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蹬伸动力学揭示 ACL 重建后重返运动的运动员的任务独立性改变。

Push-Off Dynamics Reveal Task-Independent Alterations in Athletes Returning to Sport after ACL Reconstruction.

机构信息

Musculoskeletal Rehabilitation Research Group, Faculty of Kinesiology and Rehabilitation Sciences, KU Leuven, Leuven, BELGIUM.

出版信息

Med Sci Sports Exerc. 2022 Dec 1;54(12):2045-2053. doi: 10.1249/MSS.0000000000002994. Epub 2022 Jul 8.

Abstract

PURPOSE

Athletes with an anterior cruciate ligament (ACL) reconstruction (ACLR) show persisting biomechanical and neuromuscular landing alterations. So far, most research focused on the landing phase of dynamic tasks where most ACL injuries occur. This study will assess whether these landing alterations are also present in the propulsion phase, in an attempt to identify generalized movement alterations.

METHODS

Twenty-one athletes with ACLR (cleared by their surgeon and/or physiotherapist for return-to-sport) and twenty-one controls performed five single-leg hop tasks. Propulsion kinematics, kinetics, and muscle activations were compared between legs and between groups.

RESULTS

Increased hamstrings activation was found during propulsion when comparing the ACLR limb with both the uninjured limb and the controls. In addition, decreased internal knee extension moments were found in the ACLR limb compared with the uninjured limb.

CONCLUSIONS

Athletes with ACLR show task-independent alterations that unload the knee during the propulsion phase of single-leg hopping tasks. If longitudinal data deem these alterations to be maladaptive, more emphasis must be placed on their normalization during the propulsion phase, assuming beneficial carryover effects into the landing phase. Normalizing these patterns during rehabilitation may potentially reduce the risk of long-term complications such as reinjuries and posttraumatic osteoarthritis.

摘要

目的

前交叉韧带(ACL)重建(ACLR)的运动员表现出持续的生物力学和神经肌肉落地改变。到目前为止,大多数研究都集中在动态任务的落地阶段,大多数 ACL 损伤都发生在这个阶段。本研究将评估这些落地改变是否也存在于推进阶段,试图确定普遍的运动改变。

方法

21 名 ACLR 运动员(经外科医生和/或物理治疗师批准恢复运动)和 21 名对照者进行了 5 次单腿跳跃任务。比较了双腿之间和组间的推进运动学、动力学和肌肉激活情况。

结果

与未受伤的腿和对照组相比,在比较 ACLR 腿的推进阶段时,发现腘绳肌的激活增加。此外,与未受伤的腿相比,ACL 腿的膝关节内伸肌力矩减小。

结论

ACL 重建运动员在单腿跳跃任务的推进阶段表现出与任务无关的改变,从而减轻膝关节的负荷。如果纵向数据认为这些改变是适应不良的,那么在推进阶段必须更加重视将其正常化,假设这些改变对落地阶段有有益的延续效应。在康复过程中使这些模式正常化可能会降低长期并发症(如再损伤和创伤后骨关节炎)的风险。

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