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美观涂层弓丝在金属、陶瓷和聚碳酸酯托槽中的摩擦阻力。

Frictional resistance of esthetic-coated archwires in with metal, ceramic and polycarbonate brackets.

作者信息

Prasad Dash Bhagabati, Meher Jasbir, Thomas Bosco, Behera Swabhiman, Rana Shailender Singh, Dube Sonia

机构信息

Department of Orthodontics, Kalinga Institute of Dental Sciences, KIITDU, Bhubaneswar, Odisha, India.

Department of Dentistry, AIIMS Bhatinda, Punjab, India.

出版信息

Bioinformation. 2025 Apr 30;21(4):809-812. doi: 10.6026/973206300210809. eCollection 2025.

DOI:10.6026/973206300210809
PMID:40636201
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12236537/
Abstract

The level of friction that occurs when aesthetic brackets interact with coated wires is of interest. The resistance values reached their minimum point when stainless steel brackets used coated NiTi wires at 2.3 ± 0.2 N but reached their maximum point when ceramic brackets applied ceramic-coated NiTi wires at 6.5 ± 0.5 N. Brackets made with stainless steel material combined with coated NiTi wires produce superior orthodontic results according to the research. The increased friction caused by ceramic brackets could possibly reduce the rate of tooth movement. The decision of proper wire-bracket pairs remains critical because it determines both therapy results and cosmetic outcomes.

摘要

美学托槽与涂层弓丝相互作用时产生的摩擦水平备受关注。当不锈钢托槽使用涂层镍钛弓丝时,阻力值在2.3±0.2N时达到最低点,但当陶瓷托槽使用陶瓷涂层镍钛弓丝时,阻力值在6.5±0.5N时达到最高点。根据研究,由不锈钢材料制成的托槽与涂层镍钛弓丝相结合可产生更好的正畸效果。陶瓷托槽导致的摩擦力增加可能会降低牙齿移动的速度。选择合适的弓丝-托槽组合仍然至关重要,因为它决定了治疗效果和美观效果。

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本文引用的文献

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Comparative assessment of frictional forces between differently designed esthetic brackets during simulated canine retraction.模拟犬牙后移过程中不同设计的美观托槽之间摩擦力的比较评估
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Friction forces generated by aesthetic Gummetal® (Ti-Nb) orthodontic archwires: A comparative in vitro study.审美型 Gummetal®(Ti-Nb)正畸弓丝产生的摩擦力:一项比较性的体外研究。
Int Orthod. 2022 Dec;20(4):100683. doi: 10.1016/j.ortho.2022.100683. Epub 2022 Aug 20.
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Comparative in vitro analysis of the sliding resistance of a modern 3D-printed polymer bracket in combination with different archwire types.现代 3D 打印聚合物托槽与不同弓丝类型结合的体外滑动阻力比较分析。
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