Park Huiju, Kim Seonyoung, Morris Kristen, Moukperian Melissa, Moon Youngjin, Stull Jeffrey
Department of Fiber Science and Apparel Design, Cornell University, Ithaca, NY, USA.
Korea Institute of Sports Science, San223-19, Gongneung-dong Nowon-gu, Seoul, South Korea.
Appl Ergon. 2015 May;48:42-8. doi: 10.1016/j.apergo.2014.11.001. Epub 2014 Dec 2.
The biomechanical experiment with eight male and four female firefighters demonstrates that the effect of adding essential equipment: turnout ensemble, self-contained breathing apparatus, and boots (leather and rubber boots), significantly restricts foot pronation. This finding is supported by a decrease in anterior-posterior and medial-lateral excursion of center of plantar pressure (COP) trajectory during walking. The accumulation of this equipment decreases COP velocity and increases foot-ground contact time and stride time, indicating increased gait instability. An increase in the flexing resistance of the boots is the major contributor to restricted foot pronation and gait instability as evidenced by the greater decrease in excursion of COP in leather boots (greater flexing resistance) than in rubber boots (lower resistance). The leather boots also shows the greatest increase in foot contact time and stride time. These negative impacts can increase musculoskeletal injuries in unfavorable fire ground environments.
对八名男性和四名女性消防员进行的生物力学实验表明,添加基本装备(消防服、自给式呼吸器和靴子(皮靴和橡胶靴))的影响显著限制了足部内旋。这一发现得到了行走过程中足底压力中心(COP)轨迹前后和内外偏移减少的支持。这些装备的累积会降低COP速度,增加足部与地面的接触时间和步幅时间,表明步态稳定性增加。靴子屈曲阻力的增加是导致足部内旋受限和步态不稳定的主要因素,这一点从皮靴(屈曲阻力更大)比橡胶靴(阻力更低)中COP偏移的更大减少中得到证明。皮靴还显示出足部接触时间和步幅时间的最大增加。在不利的火场环境中,这些负面影响会增加肌肉骨骼损伤。