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Load-Bearing Capacity and Retention of Newly Developed Micro-Locking Implant Prosthetic System: An In Vitro Pilot Study

机译:新开发的微锁定植入物修复系统的承重能力和保持力:一项体外试验研究

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摘要

The aim of this study was to introduce the newly developed micro-locking implant prosthetic system and to evaluate the resulting its characteristics. To evaluate load-bearing capacity, 25 implants were divided into five groups: external-hexagon connection (EH), internal-octagon connection (IO), internal-hexagon connection (IH), one-body implant (OB), micro-locking implant system (ML). The maximum compressive load was measured using a universal testing machine (UTM) according to the ISO 14801. Retention was evaluated in two experiments: (1) a tensile test of the structure modifications of the components (attachment and implant) and (2) a tensile test after cyclic loading (total 5,000,000 cycles, 100 N, 2 Hz). The load-bearing capacity of the ML group was not significantly different from the other groups (p > 0.05). The number of balls in the attachment and the presence of a hexagonal receptacle did not show a significant correlation with retention (p > 0.05), but the shape of the retentive groove in the implant post had a statistically significant effect on retention (p < 0.05). On the other hand, the retention loss was observed during the initial 1,000,000 cycles, but an overall constant retention was maintained afterward. Various preclinical studies on this novel micro-locking implant prosthetic system should continue so that it can be applied in clinical practice.
机译:这项研究的目的是介绍新开发的微锁定植入物修复系统,并评估由此产生的特性。为了评估承重能力,将25种植入物分为五组:外部六边形连接(EH),内部八边形连接(IO),内部六边形连接(IH),一体式植入物(OB),微锁定植入系统(ML)。根据ISO 14801,使用通用测试机(UTM)测量了最大压缩载荷。在两个实验中评估了保持力:(1)组件(连接和植入物)结构修改的拉伸测试;(2)a循环载荷后的拉伸试验(共5,000,000次,100 N,2 Hz)。 ML组的承重能力与其他组无显着差异(p> 0.05)。附件中的球数量和六角形接收器的存在与固位没有显着相关性(p> 0.05),但是植入物柱中固位槽的形状对固位有统计学显着影响(p <0.05) )。另一方面,在最初的1,000,000次循环中观察到了保持力损失,但是此后保持了总体恒定的保持力。应当继续对该新型微锁定植入物修复系统进行各种临床前研究,以便将其应用于临床实践。

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