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A Review on Biomechanics of Anterior Cruciate Ligament and Materials for Reconstruction

机译:前交叉韧带和重建材料的生物力学研究进展

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摘要

The anterior cruciate ligament is one of the six ligaments in the human knee joint that provides stability during articulations. It is relatively prone to acute and chronic injuries as compared to other ligaments. Repair and self-healing of an injured anterior cruciate ligament are time-consuming processes. For personnel resuming an active sports life, surgical repair or replacement is essential. Untreated anterior cruciate ligament tear results frequently in osteoarthritis. Therefore, understanding of the biomechanics of injury and properties of the native ligament is crucial. An abridged summary of the prominent literature with a focus on key topics on kinematics and kinetics of the knee joint and various loads acting on the anterior cruciate ligament as a function of flexion angle is presented here with an emphasis on the gaps. Briefly, we also review mechanical characterization composition and anatomy of the anterior cruciate ligament as well as graft materials used for replacement/reconstruction surgeries. The key conclusions of this review are as follows: (a) the highest shear forces on the anterior cruciate ligament occur during hyperextension/low flexion angles of the knee joint; (b) the characterization of the anterior cruciate ligament at variable strain rates is critical to model a viscoelastic behavior; however, studies on human anterior cruciate ligament on variable strain rates are yet to be reported; (c) a significant disparity on maximum stress/strain pattern of the anterior cruciate ligament was observed in the earlier works; (d) nearly all synthetic grafts have been recalled from the market; and (e) bridge-enhanced repair developed by Murray is a promising technique for anterior cruciate ligament reconstruction, currently in clinical trials. It is important to note that full extension of the knee is not feasible in the case of most animals and hence the loading pattern of human ACL is different from animal models. Many of the published reviews on the ACL focus largely on animal ACL than human ACL. Further, this review article summarizes the issues with autografts and synthetic grafts used so far. Autografts (patellar tendon and hamstring tendon) remains the gold standard as nearly all synthetic grafts introduced for clinical use have been withdrawn from the market. The mechanical strength during the ligamentization of autografts is also highlighted in this work.
机译:前十字韧带是人膝关节中的六个韧带之一,可在关节运动期间保持稳定。与其他韧带相比,它相对容易遭受急性和慢性伤害。受伤的前交叉韧带的修复和自我修复是耗时的过程。对于恢复积极的运动生活的人员,外科手术维修或更换是必不可少的。未经治疗的前交叉韧带撕裂经常导致骨关节炎。因此,了解损伤的生物力学和天然韧带的特性至关重要。这里提供了一些著名文献的摘要,重点是膝关节的运动学和动力学以及与屈曲角度有关的作用在前十字韧带上的各种负荷,重点是间隙。简而言之,我们还回顾了前交叉韧带的机械表征成分和解剖结构,以及用于置换/重建手术的移植材料。这篇综述的主要结论如下:(a)在前交叉韧带上最大的剪切力发生在膝关节过度伸展/低屈曲角度期间; (b)在可变应变率下表征前十字韧带对于模拟粘弹性行为至关重要;然而,关于人类前十字韧带应变率变化的研究尚未报道。 (c)在较早的研究中观察到前十字韧带的最大应力/应变模式存在明显差异; (d)几乎所有人造移植物都已从市场上召回; (e)Murray开发的桥增强修复技术是目前正在临床试验中的前交叉韧带重建的一种有前途的技术。重要的是要注意,在大多数动物的情况下,膝盖的完全伸展是不可行的,因此,人类ACL的负荷模式与动物模型不同。有关ACL的许多已发表评论都将重点放在动物ACL上,而不是人类ACL。此外,这篇综述文章总结了迄今为止使用的自体移植物和合成移植物的问题。自体移植物(pat肌腱和绳肌腱)仍然是金标准,因为几乎所有引入临床的人工合成移植物都已退出市场。这项工作也突出了自体移植韧带化过程中的机械强度。

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