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Self-powered instrumented knee implant for early detection of postoperative complications

机译:自供电式膝关节植入物可早期发现术后并发症

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In-vivo measurement of tibiofemoral forces transmitted through Total Knee Replacement (TKR) during normal walking allows the early detection of postoperative complications such as the tibiofemoral misalignment and soft-tissue imbalance. In addition, the in-vivo data can help to improve the design of TKR in order to reduce polyethylene wear and consequently to increase the lifespan of knee implant. A self-powered custom-designed tibial implant instrumented with four piezoceramics has been developed in order to detect the aforementioned complications by measuring the relative change in pressure center (COP) position for different levels of eccentric compressive loading. Moreover, the energy harvested by the piezoceramics can be used to power a transmission system located at the stem of knee implant to wirelessly transmit the in-vivo data outside the implant for further processing and display.
机译:正常步行过程中通过全膝关节置换(TKR)传输的胫股力量的体内测量可以早期发现术后并发症,如胫股错位和软组织失衡。另外,体内数据可以帮助改善TKR的设计,以减少聚乙烯的磨损,从而延长膝关节植入物的寿命。为了通过测量不同水平的偏心压缩载荷下压力中心(COP)位置的相对变化来检测上述并发症,已经开发了一种自供电定制设计的胫骨植入物,该植入物装有四个压电陶瓷。此外,压电陶瓷收集的能量可用于为位于膝关节植入物茎部的传输系统提供动力,以将体内数据无线传输到植入物外部,以进行进一步处理和显示。

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