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The Mark Coventry Award: Articular contact estimation in TKA using in vivo kinematics and finite element analysis.

机译:马克·考文垂奖:使用体内运动学和有限元分析的TKA关节接触估计。

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In vivo fluoroscopy is a well-known technique to analyze joint kinematics of the replaced knee. With this method, however, the contact areas between femoral and tibial components, fundamental for monitoring wear and validating design concepts, are hard to identify. We developed and tested a novel technique to assess condylar and post-cam contacts in TKA. The technique uses in vivo motion data of the replaced knee from standard fluoroscopy as input for finite element models of the prosthesis components. In these models, tibiofemoral contact patterns at the condyles and post-cam articulations were calculated during various activities. To test for feasibility, the technique was applied to a bicruciate posterior-stabilized prosthesis. Sensitivity of the finite element analysis, validation of the technique, and in vivo tests were performed. To test for potential in the clinical setting, five patients were preliminarily analyzed during chair rising-sitting, stair climbing, and step up-down. For each task and patient, the condylar contact points and contact line rotation were calculated. The results were repeatable and consistent with corresponding calculations from traditional fluoroscopic analysis. Specifically, natural knee kinematics, which shows rolling back and screw home, seemed replicated in all motor tasks. Post-cam contact was observed on both the anterior and posterior faces. Anterior contact is limited to flexion angle close to extension; posterior contact occurs in deeper flexion but is dependent on the motor task. The data suggest the proposed technique provides reliable information to analyze post-cam contacts.
机译:体内荧光检查法是一种众所周知的分析膝关节置换运动学的技术。然而,使用这种方法,很难识别股骨和胫骨组件之间的接触区域,这是监测磨损和验证设计概念的基础。我们开发并测试了一种新技术来评估TKA中的con突和摄像后接触。该技术将来自标准荧光检查的被替换膝盖的体内运动数据用作假体组件有限元模型的输入。在这些模型中,在各种活动中计算了con和胫后关节的胫股接触方式。为了测试可行性,将该技术应用于双十字形后稳定假体。进行了有限元分析的灵敏度,技术的验证以及体内测试。为了测试在临床环境中的潜力,在坐躺,爬楼梯和下楼梯的过程中初步分析了五名患者。对于每个任务和患者,计算the突接触点和接触线旋转。结果是可重复的,并且与传统的透视分析的相应计算结果一致。具体来说,自然的膝部运动学显示出后退和拧回原点,似乎在所有运动任务中都得到了复制。前后均观察到凸轮接触。前接触仅限于接近伸展的屈曲角度;后接触发生在较深的屈曲中,但取决于运动任务。数据表明,提出的技术提供了可靠的信息来分析摄像头后的接触。

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