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矿化组织中物理侵蚀速率对取向和密度的依赖性。

Dependence of rate of physical erosion on orientation and density in mineralised tissues.

作者信息

Boyde A

出版信息

Anat Embryol (Berl). 1984;170(1):57-62. doi: 10.1007/BF00319458.

Abstract

Bone, dentine and enamel samples were treated with a gas-propelled jet of an abrasive, NaHCO3, which is physically much softer than any of these tissues in their fully mineralised condition. It was nevertheless found that they are all eroded by this treatment, which can therefore be used as a new kind of qualitative test of physical properties relating to wear resistance. General correlations were found between both degree of mineralisation and between structure orientation and erosion rate, surface-parallel-feature zones being worn more rapidly. Bone domains with surface-parallel collagen were eroded faster than those with perpendicular lamellae even if they were more densely mineralised. Rates of dentine wear depended on both density and tubule orientation, with peritubular zones and better mineralised incremental layers being more resistant. Enamel tufts wear more rapidly than the surrounding well mineralised regions. Enamel diazones wear less than parazones (areas with surface parallel prisms). At the prism scale, enamel is removed more rapidly near prism boundary discontinuities and in tubular enamel, at tubule walls. As regards the common orientation dependent effects seen in these three tissues, a cohesive explanation would be that structure discontinuities can be better exploited in a wear process if they allow cleavage from the surface; which tendency will increase with parallelism to the surface.

摘要

对骨、牙本质和牙釉质样本用气体驱动的磨料喷射处理,该磨料为碳酸氢钠(NaHCO₃),其在物理性质上比这些组织完全矿化状态下的任何一种都要软得多。然而,发现所有这些样本都会被这种处理侵蚀,因此它可作为一种与耐磨性相关的物理性质的新型定性测试方法。在矿化程度以及结构取向与侵蚀速率之间均发现了一般相关性,与表面平行的特征区域磨损更快。具有与表面平行胶原蛋白的骨区域比具有垂直薄片的骨区域侵蚀更快,即便前者矿化更密集。牙本质磨损速率取决于密度和小管取向,管周区域以及矿化更好的增量层更具抗性。釉丛比周围矿化良好的区域磨损更快。釉质重氮区比副区(具有与表面平行棱柱的区域)磨损更少。在棱柱尺度上,牙釉质在棱柱边界不连续处附近以及在管状牙釉质的小管壁处被去除得更快。关于在这三种组织中看到的常见的取向相关效应,一个连贯的解释是,如果结构不连续处允许从表面解理,那么在磨损过程中它们可以被更好地利用;这种趋势会随着与表面的平行度增加而增强。

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