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首页> 外文期刊>The Journal of arthroplasty >In vitro kinematic patterns are similar for a fixed platform and a mobile bearing prosthesis.
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In vitro kinematic patterns are similar for a fixed platform and a mobile bearing prosthesis.

机译:固定平台和活动轴承假体的体外运动学模式相似。

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摘要

In vitro dynamic simulation of knee flexion was performed to quantify knee kinematics for a mobile bearing prosthesis that allows the tibial insert to translate and rotate with respect to the baseplate. Six cadaver knees were tested in the intact state, after implanting a fixed platform prosthesis, and after implanting a mobile bearing prosthesis. The mobile bearing prosthesis significantly increased the tibial internal rotation and medial shift compared with the intact knee, near 90 degrees of flexion. Both prostheses increased the patellar medial shift near 90 degrees of flexion. The patellar flexion was significantly larger for the mobile bearing prosthesis than for the fixed platform prosthesis for most of flexion. Motion of the insert with respect to the baseplate may have contributed to the variations in tibiofemoral kinematics, whereas tibiofemoral kinematic changes influenced the patellofemoral kinematics. Although the kinematics were similar for the 2 types of prosthesis, the possibility of complications related to increased patellar flexion and backside wear of the tibial insert should be considered.
机译:进行了膝关节屈曲的体外动态模拟,以量化可移动胫骨假体的膝关节运动学,该假体允许胫骨插入物相对于底板平移和旋转。在植入固定平台假体和植入活动轴承假体后,以完整状态测试了六个尸体膝盖。与完整的膝盖相比,可移动的支撑假体显着增加了胫骨内部旋转和内侧移位,接近90度屈曲。两种假体都使increased骨内侧移位接近90度屈曲度。对于大多数屈曲而言,活动轴承假体的pa骨屈曲比固定平台假体的larger屈大得多。刀片相对于底板的运动可能是造成胫股运动学变化的原因,而胫股运动学变化影响了of股运动学。尽管两种假体的运动学相似,但应考虑与increased骨弯曲增加和胫骨插入物的背面磨损有关的并发症的可能性。

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