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Real time monitoring of progressive damage during loading of a simplified total hip stem construct using embedded acoustic emission sensors.

机译:使用嵌入式声发射传感器实时监测简化的整个髋关节干结构加载过程中的进行性损伤。

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摘要

Acoustic emission (AE) is a non-destructive technique that is capable of passively monitoring failure of a construct with excellent temporal resolution. Previous investigations using AE to monitor the integrity of a total hip replacement (THR) have used surface mounted sensors; however, the AE signal attenuates as it travels through materials and across interfaces. This study proposes that directly embedded sensors within the femoral stem of the implant will reduce signal attenuation effects and eliminate potential complications and variability associated with fixing the sensor to the sample. Data was collected during in vitro testing of implanted constructs, and information from both embedded and externally mounted AE sensors was compared and corroborated by micro-Computed Tomography (micro-CT) images taken before and after testing. The results of this study indicate that the embedded sensors gave a closer corroboration to observed damage using micro-CT and were less affected by unwanted noise sources. This has significant implications for the use of AE in assessing the state of THR constructs in vitro and it is hypothesised that directly embedded AE sensors may provide the first steps towards an in vivo, cost effective, user friendly, non-destructive system capable of continuously monitoring the condition of the implanted construct.
机译:声发射(AE)是一种非破坏性技术,能够以出色的时间分辨率被动监视构造的故障。先前使用AE监测全髋关节置换术(THR)完整性的研究已经使用了表面安装的传感器。但是,AE信号在穿过材料和穿过界面时会衰减。这项研究提出,直接植入植入物股骨柄内的传感器将减少信号衰减效应,并消除与将传感器固定到样品相关的潜在并发症和可变性。在植入物的体外测试过程中收集了数据,并比较了嵌入式和外部安装的AE传感器的信息,并通过测试前后的微计算机断层扫描(micro-CT)图像进行了证实。这项研究的结果表明,嵌入式传感器可以更精确地证实使用微型CT观察到的损坏,并且受有害噪声源的影响较小。这对于在体外评估THR构建体状态中使用AE具有重要意义,并且假设直接嵌入的AE传感器可能为迈向能够连续,具有成本效益,用户友好,无损的体内系统的第一步监测植入结构的状况。

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