涂抹层:结构和功能概述。

D H Pashley
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引用次数: 0

摘要

每当用手或旋转仪器切割硬组织时,就会在硬组织上产生涂抹层。这种薄(1-2微米)的变性切割碎屑层非常坚韧,事实上,通常是修复材料的表面。该层的溶解度、化学反应性和结构-功能关系尚未明确。在形成涂抹层的过程中,切割碎屑被强制以不同的距离进入牙本质小管。这些所谓的涂抹塞,连同涂抹层一起降低了牙本质的渗透性、牙本质的敏感性和表面湿度。除非涂抹层松动或部分去除,否则将胶粘剂树脂粘合到涂抹层上似乎会限制理论上的粘合强度。该领域的未来研究将包括使用表面分析技术,如俄歇电子能谱和ESCA。这些技术是必需的,因为涂抹层很薄。很明显,牙齿材料和切割硬组织之间的这个关键界面的性质在很大程度上仍然是未知的。这个领域将为今后的研究提供肥沃的土壤。
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Smear layer: overview of structure and function.

Smear layers are created on hard tissues whenever they are cut with hand or rotary instruments. This thin (1-2 microns) layer of denatured cutting debris is very tenacious and, in fact, is often the surface to which restorative materials are luted. The solubility characteristics, chemical reactivity and the structure-function relationships of this layer have not yet been well-defined. During creation of the smear layer, cutting debris is forced variable distances into dentinal tubules. These so-called smear plugs, together with the smear layer decrease dentin permeability, dentin sensitivity and surface wetness. Bonding adhesive resins to smear layers appears to limit the theoretical bond strength unless the smear layers are loosened or partially removed. Future research in this area will include the use of surface analytical techniques such as Auger electron spectroscopy and ESCA. These techniques are required because of the thinness of the smear layer. It is clear that the nature of this critical interface between dental materials and cut hard tissues remains largely unknown. This field will provide fertile ground for future research.

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