Noar Joseph H, Evans Robert D, Wilson Denise, Costello John, Ioannou Elena, Ayeni Ayodele, Mordan Nicky J, Wilson Michael, Pratten Jonathan
Department of Orthodontics, Eastman Dental Institute for Oral Health Care Sciences, University College London, UK.
Eur J Orthod. 2003 Dec;25(6):615-9. doi: 10.1093/ejo/25.6.615.
The aim of this investigation was to study the corrosion behaviour and products of uncoated neodymium-iron-boron magnets in the presence of dental amalgam. Microcosm plaques were grown on discs of neodymium-iron-boron magnets or amalgam in a constant depth film fermentor. The biofilms were supplied with artificial saliva and growth was determined by viable counting. The results showed that the neodymium-iron-boron magnets corroded with an average daily weight loss of 0.115 +/- 0.032 per cent. However, when the magnets were in close proximity to the amalgam the amount of corrosion was reduced to a daily loss of 0.066 +/- 0.023 per cent. The highest loss of constituent elements from the corrosion products of the magnets was observed for iron. The composition of the microcosm plaques altered markedly between the two materials with less streptococci and more Veillonella spp. present in the biofilms grown on magnets in the presence of amalgam. The corrosion of neodymium-iron-boron magnets is limited and in the presence of amalgam is reduced further. This suggests that amalgam present in the mouth will not cause an increased clinical risk in terms of biocompatibility with neodymium-iron-boron magnets.
本研究的目的是研究未涂层钕铁硼磁体在牙科汞合金存在下的腐蚀行为及产物。在恒深膜发酵罐中,在钕铁硼磁体或汞合金圆盘上培养微观菌斑。向生物膜提供人工唾液,并通过活菌计数确定生长情况。结果表明,钕铁硼磁体发生腐蚀,平均每日重量损失为0.115±0.032%。然而,当磁体靠近汞合金时,腐蚀量降至每日损失0.066±0.023%。磁体腐蚀产物中成分元素损失最高的是铁。两种材料上微观菌斑的组成有明显变化,在汞合金存在下磁体上生长的生物膜中链球菌较少,韦荣氏菌属较多。钕铁硼磁体的腐蚀是有限的,在汞合金存在下会进一步降低。这表明口腔中存在的汞合金在与钕铁硼磁体的生物相容性方面不会增加临床风险。