SHAPE Research Group, School of Science and Technology, Nottingham Trent University, Nottingham, UK.
Faculty of Sport, Allied Health & Performance Science, St Mary's University, Twickenham, UK.
J Sports Sci. 2022 Jun;40(12):1351-1359. doi: 10.1080/02640414.2022.2080163. Epub 2022 Jun 1.
This study assessed whether grip socks reduce in-shoe foot motion and improve change of direction performance in team sports players and compared the effects between males and females. A sledge and pulley system confirmed the static coefficient of friction was increased in the grip socks (1.17) compared to the regular socks (0.60). Performance during a slalom course was faster in the grip socks compared to regular socks (p = .001). Yet, there was no difference in the utilised coefficient of friction between the shoe-floor interface during a side-cut and turn change of direction manoeuvre. Three-dimensional motion capture revealed the grip socks reduced in-shoe foot displacement during the braking phase, with greater effect during the sharper turn manoeuvre. The magnitude of natural foot spreading within the shoe was greater in the calcaneus region than the metatarsals which suggests in-shoe sliding may only occur at the forefoot. Males tended to have increased in-shoe displacement, which is associated with larger foot spreading due to their increased mass. Findings provide guidance for product developers to enhance the support inside the shoe at the forefoot, and change of direction performance.
本研究评估了抓地力袜子是否能减少鞋内足部运动并改善团队运动运动员的变向能力,并比较了男女运动员之间的效果差异。雪橇和滑轮系统证实,抓地力袜子的静态摩擦系数(1.17)高于常规袜子(0.60)。与常规袜子相比,在障碍滑雪课程中,抓地力袜子的表现更快(p=0.001)。然而,在侧切和转弯变向动作中,鞋-地界面的实际摩擦系数没有差异。三维运动捕捉显示,抓地力袜子在制动阶段减少了鞋内足部位移,在更急的转弯动作中效果更大。在鞋内,跟骨区域的自然足部张开程度大于跖骨区域,这表明鞋内滑动可能仅在前脚发生。男性的鞋内位移往往更大,这与由于其质量增加而导致的更大的足部张开有关。研究结果为产品开发人员提供了指导,以增强鞋前部的支撑力和变向能力。