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采用不对称螺旋后凸轮设计的后稳定型全膝关节置换术的术中运动学分析

Intraoperative kinematic analysis of posterior stabilized total knee arthroplasty with asymmetric helical post-cam design.

作者信息

Morooka Takatoshi, Okuno Makiko, Seino Daisuke, Iseki Takuya, Fukunishi Shigeo, Kobashi Syoji, Yoshiya Shinichi

机构信息

Department of Orthopaedic Surgery, Hyogo College of Medicine, 1-1 Mukogawa-cho, Nishinomiya City, Hyogo, 663-8501, Japan.

Graduate School of Engineering, University of Hyogo, 2167 Syosya, Himeji, Hyogo, 671-2280, Japan.

出版信息

Eur J Orthop Surg Traumatol. 2019 Apr;29(3):675-681. doi: 10.1007/s00590-018-2318-4. Epub 2018 Oct 22.

Abstract

PURPOSE

To investigate intraoperative kinematics during passive flexion using a surgical navigation system for knees undergoing posterior stabilized (PS) total knee arthroplasty (TKA) with an asymmetric helical post-cam design using navigation system.

METHODS

In total, 45 knees with both pre- and postoperative kinematic data available were included in the study. Intraoperative kinematic measurements were performed during the course of surgery using the software incorporated in the navigation system. Measurements were performed at the following two time points: (1) before TKA procedure and (2) after TKA implantation. Among the kinematic parameters studied, anterior/posterior translation and axial rotation during flexion were subjected to the analysis.

RESULTS

Before surgery, physiologic anterior/posterior translational pattern of the tibia during flexion (rollback of the femur) was found in only 15.6% of the knees. After TKA implantation, postoperative kinematic measurement showed no significant change in the tibial translational during knee flexion. Similarly, with regard to rotation, non-physiologic external tibial rotation in early flexion was observed in the majority of the knees before surgery, and this abnormal kinematic pattern remained after the TKA procedure.

CONCLUSIONS

The intraoperative three-dimensional motion analysis using a navigation system showed that the physiologic kinematic pattern (anterior translation and internal rotation of the tibia during flexion) of the knee was distorted in osteoarthritic knees undergoing TKA. The abnormal kinematic pattern before surgery was not fully corrected even after implantation of the PS TKA designed to induce natural knee motion; however, no clear relationship between the intraoperative kinematic pattern and knee flexion angle at one year was demonstrated, and the effect of knee kinematics on postoperative knee function and patient's satisfaction is still unclear.

摘要

目的

使用手术导航系统研究采用不对称螺旋后凸轮设计的后稳定型(PS)全膝关节置换术(TKA)患者在被动屈膝过程中的术中运动学情况。

方法

本研究共纳入45例术前和术后均有运动学数据的膝关节。术中使用导航系统内置软件进行运动学测量。在以下两个时间点进行测量:(1)TKA手术前;(2)TKA植入后。在所研究的运动学参数中,对屈膝过程中的前后平移和轴向旋转进行分析。

结果

手术前,仅15.6%的膝关节在屈膝时胫骨呈现生理性前后平移模式(股骨后滚)。TKA植入后,术后运动学测量显示屈膝时胫骨平移无显著变化。同样,在旋转方面,术前大多数膝关节在屈膝早期出现非生理性胫骨外旋,TKA手术后这种异常运动学模式仍然存在。

结论

使用导航系统进行的术中三维运动分析表明,接受TKA的骨关节炎膝关节的生理性运动学模式(屈膝时胫骨向前平移和内旋)发生了扭曲。即使植入旨在诱导自然膝关节运动的PS TKA后,术前的异常运动学模式也未得到完全纠正;然而,未证明术中运动学模式与一年时膝关节屈曲角度之间存在明确关系,膝关节运动学对术后膝关节功能和患者满意度的影响仍不清楚。

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