Andreasi Bassi Mirko, Arosio Paolo, Di Stefano Danilo Alessio
Int J Oral Maxillofac Implants. 2018 July/August;33(4):770–778. doi: 10.11607/jomi.6079. Epub 2018 Jun 12.
Recently, a torque-measuring micromotor that calculates the integral (I) of torque-depth curve at implant insertion was developed. This device was used to investigate the correlation between (I) and mechanical stress in photoelastic resin blocks with the density of D1 bone.
Using the micromotor, 40 implants (3.75 × 12 mm) were placed in 40 D1 blocks that had been prepared in four different ways. Four groups of 10 blocks each were prepared according to tunnel length (12 or 14 mm) and debris removal (yes or no). After insertion, peri-implant mechanical stress and its correlation with (I) were assessed by photoelastic and linear regression analysis, respectively. Analysis of variance (ANOVA) and Kruskal-Wallis tests investigated differences in mechanical stress patterns and dynamic parameters among the groups.
(I) significantly correlated with mechanical stress in D1 resin under all conditions, except for 12-mm implant sites still containing debris. The correlation was significant concerning the whole dataset (r = 0.979) and separately for the coronal (r = 0.940), middle (r = 0.964), and apical (r = 0.948) portions of the implants. Peak torque did not correlate significantly with peri-implant mechanical stress. Longer implant sites and debris removal were significantly associated with lower peri-implant mechanical stress.
(I) provides a reliable measure of mechanical stress in D1 bone during implant placement. Preparation of longer osteotomies and routine removal of all debris might reduce peri-implant bone stress significantly.
最近,一种在种植体植入时计算扭矩-深度曲线积分(I)的扭矩测量微电机被研发出来。该装置用于研究(I)与具有D1骨密度的光弹性树脂块中的机械应力之间的相关性。
使用该微电机,将40颗种植体(3.75×12 mm)植入40个以四种不同方式制备的D1块中。根据隧道长度(12或14 mm)和碎屑清除情况(是或否)将40个块分为四组,每组10个。植入后,分别通过光弹性分析和线性回归分析评估种植体周围的机械应力及其与(I)的相关性。方差分析(ANOVA)和Kruskal-Wallis检验研究了各组之间机械应力模式和动态参数的差异。
在所有情况下,(I)与D1树脂中的机械应力均显著相关,但12 mm种植部位仍有碎屑的情况除外。对于整个数据集(r = 0.979)以及种植体的冠部(r = 0.940)、中部(r = 0.964)和根尖部(r = 0.948),相关性均显著。峰值扭矩与种植体周围的机械应力无显著相关性。更长的种植部位和碎屑清除与更低的种植体周围机械应力显著相关。
(I)为种植体植入过程中D1骨中的机械应力提供了可靠的测量方法。制备更长的截骨术并常规清除所有碎屑可能会显著降低种植体周围的骨应力。