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The Influence of Backpack Weight and Hip Belt Tension on Movement and Loading in the Pelvis and Lower Limbs during Walking

机译:背包重量和髋部皮带张力对行走过程中骨盆和下肢运动和负荷的影响

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摘要

The introduction of hip belts to backpacks has caused a shift of loading from the spine to the hips with reported improvements in musculoskeletal comfort. Yet the effects of different hip belt tensions on gait biomechanics remain largely unknown. The goal of this study was to assess the influence of backpack weight and hip belt tension on gait biomechanics. Data from optical motion capture and ground reaction forces (GRF) during walking were acquired in nine healthy male subjects (age 28.0 ± 3.9 years). Six configurations of a commercial backpack were analyzed, that is, 15 kg, 20 kg, and 25 kg loading with 30 N and 120 N hip belt tension. Joint ranges of motion (ROM), peak GRF, and joint moments during gait were analyzed for significant differences by repeated measures of ANOVA with Bonferroni post hoc comparison. Increased loading led to a significant reduction of knee flexion-extension ROM as well as pelvis rotational ROM. No statistically significant effect of hip belt tension magnitudes on gait dynamics was found at any backpack weight, yet there was a trend of increased pelvis ROM in the transverse plane with higher hip belt tension at 25 kg loading. Further research is needed to elucidate the optimum hip belt tension magnitudes for different loading weights to reduce the risks of injury especially with higher loading.
机译:将髋部安全带引入背包已导致脊椎负荷向髋部转移,据报道肌肉骨骼舒适性得到改善。然而,不同的髋部皮带张力对步态生物力学的影响仍然未知。这项研究的目的是评估背包重量和髋部皮带张力对步态生物力学的影响。来自9名健康男性受试者(年龄28.0±3.9岁)的步行过程中的光学运动捕获和地面反作用力(GRF)数据。分析了商用背包的六种配置,即15 kg,20 kg和25 kg的负重,分别承受30 N和120 N的髋部皮带张力。通过重复测量方差分析和Bonferroni事后比较,分析了步态联合运动范围(ROM),峰值GRF和步态联合力矩的显着差异。增加的负荷导致膝盖屈伸ROM和骨盆旋转ROM大大减少。在任何背包重量下,未发现腰带张力幅度对步态动力学的统计学显着影响,但在25 kg的负重下,在较高的腰带张力下,横向骨盆ROM有增加的趋势。需要进一步的研究来阐明不同负重的最佳腰带张力大小,以减少受伤的风险,尤其是在较高负重的情况下。

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