Huang Yuanjin, Tawada Yasuyuki, Hata Yoshiaki, Watanabe Fumihiko
Guangdong Provincial Stomatological Hospital, Southern Medical University, 366 Jiangnan Avenue, Guangzhou, Guangdong, China.
Odontology. 2008 Jul;96(1):65-8. doi: 10.1007/s10266-008-0085-0. Epub 2008 Jul 27.
Magnets are frequently applied to removable dentures as retentive attachments. A magnet-retained removable overdenture might be slightly shifted from side to side by eccentric movement in the mouth, and the surface of magnetic attachment may be worn as a result. However, the relationship between the retentive force of magnetic attachment and its surface abrasion has not been reported. The purpose of this research is to investigate this relationship. Ten Mgfit DX 400 magnetic attachments for natural tooth roots were used for this experiment. The magnetic attachments were embedded in autopolymerizing acrylic resin, and ten pairs of specimens were fabricated. A 5-mm repeated gliding motion was applied on each pair of specimens until 30 000, 50 000, or 90 000 cycles had been achieved. The abrasion machine was under 5 kg loading, and the slide speed was 60 times/min. The retentive force of magnetic attachment was measured with a tension gauge at (1) before gliding; (2) after 30 000 gliding cycles; (3)after 50 000 gliding cycles; or (4) after 90 000 gliding cycles. The average change of retentive force of ten magnetic attachments after 30 000, 50 000, and 90 000 gliding cycles was 0.016 N, 0.003 N, and -0.008 N, respectively. The change was statistically analyzed using a paired-sample t test, which showed that the number of gliding cycles did not affect the retentive force of magnetic attachment significantly. The surface of magnetic attachment after gliding was observed by a microscope, and the abrasion of this attachment surface is clearly seen.
磁铁常被用作可摘义齿的固位附件。磁体固位的可摘覆盖义齿在口腔中可能会因偏心运动而左右轻微移动,磁附着体表面可能因此磨损。然而,磁附着体的固位力与其表面磨损之间的关系尚未见报道。本研究的目的是探讨这种关系。本实验使用了10个用于天然牙根的Mgfit DX 400磁附着体。将磁附着体嵌入自凝丙烯酸树脂中,制作了10对标本。对每对标本施加5毫米的重复滑动运动,直至达到30000、50000或90000次循环。磨损机加载5千克,滑动速度为每分钟60次。用拉力计在以下时间测量磁附着体的固位力:(1)滑动前;(2)30000次滑动循环后;(3)50000次滑动循环后;或(4)90000次滑动循环后。10个磁附着体在30000、50000和90000次滑动循环后的固位力平均变化分别为0.016牛、0.003牛和-0.008牛。使用配对样本t检验对该变化进行统计分析,结果表明滑动循环次数对磁附着体的固位力没有显著影响。用显微镜观察滑动后磁附着体的表面,可见该附着体表面有明显磨损。