首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Anatomy-mimetic design preserves natural kinematics of knee joint in patient-specific mobile-bearing unicompartmental knee arthroplasty
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Anatomy-mimetic design preserves natural kinematics of knee joint in patient-specific mobile-bearing unicompartmental knee arthroplasty

机译:解剖模拟设计在特定于患者的移动式膝盖关节置换术中保留膝关节的天然运动学

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Purpose This study aims to evaluate whether different tibial-femoral conformities for patient-specific mobile-bearing unicompartmental knee arthroplasties (UKAs) preserve natural knee kinematics, using computational simulations. Methods Different designs for patient-specific mobile-bearing UKAs were evaluated using finite element analysis. Three designs for the identical femoral component were considered: flat (non-conforming design), anatomy-mimetic, and conforming for the tibial insert. Results The conforming design for the patient-specific mobile-bearing UKAs exhibited a 1.2 mm and 0.7 degrees decrease in the translation and rotation, respectively, in the swing phase compared with those of the natural knee. In addition, the femoral rollback and internal rotation were 2.6 mm and 1.2 degrees lower, respectively, than those of the natural knee, for the conforming design under the deep-knee-bend condition. The flat design for the patient-specific mobile-bearing UKAs exhibited a 2.2 mm and 1.4 degrees increase in the femoral rollback and rotation compared with the natural knee under the deep-knee-bend condition. The anatomy-mimetic patient-specific mobile-bearing UKAs best preserved the natural knee kinematics under the gait and deep-knee-bend loading conditions. Conclusions The kinematics of the loading conditions in patient-specific mobile-bearing UKAs was determined to closely resemble those of a native knee. In additional, by replacing the anatomy-mimetic design with a mobile-bearing, natural knee kinematics during gait and deep-knee-bend motions is preserved. These results confirm the importance of tibiofemoral conformity in preserving native knee kinematics in patient-specific mobile-bearing UKA.
机译:目的,本研究旨在使用计算模拟评估患者特异性移动式单膝膝关节节型膝关节育术(UKAS)的不同胫骨股骨符合性。方法使用有限元分析评估患者特定于患者特异性移动核心的不同设计。考虑了相同股骨部件的三种设计:平面(非符合设计),解剖模拟物和曲线插入物。结果与天然膝关节相比,患者特异性移动轴承UKAS的符合设计分别在转换和旋转中呈现1.2毫米和0.7度。此外,股骨回滚和内部旋转分别比天然膝关节的膝关节膝关节分别为2.6毫米,1.2度,为锥形弯曲条件下的符合设计。与深膝关节弯曲条件下的天然膝关节相比,患者特定于患者特定移动轴承UKAS的平面设计表现出2.2毫米和1.4度的股骨回滚和旋转。解剖学模仿患者特定的移动式UKAS在步态和深膝弯曲的装载条件下,最能保存天然膝关节运动学。结论确定了患者特定移动核心核心核心的负载条件的运动学与天然膝盖相似。另外,通过更换具有移动轴承的解剖模拟设计,在步态和深膝弯曲运动期间的天然膝关节运动学得到保存。这些结果证实了Tibioforal符合性在维护患者特定的移动式USA中的天然膝关节运动中的重要性。

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