| Literature DB >> 28632051 |
Tomoya Takabayashi1, Mutsuaki Edama1, Erika Yokoyama1, Chiaki Kanaya1, Masayoshi Kubo1.
Abstract
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.Entities:
Keywords: Foot; coordination patterns; running injuries; vector cording technique
Mesh:
Year: 2017 PMID: 28632051 DOI: 10.1080/14763141.2016.1271447
Source DB: PubMed Journal: Sports Biomech ISSN: 1476-3141 Impact factor: 2.832