Advanced Photon Source, Argonne National Laboratory, Argonne, IL, USA.
J Biomech. 2010 Aug 26;43(12):2294-300. doi: 10.1016/j.jbiomech.2010.04.037. Epub 2010 Jun 11.
High energy X-ray scattering (80.7keV photons) at station 1-ID of the Advanced Photon Source quantified internal strains as a function of applied stress in mature bovine tooth. These strains were mapped from dentin through the dentinoenamel junction (DEJ) into enamel as a function of applied compressive stress in two small parallelepiped specimens. One specimen was loaded perpendicular to the DEJ and the second parallel to the DEJ. Internal strains in enamel and dentin increased and, as expected from the relative values of the Young's modulus, the observed strains were much higher in dentin than in enamel. Large strain gradients were observed across the DEJ, and the data suggest that the mantle dentin-DEJ-aprismatic enamel structure may shield the near-surface volume of the enamel from large strains. In the enamel, drops in internal strain for applied stresses above 40MPa also suggest that this structure had cracked.
在阿贡国家实验室 1-ID 站,利用 80.7keV 光子的高能 X 射线散射技术,对成熟牛牙中的内部应变进行了量化,作为外加应力的函数。这是通过两个小的平行六面体样本,对牙本质通过牙本质-釉质交界(DEJ)到釉质的外加压缩应力进行映射得到的。一个样本垂直于 DEJ 加载,第二个平行于 DEJ 加载。牙本质和釉质中的内部应变增加,正如弹性模量的相对值所预期的那样,观察到的应变在牙本质中比在釉质中高得多。在 DEJ 处观察到大的应变梯度,并且数据表明,覆盖釉质表面的牙本质-DEJ-棱柱形釉质结构可能使近表面体积免受大应变的影响。在釉质中,对于超过 40MPa 的外加应力,内部应变的下降也表明该结构已经出现裂纹。