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Instrumented knee joint implants: innovations and promising concepts

机译:人工膝关节植入物:创新和有前途的概念

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摘要

This article focuses on in vivo implementations of instrumented knee implants and recent prototypes with highly innovative potential. An in-depth analysis of the evolution of these systems was conducted, including three architectures developed by two research teams for in vivo operation that were implanted in 13 patients. The specifications of their various subsystems: sensor/transducers, power management, communication and processing/control units are presented, and their features are compared. These systems were designed to measure biomechanical quantities to further assist in rehabilitation and physical therapy, to access proper implant placement and joint function and to help predicting aseptic loosening. Five prototype systems that aim to improve their operation, as well as include new abilities, are also featured. They include technology to assist proper ligament tensioning and ensure self-powering. One can conclude that the concept of instrumented active knee implant seems the most promising trend for improving the outcomes of knee replacements.
机译:本文重点介绍具有高度创新潜力的人工膝关节植入物和最新原型的体内实施。对这些系统的发展进行了深入的分析,包括由两个研究团队为体内手术开发的三种架构,这些架构植入了13位患者。介绍了它们各个子系统的规格:传感器/传感器,电源管理,通信和处理/控制单元,并比较了它们的功能。这些系统旨在测量生物力学量,以进一步协助康复和物理治疗,获得正确的植入物位置和关节功能以及帮助预测无菌性松动。还展示了五个旨在改善其操作性并包括新功能的原型系统。它们包括有助于适当拉紧韧带并确保自供电的技术。可以得出结论,使用主动式膝关节植入物的概念似乎是改善膝关节置换效果的最有希望的趋势。

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