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雕齿龙类骨板(有鳞目:蛇蜥科)的组织结构以及有鳞目动物骨板发育问题

The histological structure of glyptosaurine osteoderms (Squamata: Anguidae), and the problem of osteoderm development in squamates.

作者信息

Buffrénil Vivian de, Sire Jean-Yves, Rage Jean-Claude

机构信息

Département Histoire de la Terre, Muséum National d'Histoire Naturelle, UMR 7207 CNRS, Paris, France.

出版信息

J Morphol. 2010 Jun;271(6):729-37. doi: 10.1002/jmor.10829.

Abstract

Glyptosaurinae, a fossil clade of anguid lizards, possess robust osteoderms, with granular ornamentation. In this study, the structural and histological features of these osteoderms were described in order to reconstruct their developmental pattern and further document the degree of homology that could exist between vertebrate integumentary skeletons. Glyptosaurine osteoderms have a diploe architecture and display an unusually complex structure that includes four tissue types: a core of woven-fibered bone intensely remodeled; a peripheral formation of the same tissue containing dense bundles of long Sharpey fibers; a thick basal layer of lamellar bone; and a superficial layer of a non-osseous material that belongs to the category of hypermineralized tissues such as ganoine, or enameloid and enamel tissues. The growth pattern of glyptosaurine osteoderms involved appositional processes due to osteoblast activity. In early growth stages, osseous metaplasia might have also been involved, but this possibility is not substantiated by histological observations. The superficial layer of the osteoderms must have resulted from epidermal contribution, a conclusion that would support previous hypotheses on the role of epidermal-dermal interactions in the formation of squamate osteoderms.

摘要

雕纹肢龙亚科是肢龙科蜥蜴的一个化石分支,具有坚固的骨板,带有颗粒状纹饰。在本研究中,对这些骨板的结构和组织学特征进行了描述,以便重建其发育模式,并进一步记录脊椎动物体表骨骼之间可能存在的同源程度。雕纹肢龙亚科的骨板具有板障结构,呈现出异常复杂的结构,包括四种组织类型:一个由编织纤维骨构成的核心,经过强烈重塑;同一组织的外周部分含有密集的长夏氏纤维束;一层厚的板层骨基底层;以及一层属于高度矿化组织类别的非骨材料表层,如硬鳞质、类釉质和釉质组织。雕纹肢龙亚科骨板的生长模式涉及成骨细胞活动引起的表面增生过程。在早期生长阶段,骨化生可能也有参与,但组织学观察并未证实这种可能性。骨板的表层必定来自表皮的贡献,这一结论将支持先前关于表皮 - 真皮相互作用在有鳞目动物骨板形成中作用的假说。

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