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双室和三室膝关节置换对膝关节运动学的影响。

Influence of bi- and tri-compartmental knee arthroplasty on the kinematics of the knee joint.

机构信息

Department of Orthopaedic Surgery, University Hospital Tübingen, Hoppe-Seyler-Str, 3, 72076 Tübingen, Germany.

出版信息

BMC Musculoskelet Disord. 2011 Jan 27;12:29. doi: 10.1186/1471-2474-12-29.

Abstract

BACKGROUND

The cruciate ligaments are important stabilizers of the knee joint and determine joint kinematics in the natural knee and after cruciate retaining arthroplasty.No in vitro data is available to biomechanically evaluate the ability of the anterior cruciate ligament (ACL) to maintain knee joint kinematics after bicruciate-retaining bi-compartmental knee arthroplasty (BKA).Therefore, the objective of the current study was to investigate the kinematics of the natural knee joint, before and after installing bicruciate-retaining BKA and posterior cruciate retaining total knee arthroplasty. Specifically, we incorporated a dynamic knee simulator to simulate weight-bearing flexions on cadaveric knee specimen before and after surgical manipulations.

METHODS

In this cadaveric study we investigated rotational and translational tibiofemoral kinematics during simulated weight-bearing flexions of the intact knee, after bi-compartmental knee arthroplasty (BKA+), after resecting the ACL in BKA (BKA-), and after posterior cruciate retaining total knee arthroplasty (TKA).

RESULTS

Rotation of BKA+ is closest to the intact knee joint, whereas TKA shows significant differences from 30 to 90 degree of flexion. Within the tested flexion range (15 to 90 degree of flexion), there was no significant difference in the anterior-posterior translation among intact, BKA+, and TKA knees. Resecting the ACL in BKA leads to a significant anterior tibial translation.

CONCLUSIONS

BKA with intact cruciate ligaments resembles rotation and translation of the natural knee during a simulated weight-bearing flexion. It is a suitable treatment option for medial and patellofemoral osteoarthritis with advantages in rotational characteristics compared to TKA.

摘要

背景

交叉韧带是膝关节的重要稳定结构,决定了自然膝关节和交叉韧带保留型膝关节置换术后的关节运动学。目前还没有体外数据可用于生物力学评估前交叉韧带(ACL)在双交叉韧带保留型双间室膝关节置换(BKA)后维持膝关节运动学的能力。因此,本研究的目的是研究自然膝关节在安装双交叉韧带保留型 BKA 和后交叉韧带保留型全膝关节置换前后的运动学。具体而言,我们使用动态膝关节模拟器模拟尸体膝关节标本在手术前后的负重屈曲运动。

方法

在这项尸体研究中,我们研究了完整膝关节、双间室膝关节置换(BKA+)后、BKA 中 ACL 切除(BKA-)后和后交叉韧带保留型全膝关节置换(TKA)后模拟负重屈曲时的胫股旋转和平移运动学。

结果

BKA+的旋转最接近完整膝关节,而 TKA 在 30 度到 90 度屈曲时与完整膝关节有显著差异。在测试的屈曲范围内(15 度到 90 度屈曲),完整、BKA+和 TKA 膝关节的前后平移没有显著差异。BKA 中 ACL 的切除会导致明显的胫骨前移位。

结论

保留交叉韧带的 BKA 在模拟负重屈曲时类似于自然膝关节的旋转和平移。对于内侧和髌股关节炎,它是一种合适的治疗选择,与 TKA 相比,它具有旋转特性方面的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8b9/3224381/ff10af107ca6/1471-2474-12-29-1.jpg

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