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Properties and Function of the Medial Patellofemoral Ligament: A Systematic Review

机译:内侧Patelloforal韧带的性质和功能:系统评价

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Background: As the main passive structure preventing patellar lateral subluxation, accurate knowledge of the anatomy, material properties, and functional behavior of the medial patellofemoral ligament (MPFL) is critical for improving its reconstruction. Purpose: To provide a state-of-the-art understanding of the properties and function of the MPFL by undertaking a systematic review and statistical analysis of the literature. Study Design: Systematic review. Methods: On June 26, 2018, data for this systematic review were obtained by searching PubMed and Scopus. Articles containing numerical information regarding the anatomy, mechanical properties, and/or functional behavior of the MPFL that met the inclusion criteria were reviewed, recorded, and statistically evaluated. Results: A total of 55 articles met the inclusion criteria for this review. The MPFL presented as a fanlike structure spanning from the medial femoral epicondyle to the medial border of the patella. The reported data indicated ultimate failure loads from 72 N to 208 N, ultimate failure elongation from 8.4 mm to 26 mm, and stiffness values from 8.0 N/mm to 42.5 N/mm. In both cadaveric and in vivo studies, the average elongation pattern demonstrated close to isometric behavior of the ligament in the first 50° to 60° of knee flexion, followed by progressive shortening into deep flexion. Kinematic data suggested clear lateralization of the patella in the MPFL-deficient knee during early knee flexion under simulated muscle forces. Conclusion: A lack of knowledge regarding the morphology and attachment sites of the MPFL remains. The reported mechanical properties also lack consistency, thus requiring further investigations. However, the results regarding patellar tracking confirm that the lack of an MPFL leads to lateralization of the patella, followed by delayed engagement of the trochlear groove, plausibly leading to an increased risk of patellar dislocations. The observed isometric behavior up to 60° of knee flexion plausibly suggests that reconstruction of the ligament can occur at flexion angles below 60°, including the 30° and 60° range as recommended in previous studies.
机译:背景:作为预防髌骨横向子宫的主要被动结构,准确了解内侧髌骨韧带(MPFL)的解剖学,材料性质和功能性行为对于改善其重建至关重要。目的:通过对文献进行系统审查和统计分析,提供最先进的MPFL的性质和功能。研究设计:系统评价。方法:2018年6月26日,通过搜索PubMed和Scopus获得了该系统审查的数据。综述,记录,记录和统计评估,含有关于符合纳入标准的MPFL的解剖学,机械性能和/或功能行为的数值信息的制品。结果:共有55篇文章符合本综述的纳入标准。 MPFL作为跨越中介股骨髁上到髌骨的内侧边界的扇形扇状结构。报告的数据指示从72 n到208 n,最终故障伸长的最终失效,从8.4 mm到26 mm,8.0 n / mm至42.5 n / mm的刚度值。在尸体和体内研究中,平均伸长率图案在前50°至60°的膝关型中的韧带中的等距行为接近,然后进入深屈曲。在模拟肌肉力下的早期膝关节期间,运动数据建议在MPFL缺陷膝关节中清除髌骨的横向化。结论:缺乏关于MPFL的形态和附着位点的知识。报告的机械性能也缺乏一致性,因此需要进一步调查。然而,关于髌骨跟踪的结果证实,缺乏MPFL导致髌骨的横向化,然后延迟穿越Trochlear槽的接合,可编程导致髌骨位错的风险增加。观察到的等距行为可占膝关节屈曲的60°,可编程表明,韧带的重建可以在低于60°的屈曲角度下发生,包括在先前研究中推荐的30°和60°。

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