生物模拟:利用组织解剖学方法对自然进行仿生学模拟;结构分析。

Panaghiotis Bazos, Pascal Magne
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引用次数: 0

摘要

深入了解自然牙列的组织结构和动态光相互作用,为牙科医生提供了最终修复光学集成的最终战略优势。本文的第一部分将尝试提供对天然牙齿的三维冠状结构的见解,并在临床和技术修复方法中利用这些知识。本文的主要目的是识别和揭示以前未报道的组织-解剖相互关系,并解释现有的关系:s形曲线分布(牙本质凸/凹),牙本质-牙釉质“接合”(DEJ,视觉界面)和牙本质-牙釉质“复合体”(DEC,功能间期)之间的区别,以及DEC保存的结构意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bio-emulation: biomimetically emulating nature utilizing a histo-anatomic approach; structural analysis.

A thorough understanding of the histoanatomic structures and dynamic light interaction of the natural dentition provides dental practitioners with the ultimate strategic advantage with regard to optical integration of the final restoration. The first part of this article will attempt to provide insight on the threedimensional coronal configuration of natural teeth and on the utilization of this knowledge in the clinical and technical restorative approach. The main goals for this article are to identify and reveal previously unreported histo-anatomic interrelationships and to explain existing ones: the sigmoid curve distribution (convex enamel/concave dentin), the distinction between dentinoenamel "junction" (DEJ, visual interface) and dentinoenamel "complex" (DEC, functional interphase), and the structural significance of DEC preservation.

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