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不同表面设计对正畸微螺钉旋转阻力和稳定性的影响:三维有限元研究。

Effect of Different Surface Designs on the Rotational Resistance and Stability of Orthodontic Miniscrews: A Three-Dimensional Finite Element Study.

机构信息

Department of Orthodontics, Graduate School of Dentistry, Kyung Hee University, Seoul 02447, Korea.

Department of Orthodontics, Graduate School of Medicine, Korea University, Seoul 02841, Korea.

出版信息

Sensors (Basel). 2021 Mar 11;21(6):1964. doi: 10.3390/s21061964.

Abstract

High orthodontic forces and various directions of applied forces can be associated with loosening of the screw anchorage in the bone. Screw designs have been modified to increase the stability of the miniscrews. This research evaluates the influence of three-designs on the stability of orthodontic miniscrews. A conventionally cylinder-type miniscrew design (Bio-Action screw, Jin-Biomed co., Bucheon, Korea) was set as a control, and three conditions were studied based on modifications of this control design. Condition-1 has narrowed threads in the upper part of the screw; Condition-2 has a notch at the middle part; and Condition-3 has the combination of Condition-1 and Condition-2. The moment required to unwind the miniscrew to five degrees is tested, and the moment generated at the cortical bone and the trabecular bone were calculated with finite element analysis. Compared to the control, all three conditions showed a higher moment required to unwind the miniscrew and a higher moment generated at the cortical bone. At the trabecular bone, condition-2 and -3 showed higher moment than the control, and condition-1 showed similar moment to the control. Condition-3 required a higher overall moment to unwind the miniscrew. These findings validate the design modifications used to increase the rotational resistance.

摘要

高的正畸力和各种方向的应用力可导致螺钉在骨内松动。螺钉的设计已经被修改以增加微螺钉的稳定性。本研究评估了三种设计对正畸微螺钉稳定性的影响。将传统的圆柱型微螺钉设计(Bio-Action screw,Jin-Biomed co.,Bucheon,韩国)作为对照,并基于该对照设计的修改研究了三种条件。条件 1 在螺钉的上部具有变窄的螺纹;条件 2 在中间具有一个凹口;条件 3 则结合了条件 1 和条件 2。测试将微螺钉松开五度所需的扭矩,并通过有限元分析计算皮质骨和小梁骨产生的扭矩。与对照相比,所有三种条件下松开微螺钉所需的扭矩以及在皮质骨产生的扭矩均较高。在小梁骨中,条件 2 和条件 3 产生的扭矩高于对照,而条件 1 与对照相似。条件 3 松开微螺钉所需的总扭矩更高。这些发现验证了用于增加旋转阻力的设计修改。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed4b/8001794/093c69e54c9e/sensors-21-01964-g001.jpg

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