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非洲爪蟾关节强硬的结构与形成

Structure and formation of ankylosis in Xenopus laevis.

作者信息

Katow H

出版信息

J Morphol. 1979 Dec;162(3):327-42. doi: 10.1002/jmor.1051620304.

Abstract

The structure of ankylotic teeth in Xenopus laevis was studied by light, transmission, and scanning electron microscopy as well as by microradiography in decalcified and undecalcified specimens. The mature teeth of Xenopus laevis are calcified from the crown to the base, fused to the jaw bone, and have no uncalcified area, such as a fibrous ring separating the tooth into the crown and pedicle. Microradiography shows that the mature tooth and jaw bone appear as an X-ray opaque area, except for the basal region of the dentine. This region is composed of an X-ray translucent area and an X-ray opaque thin layer on the lingual side of the translucent area. The mature tooth is composed of two differently calcified areas: (1) a highly calcified area, which makes up almost all of the tooth and contains a thin layer of the basal dentine on the lingual side, and (2) a lowly calcified basal dentine, which is fused to the jaw bone. Therefore, the lowly calcified area does not completely separate the dentine and jaw bone. Repeating banding patterns among the collagen fibrils differ among the dentine-forming area and the matrices of dentine and jaw bone. During the formation of ankylosis of the tooth germ, collagen bundles in the dentine-forming area accumulate directly on the surface of the jaw bone. Consequently, the mature teeth of Xenopus laevis fuse to the jaw bone directly without the mediation of the other structures.

摘要

利用光学显微镜、透射电子显微镜和扫描电子显微镜,以及对脱钙和未脱钙标本进行微放射照相术,研究了非洲爪蟾强直牙的结构。非洲爪蟾的成熟牙齿从牙冠到牙根都已钙化,与颌骨融合,且没有未钙化区域,如将牙齿分为牙冠和牙根的纤维环。微放射照相术显示,成熟牙齿和颌骨呈现为X射线不透光区域,但牙本质的基部区域除外。该区域由一个X射线透光区域和在透光区域舌侧的一层X射线不透光薄层组成。成熟牙齿由两个钙化程度不同的区域组成:(1)一个高度钙化区域,几乎构成了整个牙齿,并在舌侧包含一层薄的基部牙本质;(2)一个低度钙化的基部牙本质,它与颌骨融合。因此,低度钙化区域并未完全将牙本质和颌骨分隔开。牙本质形成区域以及牙本质和颌骨基质中的胶原纤维之间的重复带状模式各不相同。在牙胚强直形成过程中,牙本质形成区域的胶原束直接堆积在颌骨表面。因此,非洲爪蟾的成熟牙齿直接与颌骨融合,无需其他结构的介导。

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