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A novel tool for objective assessment of femorotibial rotation: a cadaver study.

机译:一种客观评估股骨旋转的新颖工具:尸体研究。

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Traumatic rupture of the anterior cruciate ligament (ACL) of the knee is one of the most frequent orthopaedic sports' injuries. However, the best operative reconstruction technique is still the focus of current discussions among experts. While single-bundle reconstruction primarily addresses anterior-posterior instability, the anatomical double-bundle reconstruction aims to stabilise anterior-posterior as well as rotational instability. So far no definite evidence to favour the one or the other technique exists due to the lack of an objective method for quantifying rotational knee stability. In this context several authors have recently reported on devices for the analysis of femorotibial rotation. However, most of these tools are still in the developmental stage. Therefore, the aim of this study was (1) to develop a new instrument for assessing rotational knee stability independent from the surrounding soft tissue with an adequate method of analysis and (2) to establish the possible field of application of this device in a human cadaver study. The so-called torsiometer evaluated was designed to assess internal and external knee joint rotation objectively in different flexion angles. Measurements were performed implying internal and external rotation at 90 degrees , 30 degrees and 0 degrees knee flexion with and without intact ACL, respectively. Each measurement revealed valid and reproducible values. The restraint in ACL-absent knees was clearly lower and the course of rotation explicitly higher than in knee joints with intact ACL.
机译:膝关节前交叉韧带(ACL)的外伤性破裂是最常见的骨科运动受伤之一。但是,最佳的手术重建技术仍然是专家当前讨论的焦点。单束重建主要解决前后不稳定性,而解剖学上的双束重建旨在稳定前后不稳定性。到目前为止,由于缺乏量化旋转膝关节稳定性的客观方法,因此尚无确切证据支持一种或另一种技术。在这种情况下,最近有几位作者报道了用于股骨旋转分析的设备。但是,大多数这些工具仍处于开发阶段。因此,本研究的目的是(1)开发一种新的仪器,以一种足够的分析方法评估与周围软组织无关的旋转膝关节的稳定性,(2)建立该装置在人体中的可能应用领域。尸体研究。评估的所谓扭力计旨在客观地评估不同屈曲角度下膝关节内部和外部的旋转。进行测量意味着分别在有和没有完整ACL的情况下分别以90度,30度和0度屈膝进行内旋和外旋。每次测量均显示有效和可重复的值。与无完整ACL的膝关节相比,无ACL的膝盖的约束明显更低,旋转过程明显更高。

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