Department of Dentistry, St. Catholic Hospital, Catholic University of Korea, Ji-Dong, Suwon, South Korea.
Implant Dent. 2012 Oct;21(5):427-32. doi: 10.1097/ID.0b013e31826917f6.
To compare between a bioactive and a bioinert implant with different geometries by continuous measurement of the removal torque and calculation of the angular momentum of each surfaced implant.
Six New Zealand white rabbits were used in the study. Each rabbit received 2 implants. A bioactive fluoride-modified implant with a conical connection and microthread design was inserted into one tibia, and a bioinert anodically oxidized implant with an external connection design was inserted into the other. After 2 weeks of implant insertion, the removal torque values were continuously measured according to time. Using the time-torque curve resulting from the measurements, the maximum values were determined, and the angular momenta were calculated.
The anodically oxidized implant had significantly higher peak removal torque and angular momentum values than the fluoride-modified implant (P < 0.05).
The impact of the fluoride-modified bioactive implant on early bone response remains unclear. Considering the angular momentum of dental implants may assist in the elucidation of the effect of implant geometry on bone response.
通过连续测量去除扭矩并计算每个表面植入物的角动量,比较具有不同几何形状的生物活性和生物惰性植入物。
本研究使用了 6 只新西兰白兔。每只兔子接受 2 个植入物。一个具有锥形连接和微螺纹设计的生物活性氟化改性植入物被插入一只胫骨中,另一个具有外部连接设计的生物惰性阳极氧化植入物被插入另一只胫骨中。植入后 2 周,根据时间连续测量去除扭矩值。使用测量得出的时间-扭矩曲线确定最大扭矩值,并计算角动量。
阳极氧化植入物的峰值去除扭矩和角动量值明显高于氟化改性植入物(P<0.05)。
氟化改性生物活性植入物对早期骨反应的影响尚不清楚。考虑到种植牙的角动量可能有助于阐明种植体几何形状对骨反应的影响。