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模拟超声波在牙种植体-骨系统中的传播。

Modeling ultrasonic wave propagation in a dental implant - Bone system.

作者信息

Dorogoy A, Haïat G, Shemtov-Yona K, Rittel D

机构信息

Faculty of Mechanical Engineering, Technion, 32000, Haifa, Israel.

CNRS, Laboratoire Modélisation et Simulation Multi-échelle, UMR CNRS 8202, 94010, Créteil Cedex, France.

出版信息

J Mech Behav Biomed Mater. 2020 Mar;103:103547. doi: 10.1016/j.jmbbm.2019.103547. Epub 2019 Nov 20.

Abstract

The evolution of the bone-implant interface reflects the implant osseointegration and bond strength, thereby determining the overall implant stability in the jawbone. Quantitative ultrasound represents a promising alternative technique to characterize the interfacial integrity, precisely due to the fact that those waves propagate essentially along the bone-implant interface, and are therefore influenced by its state. This study reports a numerical investigation of ultrasonic wave propagation for a commercial implant-jawbone system in which the thickness and mechanical properties of the interfacial layer (corresponding to the interphase) are systematically varied through the application of a rule of mixtures, in order to mimic the evolution from a dominantly soft tissue - like medium up to a fully healed bone. A simple figure of merit is devised in terms of an RMS-like (root mean square) factor based on the implant displacements, that evolves continuously and significantly with the bone "healing" process, thereby providing unequivocal information on the nature of the investigated bone-implant interface. The results show that the wave propagation pattern is primarily dictated by the impedance mismatch rather than by the interface thickness. This study validates the concept of quantitative ultrasonic testing as a sensitive alternative to the widespread resonant frequency analysis, thereby opening the way for future sensitivity analyses that will address more refined bone-implant interface pathologies such as those observed in the clinical realm.

摘要

骨-种植体界面的演变反映了种植体的骨整合和结合强度,从而决定了种植体在颌骨中的整体稳定性。定量超声是一种很有前景的表征界面完整性的替代技术,这正是因为这些波基本上沿着骨-种植体界面传播,因此会受到其状态的影响。本研究报告了对一种商用种植体-颌骨系统中超声波传播的数值研究,其中通过应用混合法则系统地改变界面层(对应于中间相)的厚度和力学性能,以模拟从主要为软组织样介质到完全愈合骨的演变。根据基于种植体位移的类似均方根(RMS)因子设计了一个简单的品质因数,该因数随着骨“愈合”过程持续且显著地变化,从而提供了关于所研究的骨-种植体界面性质的确切信息。结果表明,波的传播模式主要由阻抗失配而非界面厚度决定。本研究验证了定量超声检测作为广泛使用的共振频率分析的敏感替代方法的概念,从而为未来的敏感性分析开辟了道路,这些分析将针对更精细的骨-种植体界面病变,如在临床领域观察到的那些病变。

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