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一种分析正畸自攻自钻微螺钉植入技术准确性和术中并发症的新数字技术:一项体外研究。

Novel digital technique to analyze the accuracy and intraoperative complications of orthodontic self-tapping and self-drilling microscrews placement techniques: An in vitro study.

机构信息

Department of Implant Surgery, Faculty of Health Sciences, Alfonso X El Sabio University, Madrid, Spain.

Department of Implant Surgery, Faculty of Health Sciences, Alfonso X El Sabio University, Madrid, Spain; Department of Surgery, Faculty of Medicine and Dentistry, University of Salamanca, Salamanca, Spain.

出版信息

Am J Orthod Dentofacial Orthop. 2022 Aug;162(2):201-207. doi: 10.1016/j.ajodo.2021.03.020. Epub 2022 Mar 23.

Abstract

INTRODUCTION

The objectives of this study were to analyze and compare the accuracy and intraoperative complications of orthodontic self-tapping and orthodontic self-drilling microscrew placement techniques.

METHODS

A total of 60 orthodontic microscrews were randomly distributed into 2 study groups: (1) group A, orthodontic self-drilling microscrew placement technique (n = 30); and (2) group B, orthodontic self-tapping microscrew placement technique (n = 30). Cone-beam computed tomography and intraoral scans were performed before and after the orthodontic microscrew placement techniques and uploaded in 3-dimensional implant planning software to analyze the deviation angle and the horizontal deviation measured at the coronal entry point and apical endpoint between orthodontic microscrews planned and performed, using the Student t test. In addition, intraoperative complications, such as root perforations after the orthodontic microscrews placement and the fracture of the orthodontic self-tapping microscrews during their placement, were also analyzed.

RESULTS

The paired t test revealed statistically significant differences at the apical endpoint (P <0.001) between planned and performed orthodontic self-tapping and self-drilling microscrew placement techniques. However, the paired t test revealed no statistically significant differences at the coronal entry point (P = 0.1047) and angular deviations (P = 0.3251) between planned and performed orthodontic self-tapping and self-drilling microscrews placement techniques. Furthermore, 4 root perforations were observed at the orthodontic self-tapping microscrews placement technique, and 1 orthodontic self-tapping microscrew was fractured during the placement procedure.

CONCLUSIONS

The results show that the orthodontic self-drilling microscrew technique increases the accuracy of orthodontic microscrews placement, resulting in fewer intraoperative complications.

摘要

引言

本研究旨在分析和比较正畸自攻和自钻微螺钉植入技术的准确性和术中并发症。

方法

将 60 颗正畸微螺钉随机分为 2 个研究组:(1)组 A,正畸自钻微螺钉植入技术(n=30);(2)组 B,正畸自攻微螺钉植入技术(n=30)。在正畸微螺钉植入技术前后进行锥形束 CT 和口内扫描,并将其上传至 3 维种植规划软件,分析计划与实施的正畸微螺钉之间在冠状入口点和根尖终点的偏差角和水平偏差,使用学生 t 检验。此外,还分析了术中并发症,如正畸微螺钉植入后根穿孔和正畸自攻微螺钉在植入过程中折断。

结果

配对 t 检验显示,在根尖终点(P<0.001),计划与实施的正畸自攻和自钻微螺钉植入技术之间存在统计学显著差异。然而,在冠状入口点(P=0.1047)和角度偏差(P=0.3251)方面,计划与实施的正畸自攻和自钻微螺钉植入技术之间没有统计学显著差异。此外,在正畸自攻微螺钉植入技术中观察到 4 例根穿孔,1 例正畸自攻微螺钉在植入过程中折断。

结论

结果表明,正畸自钻微螺钉技术提高了正畸微螺钉植入的准确性,减少了术中并发症。

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