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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Comparison of the orthodontic load systems created with elastomeric power chain to close extraction spaces on different rectangular archwires
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Comparison of the orthodontic load systems created with elastomeric power chain to close extraction spaces on different rectangular archwires

机译:比较使用弹性体动力链创建的正畸载荷系统以封闭不同矩形弓丝上的拔出空间

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Introduction: The 3-dimensional load system (forces and moments) was quantified at the canine bracket during space closure with sliding mechanics with elastomeric chain on dry and wet stainless steel and beta-titanium 0.019 × 0.025-in archwires. Methods: A custom-made maxillary dentoform simulating first premolar extractions was attached to an orthodontic force tester. The canine was attached to a load cell through an adaptor with silicone simulating the periodontal ligament. The orthodontic force tester simultaneously measured the entire load system produced at the canine bracket by an elastomeric chain. The effects of archwire material, time (activation and 1 hour), and lubrication were analyzed by using 3-way repeated measures analysis of variance (ANOVA, α = 0.05). Results: Stainless steel provided a greater (P = 0.001) load system than did beta-titanium. The force was greatest on the canine in the lingual axis. The greatest moment was about the y-axis. The moment-to-force ratio, the most critical ratio, was greater for beta-titanium than stainless steel; however, both were close to the ideal 10:1. Conclusions: With a stainless steel archwire for retraction sliding mechanics, a canine will experience a greater load system in all 3 dimensions than with a beta-titanium wire. Both archwires produced a moment-to-force ratio adequate for translation.
机译:简介:在空间封闭过程中,通过在干,湿不锈钢和β-钛0.019×0.025-in弓丝上的弹性链滑动机构,利用弹性力学在犬齿托架上量化了三维载荷系统(力和力矩)。方法:将模拟第一次拔牙前拔牙的定制上颌牙形体连接到正畸力测试仪上。犬通过带有模拟牙周膜的硅酮的适配器连接到称重传感器。正畸力测试仪同时测量了由弹性链在犬牙支架上产生的整个负载系统。使用三向重复测量方差分析(ANOVA,α= 0.05)分析弓丝材料,时间(激活和1小时)和润滑的影响。结果:与β-钛相比,不锈钢提供了更大的载荷系统(P = 0.001)。在舌轴上的力最大。最大的时刻是关于y轴。 β-钛的最关键的力矩比是最大的。但是,两者都接近理想的10:1。结论:采用不锈钢弓丝进行缩回滑动力学处理,与β-钛丝相比,犬在所有三个维度上都将承受更大的载荷系统。两条弓丝都产生了足够用于平移的力矩比。

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