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Design and test of an autonomous sensor for force measurements in human knee implants

机译:用于人体膝关节植入物力测量的自主传感器的设计和测试

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摘要

In vivo monitoring of human knee implants after total arthroplasty increases information concerning articular motion and loading conditions. The autonomous sensor proposed carries out force measurements in a protected environment and wirelessly transmits data directly from the inside of the implant to an external readout unit. The autonomous sensor is fully contained in the polyethylene insert. Batteries are completely eliminated; the system gathers energy from an externally applied magnetic field using a miniature coil inside the implant. The data generated from this device will provide data for new designs, techniques and implementations. The forces transmitted across the knee joint during normal human activities such as walking, running or climbing can be directly measured. Furthermore, the device can be used to improve design, refine surgical instrumentation, guide post-operative physical therapy and detect human activities that can overload the implant.
机译:人工关节置换术后人膝植入物的体内监测可增加有关关节运动和负荷状况的信息。提出的自主传感器在受保护的环境中进行力测量,并将数据直接从植入物内部无线传输到外部读取单元。自主传感器完全包含在聚乙烯插件中。电池已完全淘汰;该系统使用植入物内部的微型线圈从外部施加的磁场中收集能量。从该设备生成的数据将为新的设计,技术和实现提供数据。可以直接测量在正常人类活动(例如步行,跑步或爬山)过程中跨膝关节传递的力。此外,该设备可用于改进设计,完善手术器械,指导术后物理治疗并检测可能使植入物超负荷的人类活动。

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