首页> 外文期刊>Revista Brasileira de Ortopedia >BIOMECHANICAL ACCESS METHOD FOR ANALYZING ISOMETRICITY IN RECONSTRUCTING THE MEDIAL PATELLOFEMORAL LIGAMENT
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BIOMECHANICAL ACCESS METHOD FOR ANALYZING ISOMETRICITY IN RECONSTRUCTING THE MEDIAL PATELLOFEMORAL LIGAMENT

机译:重建PAT骨韧带内侧的等距分析的生物力学方法

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ABSTRACT Objective: To present a biomechanical device for evaluating medial patellofemoral ligament (MPFL) reconstruction and its isometricity. Methods: An accessible biomechanical method that allowed application of physiological and non-physiological forces to the knee using a mechanical arm and application of weights and counterweights was developed, so as to enable many different evaluations and have a very accurate measurement system for distances between different structures, for analysis on experiments. This article describes the assembly of this system, and suggests some practical applications. Six cadaver knees were studied. The knees were prepared in a testing machine developed at the Biomechanics Laboratory of IOT–HCFMUSP, which allowed dynamic evaluation of patellar behavior, with quantification of patellar lateralization between 0° and 120°. The differences between the distances found with and without load applied to the patella were grouped according to the graft fixation angle (0°, 30°, 60° or 90°) and knee position (intact, damaged or reconstructed). Results: There was a tendency for smaller lateral displacement to occur at fixation angles greater than 30 degrees of flexion, especially between the angles of 45° and 60° degrees of flexion, after the reconstruction. For the other angles, there was no statistical significance. Conclusion: The method developed is a useful tool for studies on the patellofemoral joint and the MPFL, and has a very accurate measurement system for distances between different structures. It can be used in institutions with fewer resources available.
机译:摘要目的:提出一种用于评估media股内侧韧带(MPFL)重建及其等距性的生物力学装置。方法:开发了一种可访问的生物力学方法,该方法允许使用机械臂向膝盖施加生理力和非生理力,并施加砝码和对重,从而可以进行许多不同的评估,并具有非常精确的测量不同部位之间距离的系统结构,用于实验分析。本文介绍了此系统的组装,并提出了一些实际应用。研究了六个尸体膝盖。膝关节是在IOT–HCFMUSP生物力学实验室开发的测试机上准备的,该机可以动态评估pa骨行为,并在0°至120°之间量化pa骨的侧倾度。根据the骨固定角度(0°,30°,60°或90°)和膝盖位置(完整,受损或重建)对group骨施加和不施加负荷的距离之间的差异进行分组。结果:重建后,在大于30度屈曲度的固定角处,尤其是在45°至60°屈曲角之间,会出现较小的横向位移。对于其他角度,没有统计学意义。结论:所开发的方法是研究studies股关节和MPFL的有用工具,并且对于不同结构之间的距离具有非常精确的测量系统。可用在资源较少的机构中。

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