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首页> 外文期刊>Clinical oral implants research >The impact of loads on standard diameter, small diameter and mini implants: a comparative laboratory study.
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The impact of loads on standard diameter, small diameter and mini implants: a comparative laboratory study.

机译:负载对标准直径,小直径和微型植入物的影响:一项对比实验室研究。

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摘要

OBJECTIVES: While caution in the use of small-diameter (< or = 3.5 mm) implants has been advocated in view of an increased risk of fatigue fracture under clinical loading conditions, a variety of implant designs with diameters < 3 mm are currently offered in the market for reconstructions including fixed restorations. There is an absence of reported laboratory studies and randomized-controlled clinical trials to demonstrate clinical efficacy for implant designs with small diameters. This laboratory study aimed to provide comparative data on the mechanical performance of a number of narrow commercially marketed implants. MATERIALS AND METHODS: Implants of varying designs were investigated under a standardized test set-up similar to that recommended for standardized ISO laboratory testing. Implant assemblies were mounted in acrylic blocks supporting laboratory cast crowns and subjected to 30 degrees off-axis loading on an LRX Tensometer. Continuous output data were collected using Nexygen software. RESULTS: Load/displacement curves demonstrated good grouping of samples for each design with elastic deformation up to a point of failure approximating the maximum load value for each sample. The maximum loads for Straumann (control) implants were 989 N (+/-107 N) for the 4.1 mm RN design, and 619 N (+/-50 N) for the 3.3 mm RN implant (an implant known to have a risk of fracture in clinical use). Values for mini implants were recorded as 261 N (+/-31 N) for the HiTec 2.4 mm implant, 237 N (+/-37 N) for the Osteocare 2.8 mm mini and 147 N (+/-25 N) for the Osteocare mini design. Other implant designs were also tested. CONCLUSIONS: The diameters of the commercially available implants tested demonstrated a major impact on their ability to withstand load, with those below 3 mm diameter yielding results significantly below a value representing a risk of fracture in clinical practice. The results therefore advocate caution when considering the applicability of implants < or = 3 mm diameter. Standardized fatigue testing is recommended for all commercially available implants.
机译:目的:考虑到在临床负荷条件下疲劳破裂的风险增加,提倡使用小直径(<或= 3.5 mm)植入物时要谨慎,目前,在美国提供了各种直径小于3 mm的植入物设计。包括固定修复物的重建市场。尚无报道的实验室研究和随机对照临床试验来证明小直径植入物设计的临床疗效。这项实验室研究旨在提供许多市场上销售的狭窄植入物的机械性能的比较数据。材料与方法:在类似于标准化ISO实验室测试建议的标准测试设置下,对各种设计的植入物进行了研究。将植入物组件安装在支撑实验室铸造牙冠的丙烯酸块中,并在LRX张力计上承受30度偏轴载荷。使用Nexygen软件收集连续输出数据。结果:载荷/位移曲线表明,每种设计的样本均具有良好的分组,弹性变形直至失效点都接近于每个样本的最大负荷值。对于4.1毫米RN设计,Straumann(对照)植入物的最大负载为989 N(+/- 107 N),对于3.3毫米RN植入物(已知有风险的植入物)为619 N(+/- 50 N)临床使用中的骨折迷你植入物的值记录为:HiTec 2.4 mm植入物为261 N(+/- 31 N),Osteocare 2.8 mm植入物的值为237 N(+/- 37 N),而Teostecare 2.8 mm植入物为147 N(+/- 25 N)。 Osteocare迷你设计。还测试了其他植入物设计。结论:经测试的市售植入物直径显示出对其承受负荷能力的重大影响,直径小于3 mm的植入物产生的结果明显低于代表临床实践中骨折风险的值。因此,当考虑直径小于或等于3毫米的植入物的适用性时,结果提倡谨慎。建议对所有商用植入物进行标准化疲劳测试。

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