Takabayashi Tomoya, Edama Mutsuaki, Yokoyama Erika, Kanaya Chiaki, Kubo Masayoshi
a Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare , Niigata , Japan.
Sports Biomech. 2018 Mar;17(1):18-32. doi: 10.1080/14763141.2016.1271447. Epub 2017 Feb 28.
Because previous studies have suggested that there is a relationship between injury risk and inter-segment coordination, quantifying coordination between the segments is essential. Even though the midfoot and forefoot segments play important roles in dynamic tasks, previous studies have mostly focused on coordination between the shank and rearfoot segments. This study aimed to quantify coordination among rearfoot, midfoot, and forefoot segments during running. Eleven healthy young men ran on a treadmill. The coupling angle, representing inter-segment coordination, was calculated using a modified vector coding technique. The coupling angle was categorised into four coordination patterns. During the absorption phase, rearfoot-midfoot coordination in the frontal planes was mostly in-phase (rearfoot and midfoot eversion with similar amplitudes). The present study found that the eversion of the midfoot with respect to the rearfoot was comparable in magnitude to the eversion of the rearfoot with respect to the shank. A previous study has suggested that disruption of the coordination between the internal rotation of the shank and eversion of the rearfoot leads to running injuries such as anterior knee pain. Thus, these data might be used in the future to compare to individuals with foot deformities or running injuries.
由于先前的研究表明损伤风险与节段间协调性之间存在关联,因此量化各节段之间的协调性至关重要。尽管中足和前足节段在动态任务中发挥着重要作用,但先前的研究大多集中在小腿和后足节段之间的协调性上。本研究旨在量化跑步过程中后足、中足和前足节段之间的协调性。11名健康年轻男性在跑步机上跑步。使用改良的矢量编码技术计算代表节段间协调性的耦合角。耦合角被分为四种协调模式。在缓冲阶段,额状面后足-中足协调性大多为同相(后足和中足外翻幅度相似)。本研究发现,中足相对于后足的外翻幅度与后足相对于小腿的外翻幅度相当。先前的一项研究表明,小腿内旋和后足外翻之间的协调性破坏会导致跑步损伤,如前膝疼痛。因此,这些数据未来可能用于与足部畸形或跑步损伤个体进行比较。