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Alteration in Foot Strike Pattern While Running with Elastic Insoles: Case Study on the Effects of Long-term Training

机译:穿着弹性鞋垫时脚部震动方式的改变:长期训练效果的案例研究

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Motor adaptation is a form of motor learning that involves changes in the control of movements that occur as a consequence of optimization in repeated task exposure or practice. A good example of this can be found in human running. It is thought that humans run in accordance with the presence or absence and shape of shoes. Three foot strike patterns exist in running, classified according to which portion of the sole first connects with the ground: RFS (rear-foot-strike; heel connection), MFS (mid-foot-strike, simultaneous heel and toe connections), and FFS (fore-foot-strike; toe, or ball connection). RFS is often seen in runners wearing shoes, whereas FFS is commonly seen during routine barefoot running. This study examined how humans adapt to assistive footwear (environmental exposure)s throughout approximately one month of running training. We found that the shape and stiffness of a modified insole affected the foot, functioning as a spring during running. As training continued, the subject adapted to the structure of the footwear by altering his foot strike pattern while reducing his heart rate. The foot strike pattern changed from heel contact to contact from the side of the toe or arch, and the pattern of the ground reaction force changed from that of RFS to that of FFS or MFS. These results indicate that the change in foot compliance while landing and during grounding affects the foot strike pattern to improve the efficiency and capability of running through long-term training.
机译:运动适应是运动学习的一种形式,它涉及运动控制的变化,这些变化是由于重复任务暴露或练习中的优化而发生的。在人类奔跑中可以找到一个很好的例子。人们认为,人根据鞋子的有无和形状来奔跑。跑步中存在三种脚部撞击模式,根据鞋底首先与地面连接的部分进行分类:RFS(后脚撞击;脚跟连接),MFS(中脚撞击,脚跟和脚趾同时连接)和FFS(前脚打击;脚趾或球连接)。 RFS通常在穿鞋的跑步者中看到,而FFS通常在常规的赤脚跑步过程中看到。这项研究检查了人类在大约一个月的跑步训练中如何适应辅助鞋类(环境暴露)。我们发现,改性鞋垫的形状和刚度会影响脚,在跑步过程中起到弹簧的作用。随着训练的继续,受试者通过改变他的脚步运动方式同时降低他的心律来适应鞋的结构。脚的撞击方式从脚跟接触到脚趾或足弓侧面的接触而变化,地面反作用力的方式从RFS变为FFS或MFS。这些结果表明,着陆时和着陆期间脚部顺应性的变化会影响脚部撞击的方式,从而提高长期训练的效率和能力。

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