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使用共振频率分析来识别下颌骨中植入的牙种植体稳定性的挑战。

Challenges of Using Resonance Frequency Analysis to Identify Stability of a Dental Implant Placed in the Mandible.

出版信息

Int J Oral Maxillofac Implants. 2021 Mar-Apr;36(2):e7-e21. doi: 10.11607/jomi.8579.

Abstract

PURPOSE

This numerical study examined the efficacy and challenges of using resonance frequency analysis to identify the stability of implants placed in mandibles. The study also examined the feasibility of using angular stiffness as an alternative index to quantify dental implant stability in mandibles.

MATERIALS AND METHODS

A finite element model consisting of a mandible, an implant, an abutment, and a bonding layer (between the implant and the mandible) was created in commercially available software ANSYS. The level of osseointegration was modeled by varying the stiffness of the bonding layer. Three sets of boundary conditions were imposed on the mandible: fixed, rotationally free, and rotationally restrained. Three implant locations were studied: central, premolar, and molar positions. An alternative abutment mimicking SmartPeg and eight different implant lengths were also included. A modal analysis and a static analysis were conducted to calculate resonance frequencies and angular stiffness, respectively.

RESULTS

Two types of vibration modes were found. One was jawbone modes, for which the mandible deformed significantly but not the bonding layer. Resonance frequencies of the jawbone modes were not sensitive to the level of osseointegration. The other was implant modes, for which the bonding layer deformed significantly but not the mandible. Among multiple implant modes obtained, only one was trackable as the level of osseointegration increased. The resonance frequency of the trackable implant mode was very sensitive to the implant location as well as boundary conditions, but not as much to the level of osseointegration. In contrast, angular stiffness was sensitive to the level of osseointegration but not as much to boundary conditions.

CONCLUSION

The efficacy of using resonance frequency analysis to quantify the stability of a dental implant is questionable. Its high sensitivity to implant locations and boundary conditions as well as its low sensitivity to the level of osseointegration cause huge uncertainties in correlating measured resonance frequencies to implant stability. Angular stiffness is a much more reliable indicator because of its high sensitivity to the level of osseointegration and low sensitivity to boundary conditions.

摘要

目的

本数值研究旨在探讨使用共振频率分析来确定下颌骨中植入物稳定性的效果和挑战。该研究还探讨了使用角刚度作为替代指标来量化下颌骨中牙种植体稳定性的可行性。

材料和方法

使用商业软件 ANSYS 创建了一个由下颌骨、植入物、基台和粘结层(植入物和下颌骨之间)组成的有限元模型。通过改变粘结层的刚度来模拟骨整合的水平。对下颌骨施加了三组边界条件:固定、自由旋转和旋转约束。研究了三种植入物位置:中央、前磨牙和磨牙位置。还包括了一个模拟 SmartPeg 的替代基台和八种不同的植入物长度。进行了模态分析和静态分析,分别计算共振频率和角刚度。

结果

发现了两种振动模式。一种是颌骨模式,下颌骨变形明显,但粘结层不变形。颌骨模式的共振频率对骨整合水平不敏感。另一种是植入物模式,粘结层变形明显,但下颌骨不变形。在获得的多个植入物模式中,只有一个随着骨整合水平的增加而变得可跟踪。可跟踪的植入物模式的共振频率对植入物位置以及边界条件非常敏感,但对骨整合水平的敏感性不如前两者。相比之下,角刚度对骨整合水平敏感,但对边界条件的敏感性不如前两者。

结论

使用共振频率分析来量化牙种植体稳定性的效果值得怀疑。其对植入物位置和边界条件的高度敏感性以及对骨整合水平的低敏感性导致在将测量的共振频率与种植体稳定性相关联时存在巨大的不确定性。角刚度是一个更可靠的指标,因为它对骨整合水平的高度敏感性和对边界条件的低敏感性。

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