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扭矩施加技术对种植体支持式修复体螺钉预紧力的影响。

The Effect of Torque Application Technique on Screw Preload of Implant-Supported Prostheses.

作者信息

Al-Otaibi Hanan Nejer, Almutairi Ahlam, Alfarraj Jawza, Algesadi Wejdan

出版信息

Int J Oral Maxillofac Implants. 2017 Mar/Apr;32(2):259–263. doi: 10.11607/jomi.4773. Epub 2016 Sep 15.

Abstract

PURPOSE

To examine the effect of different torque application techniques (torqued, retorqued once, and retorqued twice) on the removal torque of implant-supported fixed complete dental prostheses.

MATERIALS AND METHODS

Four Nobel Biocare implants (4.3 × 13 + 3; 13-mm thread height + 3-mm collar height) were stabilized temporarily inside four holes made in an acrylic mandibular master model. A metal framework was constructed, casted, and finished using a standardized technique. A passively fitting framework was achieved by removing the implants from the acrylic master model and hand-screwing them to the metal framework. Then, the whole assembly was restabilized in the acrylic master model. The torque experiment consisted of three protocols: (1) torquing screws to 35 Ncm a single time; (2) torquing the screws to 35 Ncm and then immediately retorquing the same screws to the same value; and (3) torquing the same screws to 35 Ncm three consecutive times. Removal torque was recorded for each implant using a digital torque meter.

RESULTS

The highest torque value was recorded for the retorqued-once application technique (29.5 ± 1.5 Ncm); next was the torqued technique (27.9 ± 0.7 Ncm); and, last was the retorqued-twice technique (27.2 ± 1.6 Ncm). The Games-Howell post hoc test showed that the retorqued-once application technique resulted in significantly higher torque values than the torqued and retorqued-twice torque application techniques (P ≤ .05).

CONCLUSION

Retightening abutment screws once after the initial torquing could enhance the removal torque of the screw. Care must be taken when retorquing the screws more than once, as this may inversely affect the removal torque.

摘要

目的

研究不同扭矩施加技术(一次扭矩、一次再扭矩和两次再扭矩)对种植体支持的固定全口义齿拆除扭矩的影响。

材料与方法

将4颗诺贝尔生物 care 种植体(4.3×13 + 3;13毫米螺纹高度 + 3毫米颈部高度)临时固定在丙烯酸下颌主模型上制作的4个孔内。采用标准化技术构建、铸造并完成金属框架。通过从丙烯酸主模型中取出种植体并手动将其拧到金属框架上,实现被动适配框架。然后,将整个组件重新固定在丙烯酸主模型中。扭矩实验包括三个方案:(1)将螺钉一次性扭矩至35 Ncm;(2)将螺钉扭矩至35 Ncm,然后立即将同一螺钉再次扭矩至相同值;(3)将同一螺钉连续三次扭矩至35 Ncm。使用数字扭矩计记录每个种植体的拆除扭矩。

结果

一次再扭矩施加技术记录的扭矩值最高(29.5±1.5 Ncm);其次是一次扭矩技术(27.9±0.7 Ncm);最后是两次再扭矩技术(27.2±1.6 Ncm)。Games-Howell 事后检验表明,一次再扭矩施加技术产生的扭矩值显著高于一次扭矩和两次再扭矩施加技术(P≤0.05)。

结论

初次扭矩后再次拧紧基台螺钉可提高螺钉的拆除扭矩。多次再扭矩时必须小心,因为这可能会对拆除扭矩产生反向影响。

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