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在模拟地下煤矿表面行走时,轴硬度和鞋底灵活性对感知舒适度和足底压力的影响。

Effect of shaft stiffness and sole flexibility on perceived comfort and the plantar pressures generated when walking on a simulated underground coal mining surface.

机构信息

Biomechanics Research Laboratory, School of Medicine, Faculty of Science, Medicine & Health, University of Wollongong, Wollongong, Australia.

Biomechanics Research Laboratory, School of Medicine, Faculty of Science, Medicine & Health, University of Wollongong, Wollongong, Australia.

出版信息

Appl Ergon. 2020 Apr;84:103024. doi: 10.1016/j.apergo.2019.103024. Epub 2020 Jan 10.

Abstract

The structural features of work boots worn by underground coal miners affect comfort, foot motion and, in turn, loading of the plantar surface of miners' feet. Although shaft stiffness and sole flexibility appear to be boot design features that could influence perceived comfort and plantar pressures, no study has systematically altered these boot design features to truly understand how they affect these parameters. This study aimed to systematically investigate the effect of changes to shaft stiffness and sole flexibility on perceived comfort and plantar pressures when 20 males walked on a simulated gravel coal mining surface under four different work boot conditions. There were no significant effects of shaft stiffness or sole flexibility on perceived comfort. However, shaft stiffness and sole flexibility each significantly affected the plantar pressures generated under the medial midfoot, heel, middle metatarsals and hallux and, in combination, affected plantar pressures generated beneath the lateral midfoot, medial and lateral metatarsals and lesser toes. Participants preferred a boot with a flexible shaft combined with a stiff sole, citing properties such as fit, moveability, walking effort and support to explain why they perceived one boot as more comfortable than another. We therefore recommend that underground coal mining work boots should be designed to incorporate different flexibility and stiffness between the shaft and sole of the boot to optimise foot movement and, in turn, walking efficiency.

摘要

矿工井下作业靴的结构特征会影响穿着的舒适度、脚部运动,进而影响矿工足底的受力。尽管鞋帮硬度和鞋底弹性似乎是影响穿着舒适度和足底压力的靴子设计特征,但尚无研究系统地改变这些靴子设计特征,以真正了解它们如何影响这些参数。本研究旨在系统地研究鞋帮硬度和鞋底弹性变化对 20 名男性在模拟砾石煤矿表面行走时舒适度和足底压力的影响,共设置了 4 种不同的作业靴条件。鞋帮硬度和鞋底弹性对舒适度均无显著影响。然而,鞋帮硬度和鞋底弹性都会显著影响中足内侧、脚跟、中间跖骨和大脚趾的足底压力,并且两者结合还会影响外侧中足、内侧和外侧跖骨以及小趾的足底压力。参与者更喜欢鞋底柔软、鞋帮坚硬的靴子,并表示靴子的贴合度、可移动性、行走费力程度和支撑性等特性可以解释为什么他们认为某双靴子比其他靴子更舒适。因此,我们建议煤矿井下作业靴的设计应在靴帮和靴底之间采用不同的柔软度和硬度,以优化脚部运动,从而提高行走效率。

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