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A Quantitative Approach for the Bone-implant Osseointegration Assessment Based on Ultrasonic Elastic Guided Waves

机译:基于超声弹性导波的骨-植入物骨整合评估的定量方法

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摘要

Quantitative and reliable monitoring of osseointegration will help further evaluate the integrity of the orthopaedic construct to promote novel prosthesis design and allow early mobilisation. Quantitative assessment of the degree or the lack of osseointegration is important for the clinical management with the introduction of prosthetic implants to amputees. Acousto-ultrasonic wave propagation has been used in structural health monitoring as well as human health monitoring but so far has not extended to osseointegrated implants or prostheses. This paper presents an ultrasonic guided wave approach to assess the osseointegration of a novel implant. This study explores the potential of integrating structural health monitoring concepts into a new osseointegrated implant. The aim is to demonstrate the extension of acousto-ultrasonic techniques, which have been widely reported for the structural health monitoring of engineering structures, to assess the state of osseointegration of a bone and implant. To illustrate this potential, this paper will report on the experimental findings which investigated the unification of an aluminium implant and bone-like geometry surrogate. The core of the test specimen is filled with silicone and wrapped with plasticine to simulate the highly damped cancellous bone and soft tissue, respectively. To simulate the osseointegration process, a 2-h adhesive epoxy is used to bond the surrogate implant and a bone-like structure. A series of piezoelectric elements are bonded onto the surrogate implant to serve as actuators and sensors. The actuating piezoelectric element on an extramedullary strut is excited with a 1 MHz pulse signal. The reception of the ultrasonic wave by the sensing elements located on the adjacent and furthest struts is used to assess the integration of this implant to the parent bone structure. The study shows an Osseointegration Index can be formulated by using engineering and acousto-ultrasonic methods to measure the unification of a bone and implant. This also highlights a potential quantitative evaluation technique regardless of bone-implant geometry and soft tissue damping.
机译:骨整合的定量和可靠监测将有助于进一步评估整形外科构造的完整性,以促进新型假体设计并允许早期动员。通过将假体植入截肢者中,对骨融合程度或骨整合不足的程度进行定量评估对于临床管理很重要。超声-超声波传播已用于结构健康监测以及人体健康监测,但到目前为止还没有扩展到骨整合植入物或假体。本文提出了一种超声导波方法,以评估新型植入物的骨整合。这项研究探索了将结构健康监测概念整合到新的骨整合植入物中的潜力。目的是证明声-超声技术的扩展,该技术已被广泛报道用于工程结构的结构健康监测,以评估骨骼和植入物的骨整合状态。为了说明这种潜力,本文将报告实验结果,这些结果调查了铝植入物和骨样几何形状替代物的统一性。试样的芯部填充有硅酮并包裹有橡皮泥,分别模拟了高阻尼松质骨和软组织。为了模拟骨整合过程,使用2小时粘合环氧树脂将替代植入物与骨样结构粘合在一起。一系列压电元件被粘合到替代植入物上,以用作致动器和传感器。髓外支柱上的致动压电元件被一个1 MHz的脉冲信号激励。位于相邻和最远的支柱上的传感元件对超声波的接收被用于评估该植入物与父骨结构的整合。研究表明,可以使用工程学和声波超声方法来测量骨与植入物的统一性,从而制定骨整合指数。这也突出了一种潜在的定量评估技术,而与骨植入物的几何形状和软组织的阻尼无关。

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