Sutow Elliott J, Maillet Wayne A, Taylor James C, Hall Gordon C, Millar Michele
Department of Applied Oral Sciences, Faculty of Dentistry, Dalhousie University, 5981 University Avenue, Halifax, Nova Scotia, Canada B3H 3J5.
Dent Mater. 2007 May;23(5):644-7. doi: 10.1016/j.dental.2006.06.003. Epub 2006 Aug 9.
It was the objective of this study to measure the corrosion potential over time of newly-placed admixed dental amalgam restorations as a possible indicator of corrosion activity.
The corrosion potentials of 271 amalgam restorations, 4-min to 24-month old were measured in a convenience sample of 81 subjects. The selected restorations had no occlusal or interproximal contact with other metallic restorations. Eighty-one percent of the restorations aged 4 min to 7 months were made from zinc-containing admixed high-copper amalgam. The remaining amalgams were an unknown mixture of admixed high-copper and single-composition-alloy amalgams.
The data were fit to a mixed-effects model with random patient effects to allow for the correlation, using the maximum likelihood method. The early data best fit a quadratic model with an initially rapidly rising corrosion potential that leveled off to a constant mean value of -146 (60)mV (versus Ag/AgCl, 3M KCl at 35 degrees C) by approximately 7 months. Most of the ennoblement occurred within the first 4 months after restoration placement.
This in vivo study observed a slower rate of corrosion potential ennoblement for admixed amalgam restorations than would be predicted from in vitro studies. The slower rate is believed due to the combination of mechanical, chemical and biological forces in the mouth that are generally absent using simulated conditions. The slower rate of ennoblement suggests a slower rate of achieving maximum corrosion resistance than would be predicted using in vitro studies.
本研究的目的是测量新放置的混合牙科汞合金修复体随时间的腐蚀电位,作为腐蚀活性的一个可能指标。
在81名受试者的便利样本中,测量了271个4分钟至24个月大的汞合金修复体的腐蚀电位。所选修复体与其他金属修复体无咬合或邻面接触。4分钟至7个月大的修复体中,81%由含锌混合高铜汞合金制成。其余汞合金是混合高铜和单成分合金汞合金的未知混合物。
使用最大似然法,将数据拟合到具有随机患者效应的混合效应模型中,以考虑相关性。早期数据最适合二次模型,腐蚀电位最初迅速上升,到大约7个月时趋于平稳,达到-146(60)mV的恒定平均值(相对于35℃下的Ag/AgCl,3M KCl)。大多数电位升高发生在修复体放置后的前4个月内。
这项体内研究观察到,混合汞合金修复体的腐蚀电位升高速度比体外研究所预测的要慢。据信,这种较慢的速度是由于口腔中的机械、化学和生物力量共同作用的结果,而在模拟条件下通常不存在这些力量。电位升高速度较慢表明,达到最大耐腐蚀性的速度比体外研究所预测的要慢。