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Effects of different shoe-lacing patterns on the biomechanics of running shoes.

机译:不同鞋套图案对跑步鞋生物力学的影响。

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摘要

In the present study, we examined the influence of shoe lacing on foot biomechanics in running. Twenty experienced rearfoot runners ran in six different lacing conditions across a force platform at a speed of 3.3 m . s(-1). Foot pronation during contact, tibial acceleration, and plantar pressure distribution of the right leg were recorded. The test conditions differed in the number of laced eyelets (1, 2, 3, 6 or 7) and in lacing tightness (weak, regular or strong). The results show reduced loading rates (P < 0.05) and pronation velocities (P < 0.01) in the tightest and highest lacing conditions. The lowest peak pressures under the heel and lateral midfoot (P < 0.01) were observed in the high (seven-eyelet) lacing pattern. Regular six-eyelet cross-lacing resulted in higher loading rates (P < 0.05) and higher peak heel pressures (P < 0.01) than seven-eyelet lacing, without any significant differences in perceived comfort. The low lace shoe conditions resulted in lower impacts (P < 0.01) and lower peak pressures under metatarsal heads III and V (P < 0.01), which is probably induced by the foot sliding within the shoe. A firm foot-to-shoe coupling with higher lacing leads to a more effective use of running shoe features and is likely to reduce the risk of lower limb injury.
机译:在本研究中,我们研究了鞋带对跑步鞋的影响。二十个经验丰富的后脚跑步者以3.3米的速度在力平台上跑过六个不同的系带条件。 s(-1)。记录了接触,胫骨加速期间的脚静力,并记录了右腿的跖骨压力分布。试验条件在孔眼(1,2,3,6或7)的数量不同(1,2,3,6或7),并且在粘合密封(弱,常规或强)中。结果表明,在最紧密和最高的系带条件下,减少了加载速率(P <0.05)和静态(P <0.01)。在高(七孔)系带图案中观察到鞋跟和侧面中足的最低峰值(P <0.01)。常规六眼孔横梁导致较高的装载率(P <0.05)和较高的峰值高压压力(P <0.01),而不是七孔夹层,没有任何显着差异的感知舒适度。低蕾丝鞋状况导致较低的冲击(P <0.01)和跖骨头III和V(P <0.01)下的较低峰值压力,这可能由鞋内滑动的脚滑动。具有较高系带的坚固脚踏耦合导致更有效地使用运行鞋特征,并且可能降低肢体损伤的风险。

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