。这一特征表明真皮内的附着紧密,并且表明这些骨板上存在一层厚的革质皮肤层。这些数据有助于更好地理解鳄形超目真皮骨的骨组织学结构,并突出了它们的结构多样性。我们建议,一些采样骨板中存在的连接外皮层内层和核心与外部表面的血管可能会增加骨板表面和陆地坚蜥目动物的热传递能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0bc/10107732/0731a838cccc/JMOR-284-0-g001.jpg

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