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股四头肌的伸展耐受性和弹性被动反应似乎更多地取决于深层筋膜的紧绷表面,而非其下方被拉伸的肌肉。

Stretch tolerance and elastic passive reaction of the quadriceps femoris seem to depend more on the fascia profundis taut surfaces than on the underlying stretched muscle.

作者信息

Germain Franck, Perrin Raphael

机构信息

Kinéquipe, St Claude, France.

Le Gitalet, Septmoncel, France.

出版信息

J Anat. 2023 Dec;243(6):1059-1065. doi: 10.1111/joa.13931. Epub 2023 Jul 24.

Abstract

The rectus femoris and its covering, the fascia lata (i.e., fascia profundis), are two anatomical structures involved in anterior thigh stretching. This study aimed to identify the role of strain changes in the fascia lata in limiting stretch tolerance. The reaction force intensity of 11 men and 5 women was assessed during passive stretching of the anterior thigh at 130, 110, 90, and 70° of knee flexion. Recent data suggest that the fascia lata strain field is modified with knee flexion. Therefore, the relationship between knee flexion angle and stretch tolerance was assessed. We found that the reaction force of the anterior thigh increased almost linearly with the degree of knee extension between 130° and 70°. The fascia lata stretched surface proprioceptive information seems responsible for stretch tolerance. Fascia profundis strain field must be considered during stretching experiments.

摘要

股直肌及其覆盖物阔筋膜(即深筋膜)是参与大腿前部拉伸的两个解剖结构。本研究旨在确定阔筋膜应变变化在限制拉伸耐受性中的作用。在膝关节屈曲130°、110°、90°和70°时对大腿前部进行被动拉伸期间,评估了11名男性和5名女性的反作用力强度。最近的数据表明,阔筋膜应变场会随着膝关节屈曲而改变。因此,评估了膝关节屈曲角度与拉伸耐受性之间的关系。我们发现,在130°至70°之间,大腿前部的反作用力几乎随膝关节伸展程度呈线性增加。阔筋膜拉伸表面的本体感觉信息似乎是拉伸耐受性的原因。在拉伸实验中必须考虑深筋膜应变场。

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本文引用的文献

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Strain Assessment of Deep Fascia of the Thigh During Leg Movement: An Study.腿部运动时大腿深筋膜的应变评估:一项研究
Front Bioeng Biotechnol. 2020 Jul 29;8:750. doi: 10.3389/fbioe.2020.00750. eCollection 2020.

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