Angker Linny, Nijhof Niels, Swain Michael V, Kilpatrick Nicola M
Biomaterials Science Research Unit, Faculty of Dentistry, University of Sydney, Suite G11, National Innovation Center, Australian Technology Park, Eveleigh, NSW 1430, Australia.
Eur J Oral Sci. 2004 Jun;112(3):231-6. doi: 10.1111/j.1600-0722.2004.00123.x.
The conditions under which mechanical properties of dentine are tested influence the values recorded. The aims of this study were to examine the effect of hydration on the mechanical properties of primary carious dentine and to provide information on changes in hardness and modulus of elasticity change caused by the demineralizing caries process in dentine. Three primary molar teeth with untreated carious dentine were prepared for nano-indentation tests under both wet and dry conditions. Further tests were conducted on eight primary molars with untreated carious dentine under hydrated conditions. The mechanical properties of dehydrated carious dentine increased approximately 10-fold for hardness and 100-fold for the modulus of elasticity compared with hydrated dentine. The hardness and elastic modulus of the carious primary dentine deteriorated progressively toward the lesion cavity floor, ranging from 0.001 to 0.52 GPa and from 0.015 to 14.55 GPa, respectively, and could be fitted to a simple linear relationship when plotted in logarithmic scale vs. distance. The total depth of dentine affected was around 1100 microm parallel to the tubule direction. This depth was significantly greater than observed subjectively, implying that the demineralization process is more advanced than might be suspected on simple clinical examination.
测试牙本质力学性能的条件会影响所记录的值。本研究的目的是研究水合作用对原发性龋损牙本质力学性能的影响,并提供有关牙本质中脱矿龋病过程引起的硬度和弹性模量变化的信息。对三颗未经治疗的龋损乳牙进行了制备,以在湿态和干态条件下进行纳米压痕测试。对八颗未经治疗的龋损乳牙在水合条件下进行了进一步测试。与水合牙本质相比,脱水龋损牙本质的力学性能在硬度方面增加了约10倍,在弹性模量方面增加了100倍。龋损乳牙的硬度和弹性模量朝着病变腔底部逐渐恶化,分别为0.001至0.52 GPa和0.015至14.55 GPa,当以对数标度与距离作图时,可以拟合为简单的线性关系。与小管方向平行,受影响的牙本质总深度约为1100微米。这个深度明显大于主观观察到的深度,这意味着脱矿过程比简单临床检查可能怀疑的更为严重。