Elhechmi Imen, Braga José, Dasgupta Gautam, Gharbi Tijani
Nanomedicine Lab, Imagery and Therapeutics, EA 4662 Université de Franche-Comté, 25030 Besançon cedex, France ; CHU Jean Minjoz, 3 Boulevard Alexandre Fleming, 25030 Besançon cedex, France.
Biomed Opt Express. 2013 Sep 12;4(10):2124-37. doi: 10.1364/BOE.4.002124. eCollection 2013.
The proposed device considerably reduces the measuring time of important microscopic features of tooth crown surfaces. The instrumentation is accompanied by a computer program to analyse the results. Tooth enamel is formed by ameloblasts, which demonstrate daily secretory rhythms developing tissue-specific structures known as cross striations, and longer period markings that are referred as striae of Retzius. These striae correspond to linear structures on the enamel surface. This newly developed optical measuring instrument can automatically, precisely and accurately record the number and periodicity of perikymata on the dental crown. Furthermore it can characterize the variability in periodicity of perikymata in hominids. The depth of field can be extended as desired by taking several images with different focus positions and combining them into a single composite image that contains all regions fully focused.
所提出的装置大大减少了测量牙冠表面重要微观特征的时间。该仪器配有一个计算机程序来分析结果。牙釉质由成釉细胞形成,成釉细胞表现出每日分泌节律,形成称为横纹的组织特异性结构,以及被称为芮氏线的较长周期标记。这些纹路对应于牙釉质表面的线性结构。这种新开发的光学测量仪器可以自动、精确且准确地记录牙冠上釉小皮的数量和周期性。此外,它还可以表征人类釉小皮周期性的变异性。通过拍摄具有不同焦点位置的多张图像并将它们组合成一个包含所有完全聚焦区域的单一合成图像,可以根据需要扩展景深。