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导向钻和麻花钻的种植体钻孔参数对骨模拟物和牙槽骨温度升高的影响。

Effects of implant drilling parameters for pilot and twist drills on temperature rise in bone analog and alveolar bones.

作者信息

Chen Yung-Chuan, Hsiao Chih-Kun, Ciou Ji-Sih, Tsai Yi-Jung, Tu Yuan-Kun

机构信息

Department of Vehicle Engineering, National Pingtung University of Science and Technology, 1, Shuefu Road, Neipu, Pingtung, Taiwan.

Department of Orthopedics, E-Da Hospital, No.1 E-Da Road, Yuan-Chau District, Kaohsiung, Taiwan .

出版信息

Med Eng Phys. 2016 Nov;38(11):1314-1321. doi: 10.1016/j.medengphy.2016.08.009. Epub 2016 Sep 16.

Abstract

This study concerns the effects of different drilling parameters of pilot drills and twist drills on the temperature rise of alveolar bones during dental implant procedures. The drilling parameters studied here include the feed rate and rotation speed of the drill. The bone temperature distribution was analyzed through experiments and numerical simulations of the drilling process. In this study, a three dimensional (3D) elasto-plastic dynamic finite element model (DFEM) was proposed to investigate the effects of drilling parameters on the bone temperature rise. In addition, the FE model is validated with drilling experiments on artificial human bones and porcine alveolar bones. The results indicate that 3D DFEM can effectively simulate the bone temperature rise during the drilling process. During the drilling process with pilot drills or twist drills, the maximum bone temperature occurred in the region of the cancellous bones close to the cortical bones. The feed rate was one of the important factors affecting the time when the maximum bone temperature occurred. Our results also demonstrate that the elevation of bone temperature was reduced as the feed rate increased and the drill speed decreased, which also effectively reduced the risk region of osteonecrosis. These findings can serve as a reference for dentists in choosing drilling parameters for dental implant surgeries.

摘要

本研究关注导向钻和麻花钻的不同钻孔参数对牙种植手术过程中牙槽骨温度升高的影响。这里研究的钻孔参数包括钻头的进给速度和转速。通过对钻孔过程的实验和数值模拟分析了骨温度分布。在本研究中,提出了一个三维(3D)弹塑性动态有限元模型(DFEM)来研究钻孔参数对骨温度升高的影响。此外,该有限元模型通过在人造人骨和猪牙槽骨上的钻孔实验进行了验证。结果表明,3D DFEM能够有效地模拟钻孔过程中的骨温度升高。在用导向钻或麻花钻钻孔的过程中,最高骨温度出现在靠近皮质骨的松质骨区域。进给速度是影响最高骨温度出现时间的重要因素之一。我们的结果还表明,随着进给速度增加和钻头转速降低,骨温度升高幅度减小,这也有效地降低了骨坏死的风险区域。这些发现可为牙医在选择牙种植手术的钻孔参数时提供参考。

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