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短长度紫外线光功能化微螺钉的成功率和生物力学稳定性评估。

Evaluation of success rate and biomechanical stability of ultraviolet-photofunctionalized miniscrews with short lengths.

机构信息

Department of Orthodontics, Institute of Craniofacial Deformity, Yonsei University College of Dentistry, Seoul, South Korea.

Department of Periodontology, Research Institute for Periodontal Regeneration, Yonsei University College of Dentistry, Seoul, South Korea.

出版信息

Am J Orthod Dentofacial Orthop. 2021 Feb;159(2):158-166. doi: 10.1016/j.ajodo.2019.12.018. Epub 2020 Nov 24.

Abstract

INTRODUCTION

The aim of this research was to verify that ultraviolet light (UV)-photofunctionalization improves the success rate and biomechanical stability of miniscrews regardless of length, and to evaluate the comparability of biomechanical stability between UV-photofunctionalized miniscrews with short lengths and untreated miniscrews with conventional lengths.

METHODS

Eight male beagles (age, 12-15 months; weight, 10-13 kg) received a total of 64 miniscrews, including 7-mm and 4-mm untreated and UV-photofunctionalized, acid-etched miniscrews with the use of a random block design. The cumulative success rates were examined in all studied groups. The insertion and removal torques and screw mobility were measured. Microcomputed tomographic scans and histomorphometric analyses were performed at 8 weeks postoperatively.

RESULTS

The success rates of 7-mm UV-untreated and UV-photofunctionalized miniscrews were 87.5% and 100%, respectively, vs 43.8% for the 4-mm UV-untreated and 4-mm UV-photofunctionalized miniscrews. The rates were significantly different in accordance with the length (P <0.001). There were no differences in the insertion and removal torque and screw mobility between groups according to the length or UV treatment. However, the 4-mm UV-untreated miniscrews yielded a mean bone area ratio of 6.35 ± 7.43%, whereas the 7-mm UV-photofunctionalized miniscrew yielded a mean ratio of 32.17 ± 8.34% (P = 0.037).

CONCLUSIONS

The UV-photofunctionalization significantly increased the biomechanical stability and led to increased bone and miniscrew contact area in dogs with miniscrews of the same length. However, the most important factor that affected the success rate of the miniscrew was the length.

摘要

介绍

本研究旨在验证紫外光(UV)光功能化是否能提高微螺钉的成功率和生物力学稳定性,而不论其长度如何,并评估短长度 UV 光功能化微螺钉与传统长度未处理微螺钉之间生物力学稳定性的可比性。

方法

8 只雄性比格犬(年龄 12-15 个月;体重 10-13kg)共植入 64 枚微螺钉,包括 7mm 和 4mm 未处理和 UV 光功能化酸蚀微螺钉,采用随机块设计。在所有研究组中检查了累积成功率。测量了植入和移除扭矩以及螺钉活动性。术后 8 周进行微计算机断层扫描和组织形态计量学分析。

结果

7mm UV 未处理和 UV 光功能化微螺钉的成功率分别为 87.5%和 100%,而 4mm UV 未处理和 UV 光功能化微螺钉的成功率分别为 43.8%。根据长度,成功率有显著差异(P<0.001)。根据长度或 UV 处理,各组之间的植入和移除扭矩以及螺钉活动性没有差异。然而,4mm UV 未处理微螺钉的骨面积比平均为 6.35±7.43%,而 7mm UV 光功能化微螺钉的骨面积比平均为 32.17±8.34%(P=0.037)。

结论

UV 光功能化显著提高了生物力学稳定性,并在长度相同的犬中增加了骨和微螺钉的接触面积。然而,影响微螺钉成功率的最重要因素是长度。

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