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Embedded piezoelectrics for sensing and energy harvesting in total knee replacement units

机译:嵌入式压电元件,用于总膝关节置换单元中的传感和能量收集

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The knee replacement is the second most common orthopedic surgical intervention in the United States, but currently only 1 in 5 knee replacement patients are satisfied with their level of pain reduction one year after surgery. It is imperative to make the process of knee replacement surgery more objective by developing a data driven approach to ligamentous balance, which increases implant life. In this work, piezoelectric materials are considered for both sensing and energy harvesting applications in total knee replacement implants. This work aims to embed piezoelectric material in the polyethylene bearing of a knee replacement unit to act as self-powered sensors that will aid in the alignment and balance of the knee replacement by providing intraoperative feedback to the surgeon. Postoperatively, the piezoelectric sensors can monitor the structural health of the implant in order to perceive potential problems before they become bothersome to the patient. Specifically, this work will present on the use of finite element modeling coupled with uniaxial compression testing to prove that piezoelectric stacks can be utilized to harvest sufficient energy to power sensors needed for this application.
机译:膝关节置换术是美国第二大最常见的骨科手术干预措施,但是目前,只有五分之一的膝关节置换术患者对术后一年的疼痛减轻水平感到满意。必须开发一种数据驱动的韧带平衡方法来延长膝关节置换手术的过程,从而延长植入物的使用寿命,从而使膝关节置换手术的过程更加客观。在这项工作中,考虑将压电材料用于全膝关节置换植入物的传感和能量收集应用中。这项工作旨在将压电材料嵌入膝关节置换单元的聚乙烯轴承中,以充当自供电传感器,通过向术者提供术中反馈来帮助膝关节置换的对准和平衡。术后,压电传感器可以监控植入物的结构健康状况,以便在潜在问题困扰患者之前就可以感知到。具体来说,这项工作将在有限元建模与单轴压缩测试相结合的基础上进行,以证明压电叠层可以用来收集足够的能量来为该应用所需的传感器供电。

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