Graduate student, Post-Graduate Program in Dentistry, Federal University of Piauí, Piauí, Brazil.
Professor, Post-Graduate Program in Dentistry, Federal University of Piauí, Piauí, Brazil.
J Prosthet Dent. 2017 May;117(5):621-627. doi: 10.1016/j.prosdent.2016.07.024. Epub 2016 Oct 27.
The maintenance of the mechanical stability of implant-abutment connections is relevant to the clinical success of implant-supported restorations. However, the reduction in the conical area of abutments with an internal hexagonal index may result in a biomechanical disadvantage in Morse taper connections.
The purpose of this in vitro study was to evaluate the influence of an internal hexagonal index on the removal torque and tensile removal force of different Morse taper connection abutments submitted to thermomechanical cycling.
Forty Morse taper implants with their respective abutments were divided into 4 groups (n=10): straight abutment without index (PRNI); straight abutment with index (PRI); angled abutment without index (PANI); and angled abutment with index (PAI). Each abutment received an insertion torque of 15 Ncm, and the removal torque was recorded before and after thermomechanical cycling (10 cycles, 2 Hz, load of 130 N). After cycling, the groups were submitted to tensile testing at 0.5 mm/min under a load of 500 N until displacement of the abutment. A paired t test was performed for the intragroup analysis of removal torque before and after cycling and 2-way ANOVA followed by the Tukey Honestly Significant Difference (HSD) test was used for intergroup comparison (α=.05).
Statistical analysis showed significant differences in intragroup removal torque values before compared with after thermomechanical cycling (P<.05). No statistically significant differences were found between the experimental groups in the removal torque of the prosthetic screw after cycling. The index factor (P=.028) was significant for tensile removal force.
The type of abutment did not significantly influence the removal torque or tensile removal force after cycling. However, the presence of the internal hexagonal index significantly reduced the force necessary to dislodge the abutment from the implant.
种植体-基台连接的机械稳定性与种植体支持修复的临床成功相关。然而,内六角指数的基台锥形区域的减小可能会导致莫氏锥度连接的生物力学劣势。
本体外研究的目的是评估内六角指数对不同莫氏锥度连接基台在热循环作用下的去除扭矩和拉伸去除力的影响。
将 40 个莫氏锥度种植体及其相应的基台分为 4 组(n=10):无指数直基台(PRNI);带指数直基台(PRI);无指数角度基台(PANI);带指数角度基台(PAI)。每个基台施加 15 Ncm 的插入扭矩,在热循环(10 个循环,2 Hz,130 N 负载)前后记录去除扭矩。循环后,在 500 N 的负载下以 0.5 mm/min 的速度进行拉伸测试,直到基台位移。对组内循环前后去除扭矩进行配对 t 检验,对组间差异采用双因素方差分析,然后采用 Tukey Honestly Significant Difference(HSD)检验(α=.05)。
统计学分析显示,组内去除扭矩值在热循环前后有显著差异(P<.05)。循环后,实验组之间的修复体螺钉去除扭矩无统计学差异。指数因素(P=.028)对拉伸去除力有显著影响。
基台类型对循环后的去除扭矩或拉伸去除力没有显著影响。然而,内六角指数的存在显著降低了从种植体上拆卸基台所需的力。