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机器人全膝关节置换术中通过组件定位实现的屈伸间隙平衡及其与传统解剖旋转标志的关系。

Flexion Space Balancing Through Component Positioning and Its Relationship to Traditional Anatomic Rotational Landmarks in Robotic Total Knee Arthroplasty.

机构信息

Department of Orthopedics, University at Buffalo, Buffalo, New York.

出版信息

J Arthroplasty. 2020 Jun;35(6):1569-1575. doi: 10.1016/j.arth.2020.01.051. Epub 2020 Jan 24.

Abstract

BACKGROUND

The use of the femoral component position to balance the flexion space and its relationship to the transepicondylar axis (TEA) and posterior condylar angle (PCA) has not been thoroughly evaluated.

METHODS

A total of 233 patients undergoing robotic arm-assisted total knee arthroplasty were evaluated. Native TEA and PCA were established on preoperative computed tomography scans. Femoral component rotation was set in the axial plane to match the native trochlea and native medial femoral condyle to set the flexion gap. Knee flexion space gaps and component position were recorded. The relationship of the femoral component to the native TEA, PCA, and preoperative radiographic landmarks was evaluated.

RESULTS

The intraoperative measured medial flexion space gap did not significantly correlate with the relationship of the femoral component to the PCA or TEA in varus or valgus knees. In varus knees, the preoperative mechanical axis alignment had a positive relationship to femoral component position when compared to the PCA (P = .04) and TEA (P = .002). In valgus knees, there was a positive correlation between the preoperative lateral distal femoral angle and component position when compared to the PCA (P = .04) only.

CONCLUSION

Intraoperative measured flexion space balance through femoral component positioning did not correlate with its relationship to the native TEA or PCA. In varus knees, the preoperative mechanical axis alignment correlated with an increase in femoral component external rotation to the TEA and PCA. In valgus knees, the severity of preoperative lateral distal femoral angle correlated with the rotational relationship of the femoral component to the PCA only.

摘要

背景

利用股骨组件位置来平衡屈曲间隙,并将其与髁间轴(TEA)和后髁角(PCA)进行关联,这一方法尚未得到彻底评估。

方法

共评估了 233 例行机器人辅助全膝关节置换术的患者。在术前 CT 扫描上建立了原始 TEA 和 PCA。股骨组件旋转设定在矢状面以匹配原始滑车和原始内侧股骨髁,从而设定屈曲间隙。记录膝关节屈曲间隙和组件位置。评估股骨组件与原始 TEA、PCA 和术前影像学标志之间的关系。

结果

在内外翻膝关节中,术中测量的内侧屈曲间隙与股骨组件与 PCA 或 TEA 的关系均无显著相关性。在外翻膝关节中,与 PCA(P=.04)和 TEA(P=.002)相比,术前机械轴对线与股骨组件位置呈正相关。在内翻膝关节中,与 PCA 相比,术前外侧远端股骨角与组件位置呈正相关(P=.04)。

结论

通过股骨组件定位测量的术中屈曲间隙平衡与股骨组件与原始 TEA 或 PCA 的关系不相关。在内翻膝关节中,术前机械轴对线与股骨组件向 TEA 和 PCA 的外旋增加相关。在外翻膝关节中,仅与 PCA 相比,术前外侧远端股骨角的严重程度与股骨组件的旋转关系相关。

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