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非膝关节伸展肌在意外侧步急停时也会对胫骨股骨剪切以及外翻和旋转关节反作用力矩产生作用。

Non-knee-spanning muscles contribute to tibiofemoral shear as well as valgus and rotational joint reaction moments during unanticipated sidestep cutting.

机构信息

School of Exercise Sciences, Australian Catholic University, Melbourne, Australia.

Department of Mechanical Engineering, The University of Melbourne, Melbourne, Australia.

出版信息

Sci Rep. 2018 Feb 6;8(1):2501. doi: 10.1038/s41598-017-19098-9.

Abstract

Anterior cruciate ligament (ACL) injuries are a burdensome condition due to potential surgical requirements and increased risk of long term debilitation. Previous studies indicate that muscle forces play an important role in the development of ligamentous loading, yet these studies have typically used cadaveric models considering only the knee-spanning quadriceps, hamstrings and gastrocnemius muscle groups. Using a musculoskeletal modelling approach, we investigated how lower-limb muscles produce and oppose key tibiofemoral reaction forces and moments during the weight acceptance phase of unanticipated sidestep cutting. Muscles capable of opposing (or controlling the magnitude of) the anterior shear force and the external valgus moment at the knee are thought to be have the greatest potential for protecting the anterior cruciate ligament from injury. We found the best muscles for generating posterior shear to be the soleus, biceps femoris long head and medial hamstrings, providing up to 173N, 111N and 77N of force directly opposing the anterior shear force. The valgus moment was primarily opposed by the gluteus medius, gluteus maximus and piriformis, with these muscles providing contributions of up to 32 Nm, 19 Nm and 21 Nm towards a knee varus moment, respectively. Our findings highlight key muscle targets for ACL preventative and rehabilitative interventions.

摘要

前交叉韧带(ACL)损伤是一种负担沉重的疾病,因为可能需要手术治疗,而且长期衰弱的风险增加。先前的研究表明,肌肉力量在韧带负荷的发展中起着重要作用,但这些研究通常使用仅考虑跨膝关节的股四头肌、腘绳肌和腓肠肌的尸体模型。使用肌肉骨骼建模方法,我们研究了下肢肌肉在意外侧步切割的承重阶段如何产生和对抗关键的胫骨股骨反作用力和力矩。被认为能够对抗(或控制)膝关节前剪切力和外翻力矩的肌肉,最有可能保护前交叉韧带免受损伤。我们发现产生后向剪切力的最佳肌肉是比目鱼肌、股二头肌长头和内侧腘绳肌,它们直接对抗前剪切力的力高达 173N、111N 和 77N。外翻力矩主要由臀中肌、臀大肌和梨状肌对抗,这些肌肉分别提供高达 32Nm、19Nm 和 21Nm 的力矩来对抗膝关节内翻力矩。我们的研究结果强调了 ACL 预防性和康复性干预的关键肌肉目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d13/5802728/45ef073ae2e9/41598_2017_19098_Fig1_HTML.jpg

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