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距下关节运动学如何影响前交叉韧带损伤后足球运动员的膝关节松弛度?

How Subtalar Kinematics Affects Knee Laxity in Soccer Players After Anterior Cruciate Ligament Injury?

作者信息

Kakavas Georgios, Malliaropoulos Nikolaos G, Forelli Florian, Mazeas Jean, Skarpas George, Maffuli Nicola

机构信息

Sports Science and Physical Education, University of Thessaly, Trikala, GRC.

Sport Medicine, Fysiotek Spine and Sport, Athens, GRC.

出版信息

Cureus. 2023 Oct 28;15(10):e47850. doi: 10.7759/cureus.47850. eCollection 2023 Oct.

Abstract

Purpose The goal of the current study was to ascertain whether there is an association between foot pronation and anterior cruciate ligament (ACL) injury in a group of elite professional soccer players. Methods Two groups of soccer players were studied, all of whom played in the Greek Super League. The ACL group included players who had suffered an ACL injury in the last 2 years. The non-ACL group was composed of players who had never suffered an ACL injury. We used a 3D baropodometric laser scanner to measure pronation or overpronation (navicular drop phenomenon) of the subtalar joint and how this affects the subtalar joint while standing. We assessed ACL laxity using the Genourob Rotab. Results ACL-injured patients, regardless of the mechanism of injury, exhibited greater navicular drop values than a randomly selected group of subjects with no history of ACL injury. Conclusion Greater knee joint laxity and subtalar pronation may be associated with an increased risk of ACL injury. Pronation of the foot appears to be a risk factor for ACL injury. These findings should be integrated into future studies to better define how neuromuscular control related to lower extremity biomechanics is associated with ACL injury.

摘要

目的 本研究的目的是确定在一组精英职业足球运动员中,足内旋与前交叉韧带(ACL)损伤之间是否存在关联。方法 对两组足球运动员进行了研究,他们均参加希腊超级联赛。ACL组包括在过去2年中遭受过ACL损伤的球员。非ACL组由从未遭受过ACL损伤的球员组成。我们使用3D气压式激光扫描仪测量距下关节的内旋或过度内旋(舟骨下降现象)以及站立时这对距下关节的影响。我们使用Genourob Rotab评估ACL松弛度。结果 无论损伤机制如何,ACL损伤患者的舟骨下降值均高于随机选择的无ACL损伤史的受试者组。结论 膝关节松弛度增加和距下关节内旋可能与ACL损伤风险增加有关。足部内旋似乎是ACL损伤的一个危险因素。这些发现应纳入未来的研究中,以更好地确定与下肢生物力学相关的神经肌肉控制如何与ACL损伤相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd55/10679957/ec59e70a7db3/cureus-0015-00000047850-i01.jpg

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