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Highly Nonlinear Solitary Waves for the Assessment of Dental Implant Mobility

机译:高度非线性的孤立波用于评估种植牙的活动性

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摘要

In this paper we present a noninvasive technique based on the propagation of highly nonlinear solitary waves (HNSWs) to monitor the stability of dental implants. HNSWs are nondispersive mechanical waves that can form and travel in highly nonlinear systems, such as one-dimensional chains of spherical particles. The technique is based on the hypothesis that the mobility of a dental implant affects certain characteristics of the HNSWs reflected at the interface between a crystal-based transducer and the implant. To validate the research hypothesis we performed two experiments: first we observed the hydration of commercial plaster to simulate at large the osseointegration process that occurs in the oral connective tissue once a dental-endosteal threaded implant is surgically inserted; then, we monitored the decalcification of treated bovine bones immersed in an acid bath to simulate the inverse of the osseointegration process. In both series, we found a good correlation between certain characteristics of the HNSWs and the stiffness of the material under testing.
机译:在本文中,我们提出了一种基于高度非线性孤立波(HNSW)传播的无创技术,以监测牙科植入物的稳定性。 HNSW是非分散的机械波,可以在高度非线性的系统中形成并传播,例如球形颗粒的一维链。该技术基于以下假说:牙科植入物的迁移性会影响在基于晶体的换能器与植入物之间的界面处反射的HNSW的某些特性。为了验证该研究假说,我们进行了两个实验:首先,我们观察到了商业石膏的水化过程,以模拟在外科手术中插入了牙骨膜内螺纹植入物后在口腔结缔组织中发生的骨整合过程。然后,我们监测了浸泡在酸浴中的经过处理的牛骨的脱钙情况,以模拟骨整合过程的逆过程。在这两个系列中,我们发现HNSW的某些特性与被测材料的刚度之间具有良好的相关性。

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