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在当代植入物中,TKA 运动学如何随横断平面对线的变化而变化?

How does TKA kinematics vary with transverse plane alignment changes in a contemporary implant?

机构信息

Campbell Clinic Orthopaedics, University of Tennessee, 1458 West Poplar Avenue, Suite 100, Memphis, TN 38017, USA.

出版信息

Clin Orthop Relat Res. 2012 Jan;470(1):186-92. doi: 10.1007/s11999-011-2145-y.

Abstract

BACKGROUND

Assessment of patient function after TKA often focuses on implant alignment and daily activity capabilities, but the functional results and kinematics of the TKA are not easily predicted by some of these parameters during surgery.

QUESTIONS/PURPOSES: We asked whether differences in implant alignment in the transverse plane may affect fluorokinematics and be one of the many variables that help explain the discrepancies in fluorokinematic results.

METHODS

We utilized a computer model (LifeMOD™/KneeSIM; LifeModeler, Inc, San Clemente, CA, USA) to show variability in polyethylene contact patterns. We imported components of a cruciate-retaining TKA into the model and subjected the systems to a simulated lunge. We modeled five different combinations of implant positioning in the transverse plane of both the femoral and tibial components in internal or external rotation and compared the resulting changes in joint rotations and displacements of these five variations to those for published fluorokinematic observations using the same modeled lunge-type maneuver for five patients.

RESULTS

We observed variations in AP translation of the lateral and medial femoral condyles resembling several of those in the literature for individual patients with the same cruciate-retaining knee implant. The largest AP translational changes were seen with the tibia internally rotated 5°. Using the five different implant transverse plane alignment scenarios resulted in a coefficient of determination of 0.6 for the linear regression when compared to five subjects from a published fluorokinematic study.

CONCLUSIONS

Variations in implant positioning may be responsible for variations in fluorokinematics reported for individual subjects with the same implant design.

摘要

背景

TKA 后患者功能的评估通常集中在植入物的对线和日常活动能力上,但手术中这些参数并不能轻易预测 TKA 的功能结果和运动学。

问题/目的:我们想知道横断面上植入物对线的差异是否会影响荧光运动学,并成为帮助解释荧光运动学结果差异的众多变量之一。

方法

我们利用计算机模型(LifeMOD/KneeSIM;LifeModeler,Inc.,美国加利福尼亚州圣克莱门特)来展示聚乙烯接触模式的可变性。我们将一个保留交叉韧带的 TKA 组件导入模型,并对系统进行模拟跨步。我们对股骨和胫骨组件的横断面上的植入物定位进行了五种不同组合的建模,在内部或外部旋转,并将这五种变化引起的关节旋转和位移变化与相同模型化的跨步式运动对五个患者的发表的荧光运动学观察结果进行了比较。

结果

我们观察到外侧和内侧股骨髁的 AP 平移变化与文献中个别保留交叉韧带的膝关节植入物患者的变化相似。胫骨内旋 5°时,AP 平移变化最大。使用五种不同的植入物横向平面对准方案与从发表的荧光运动学研究中的五个受试者的线性回归相比,决定系数为 0.6。

结论

植入物位置的变化可能是导致同一植入物设计的个别患者报告的荧光运动学变化的原因。

相似文献

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Computer modeling to predict effects of implant malpositioning during TKA.
Orthopedics. 2010 Oct;33(10 Suppl):71-5. doi: 10.3928/01477447-20100510-57.

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