Biomechanical Analysis of Muscle Fatigue and Ground Reaction Force for the Development of Outdoor Walking Shoes

Young-Min Jang, J. Lee, Jeongok Yang, Bom-jin Lee
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Abstract

Objective: The purpose of this study was to analyze and compare different kinds of outdoor walking shoes in terms of muscle fatigue and ground reaction force on walking, and to provide foundational data for developing and choosing outdoor walking shoes that fit the users. Method: The study subjects were 30 healthy men. The experiment was conducted by using outdoor walking shoes with different inner and outer harnesses of the midsole, and shapes of the outsole. For data collection, electromyography was used to measure the muscle fatigue of the anterior tibial muscle and gastrocnemii, which contribute to the dorsiflexion and plantarflexion of the ankle joint, and the biceps muscle of the thigh and lateral great muscles, which contribute to the flexion and extension of the knee joint. A GRF measurement device was used to measure the X , Y , and Z axes. Results: In the type A outdoor walking shoes, regarding the hardness of the midsole, the inner part was soft, while the outer part was hard. The vertical ground reaction force was the lowest, which means least impact while walking and light load to the knees and ankles. The type C outdoor walking shoes were intended to provide a good feel in wearing the shoes. The tibialis anterior, biceps femoris, and gastrocnemii indicate low fatigue, which means that during a long-distance walk, it will minimize the fatigue in the muscles of the lower limbs. Conclusion: To sum up the study results, the different types of outdoor walking shoes indicate their unique characteristics in the biomechanical comparison and analysis. However, the difference was not statistically significant. Thus, a systematic and constant follow-up research should be conducted to cope with expanding market for outdoor walking shoes. Lastly, this study is expected to present foundational data and directions for developing outdoor walking shoes.
户外步行鞋开发中肌肉疲劳和地面反作用力的生物力学分析
目的:分析比较不同类型的户外步行鞋在步行时的肌肉疲劳和地面反作用力,为开发和选择适合使用者的户外步行鞋提供基础数据。方法:研究对象为30名健康男性。实验采用不同中底内、外束带和外底形状的户外步行鞋进行。为了收集数据,我们使用肌电图来测量胫骨前肌和腓骨肌的肌肉疲劳程度,这两种肌肉有助于踝关节的背屈和跖屈,以及大腿二头肌和外侧大肌,这两种肌肉有助于膝关节的屈伸。采用GRF测量装置对X、Y、Z轴进行测量。结果:A型户外步行鞋中底硬度,内底软,外底硬。垂直地面反作用力最低,这意味着走路时的冲击最小,膝盖和脚踝的负荷也很轻。C型户外步行鞋旨在提供良好的穿着感。胫骨前肌、股二头肌和腓肠肌表示疲劳程度低,这意味着在长距离步行时,它将使下肢肌肉的疲劳程度降到最低。结论:总结研究结果,不同类型的户外步行鞋在生物力学对比分析中表现出各自独特的特点。然而,差异无统计学意义。因此,为了应对户外步行鞋市场的不断扩大,需要进行系统的、持续的跟踪研究。最后,本研究可望为户外步行鞋的开发提供基础资料及方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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