Wen S L
Shanghai Institute of Ceramics, Academia Sinica, People's Republic of China.
Electron Microsc Rev. 1989;2(1):1-16. doi: 10.1016/0892-0354(89)90008-7.
Human enamel structural features are characterized by high resolution electron microscopy. The human enamel consists of polycrystals with a structure similar to Ca10(PO4)6(OH)2. This article describes the structural features of human enamel crystal at atomic and nanometer level. Besides the structural description, a great number of high resolution images are included. Research into the carious process in human enamel is very important for human beings. This article firstly describes the initiation of caries in enamel crystal at atomic and unit-cell level and secondly describes the further steps of caries with structural and chemical demineralization. The demineralization in fact, is the origin of caries in human enamel. The remineralization of carious areas in human enamel has drawn more and more attention as its potential application is realized. This process has been revealed by high resolution electron microscopy in detail in this article. On the other hand, the radiation effects on the structure of human enamel are also characterized by high resolution electron microscopy. In order to reveal this phenomenon clearly, a great number of electron micrographs have been shown, and a physical mechanism is proposed.
人类牙釉质的结构特征通过高分辨率电子显微镜进行表征。人类牙釉质由结构类似于Ca10(PO4)6(OH)2的多晶体组成。本文描述了人类牙釉质晶体在原子和纳米水平的结构特征。除了结构描述外,还包含大量高分辨率图像。对人类牙釉质龋病过程的研究对人类非常重要。本文首先在原子和晶胞水平描述了牙釉质晶体中龋病的起始,其次描述了龋病在结构和化学脱矿方面的进一步发展步骤。事实上,脱矿是人类牙釉质龋病的根源。随着人类牙釉质龋损区域再矿化潜在应用的实现,其受到了越来越多的关注。本文通过高分辨率电子显微镜详细揭示了这一过程。另一方面,高分辨率电子显微镜也对辐射对人类牙釉质结构的影响进行了表征。为了清楚地揭示这一现象,展示了大量电子显微照片,并提出了一种物理机制。