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消防员使用暴露式鞋靴和健身训练鞋对行走时下肢体生物力学的影响。

Effects of using exposure footwear for firemen and fitness training shoes on lower limb biomechanics during walking.

机构信息

School of Exercise and Health, Shanghai University of Sport, Shanghai, China.

Firefighter Operational Training and Occupational Health Research Laboratory, Shanghai Fire Research Institute of MEM, Shanghai, China.

出版信息

Sci Rep. 2024 Nov 21;14(1):28881. doi: 10.1038/s41598-024-77407-5.

Abstract

Exposure footwear for firemen (EFF) is a crucial component of firefighters' personal protective equipment, designed to protect against hazards, such as heat, punctures, impact, and electrocution. However, its effect on gait biomechanics remains unclear. This study was aimed to investigate the influence of EFF on firefighters' lower limb biomechanical performance and the underlying mechanisms. Twenty healthy male firefighters (mean height: 175.41 ± 4.39 cm, mean weight: 65.74 ± 5.81 kg, mean BMI: 21.37 ± 2.17 kg/m) were randomly assigned to wear EFF and fitness training shoes for comparison during walking tasks. Lower limb biomechanics were analyzed, focusing on joint range of motion (ROM), moments, work and muscle activity. The results indicated that wearing EFF led to increased hip and knee joint ROM in the sagittal plane, reduced ankle and metatarsophalangeal (MTP) joint ROM in the sagittal plane, increased peak hip flexion/extension and ankle dorsiflexion moments, and decreased MTP joint dorsiflexion peak moments. EFF use also resulted in increased positive work done by the hips, increased negative work done by the ankles, reduced positive work done by the ankle joints, and increased negative work by the MTP joint, The activation levels of the rectus femoris and tibialis anterior muscles were higher when wearing EFF compared to fitness training shoes. In conclusion, EFF significantly alters the biomechanical characteristics of firefighters' lower limbs during walking, leading to elevated muscle activation in the rectus femoris and tibialis anterior. This increased demand on the lower limb muscle groups for mechanical energy generation heightens the risk of fatigue, musculoskeletal injuries, and osteoarthritis. Therefore, it is recommended that EFF boots be designed using lightweight and flexible materials. Additionally, training programs should prioritize strengthening the hip flexor/extensor, ankle dorsiflexor muscle groups, and especially the rectus femoris and tibialis anterior muscles.

摘要

消防员专用作业鞋(EFF)是消防员个人防护装备的重要组成部分,旨在防护热、刺穿、冲击和电击等危害。然而,其对步态生物力学的影响尚不清楚。本研究旨在探讨 EFF 对消防员下肢生物力学性能的影响及其潜在机制。20 名健康男性消防员(平均身高:175.41±4.39cm,平均体重:65.74±5.81kg,平均 BMI:21.37±2.17kg/m)被随机分配在行走任务中穿着 EFF 和健身训练鞋进行比较。分析下肢生物力学,重点是关节活动度(ROM)、力矩、功和肌肉活动。结果表明,穿着 EFF 导致髋关节和膝关节矢状面 ROM 增加,踝关节和跖趾关节(MTP)矢状面 ROM 减少,髋关节屈伸和踝关节背屈峰值力矩增加,MTP 关节背屈峰值力矩减少。EFF 的使用还导致髋关节正功增加,踝关节负功增加,踝关节正功减少,MTP 关节负功增加。与穿健身训练鞋相比,穿着 EFF 时股直肌和胫骨前肌的激活水平更高。结论:EFF 显著改变了消防员行走时下肢的生物力学特征,导致股直肌和胫骨前肌的肌肉激活增加。这增加了下肢肌肉群对机械能量产生的需求,增加了疲劳、肌肉骨骼损伤和骨关节炎的风险。因此,建议使用轻质灵活的材料设计 EFF 靴。此外,训练计划应优先加强髋关节屈伸肌、踝关节背屈肌群,特别是股直肌和胫骨前肌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2cd/11582639/a7fc23685705/41598_2024_77407_Fig1_HTML.jpg

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