Elbaum R, Tal E, Perets A I, Oron D, Ziskind D, Silberberg Y, Wagner H D
Department of Materials and Interfaces, The Weizmann Institute of Science, Rehovot 76100, Israel.
J Dent. 2007 Feb;35(2):150-5. doi: 10.1016/j.jdent.2006.07.007. Epub 2006 Sep 14.
We present a novel way to create high-resolution three-dimensional images of tooth dentin by harmonic generation scanning laser microscopy.
The images were taken using a pulsed infrared laser. Three-dimensional reconstruction enables the visualization of individual tubules and the collagen fibrils mesh around them with an optical resolution of approximately 1 microm.
The images show micro-morphological details of the dentinal tubules as well as the collagen fibrils at a depth of up to about 200 microm. The data show that while collagen fibrils are organized in planes perpendicular to the tubules, close to the dentin enamel junction they lie also along the long axis of the tubules.
The unique 3D information opens the opportunity to study the collagen fibril arrangement in relation to the tubule orientation within the dentin matrix, and may be applied to study the micro-morphology of normal versus altered dentin.
我们提出了一种通过谐波产生扫描激光显微镜创建牙齿牙本质高分辨率三维图像的新方法。
使用脉冲红外激光拍摄图像。三维重建能够以约1微米的光学分辨率可视化单个小管及其周围的胶原纤维网。
图像显示了牙本质小管以及深度达约200微米处的胶原纤维的微观形态细节。数据表明,虽然胶原纤维在垂直于小管的平面内排列,但在靠近牙本质釉质交界处,它们也沿小管的长轴排列。
独特的三维信息为研究牙本质基质内胶原纤维排列与小管方向的关系提供了机会,可应用于研究正常与病变牙本质的微观形态。