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如果鞋子的弯曲刚度不干扰自然的跖趾关节屈曲,那么它对跑步能量学是有益的。

The bending stiffness of shoes is beneficial to running energetics if it does not disturb the natural MTP joint flexion.

作者信息

Oh Keonyoung, Park Sukyung

机构信息

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-Gu, Daejeon 34141 The Republic of Korea.

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-Gu, Daejeon 34141 The Republic of Korea.

出版信息

J Biomech. 2017 Feb 28;53:127-135. doi: 10.1016/j.jbiomech.2017.01.014. Epub 2017 Jan 18.

Abstract

A local minimum for running energetics has been reported for a specific bending stiffness, implying that shoe stiffness assists in running propulsion. However, the determinant of the metabolic optimum remains unknown. Highly stiff shoes significantly increase the moment arm of the ground reaction force (GRF) and reduce the leverage effect of joint torque at ground push-off. Inspired by previous findings, we hypothesized that the restriction of the natural metatarsophalangeal (MTP) flexion caused by stiffened shoes and the corresponding joint torque changes may reduce the benefit of shoe bending stiffness to running energetics. We proposed the critical stiffness, k, which is defined as the ratio of the MTP joint (MTPJ) torque to the maximal MTPJ flexion angle, as a possible threshold of the elastic benefit of shoe stiffness. 19 subjects participated in a running test while wearing insoles with five different bending stiffness levels. Joint angles, GRFs, and metabolic costs were measured and analyzed as functions of the shoe stiffness. No significant changes were found in the take-off velocity of the center of mass (CoM), but the horizontal ground push-offs were significantly reduced at different shoe stiffness levels, indicating that complementary changes in the lower-limb joint torques were introduced to maintain steady running. Slight increases in the ankle, knee, and hip joint angular impulses were observed at stiffness levels exceeding the critical stiffness, whereas the angular impulse at the MTPJ was significantly reduced. These results indicate that the shoe bending stiffness is beneficial to running energetics if it does not disturb the natural MTPJ flexion.

摘要

据报道,在特定的弯曲刚度下,跑步能量消耗存在局部最小值,这意味着鞋的刚度有助于跑步推进。然而,代谢最佳状态的决定因素仍然未知。高刚度的鞋子会显著增加地面反作用力(GRF)的力臂,并降低蹬地时关节扭矩的杠杆作用。受先前研究结果的启发,我们假设,硬鞋导致的自然跖趾(MTP)关节屈曲受限以及相应的关节扭矩变化,可能会降低鞋的弯曲刚度对跑步能量消耗的益处。我们提出了临界刚度k,它被定义为MTP关节(MTPJ)扭矩与最大MTPJ屈曲角度的比值,作为鞋刚度弹性益处的一个可能阈值。19名受试者穿着具有五种不同弯曲刚度水平的鞋垫参加了跑步测试。测量并分析了关节角度、GRF和代谢成本与鞋刚度的函数关系。质心(CoM)的起跳速度没有显著变化,但在不同的鞋刚度水平下,水平蹬地显著减少,这表明下肢关节扭矩发生了互补变化以维持稳定跑步。在超过临界刚度的水平下,观察到踝关节、膝关节和髋关节的角冲量略有增加,而MTPJ的角冲量显著减少。这些结果表明,如果鞋的弯曲刚度不干扰自然的MTPJ屈曲,那么它对跑步能量消耗是有益的。

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