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首页> 外文期刊>Journal of biomechanical engineering. >A Biomechanical Investigation of Ankle Injury Under Excessive External Foot Rotation in the Human Cadaver
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A Biomechanical Investigation of Ankle Injury Under Excessive External Foot Rotation in the Human Cadaver

机译:人体尸体过度外足旋转下踝关节损伤的生物力学研究

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摘要

Numerous studies on the mechanisms of ankle injury deal with injuries to the syndesmosis and anterior ligamentous structures but a previous sectioning study also describes the important role of the posterior talofibular ligament (PTaFL) in the ankle's resistance to external rotation of the foot. It was hypothesized that failure level external rotation of the foot would lead to injury of the PTaFL. Ten ankles were tested by externally rotating the foot until gross injury. Two different frequencies of rotation were used in this study, 0.5 Hz and 2 Hz. The mean failure torque of the ankles was 69.5 ± 11.7 Nm with a mean failure angle of 40.7 ± 7.3°. No effects of rotation frequency or flexion angle were noted. The most commonly injured structure was the PTaFL. Visible damage to the syndesmosis only occurred in combination with fibular fracture in these experiments. The constraint of the subtalar joint in the current study may have affected the mechanics of the foot and led to the resultant strain in the PTaFL. In the real world, talus rotations may be affected by athletic footwear that may influence the location and potential for an ankle injury under external rotation of the foot.
机译:关于踝关节损伤机制的众多研究涉及对下颌联合韧带和前韧带结构的损伤,但是先前的一项研究也描述了后胫腓韧带(PTaFL)在踝关节对脚外旋的抵抗中的重要作用。假设脚的外旋水平失灵会导致PTaFL受伤。通过向外旋转脚直到严重受伤,测试了十只脚踝。在这项研究中使用了两种不同的旋转频率:0.5 Hz和2 Hz。踝关节的平均破坏扭矩为69.5±11.7 Nm,平均破坏角为40.7±7.3°。没有观察到旋转频率或弯曲角度的影响。最常见的受伤结构是PTaFL。在这些实验中,仅在与腓骨骨折相结合的情况下才对可见的共生膜造成损害。当前研究中距下关节的约束可能影响了脚的力学,并导致了PTaFL中产生的应变。在现实世界中,距骨旋转可能会受到运动鞋的影响,运动鞋可能会影响脚的外部旋转下踝关节受伤的位置和可能性。

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