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书包负荷对7岁男孩和女孩动态步态参数的影响

The Influence of School Backpack Load on Dynamic Gait Parameters in 7-Year-Old Boys and Girls.

作者信息

Tomal Paulina, Fryzowicz Anna, Kabaciński Jarosław, Witt Dominika, Lisiński Przemysław, Dworak Lechosław B

机构信息

Department of Physiotherapy, Karol Marcinkowski Poznan University of Medical Sciences, 61-545 Poznan, Poland.

Department of Biomechanics, Poznan University of Physical Education, 61-871 Poznan, Poland.

出版信息

Sensors (Basel). 2025 Jul 6;25(13):4219. doi: 10.3390/s25134219.

Abstract

School-aged children are routinely exposed to additional physical stress due to carrying school backpacks. These backpacks often exceed recommended limits and can contain not only books and notebooks but also laptops, water bottles, and other personal items. The present study aimed to evaluate the impact of different backpack loads (10%, 15%, and 20% of body weight) on dynamic gait parameters in 7-year-old girls and boys. Twenty-six children (13 girls, 13 boys) participated in the study. Gait analysis was performed using the Footscan® system (RSscan International, Olen, Belgium; 2 m × 0.4 m × 0.02 m, 16,384 sensors) equipped with Footscan software version 7 (Gait 2nd generation), examining peak force (FMAX), peak pressure (PMAX), contact area (CA), and time to peak force (Time to FMAX) across five anatomical foot zones. The study revealed significant changes in all parameters, particularly at loads of 15% and 20% of body weight. Increases in plantar pressure, contact area, and asymmetry were observed, along with delays in time to peak force. These findings support the recommendation that children's backpack loads should not exceed 10% of their body weight to prevent potential adverse effects on postural and musculoskeletal development.

摘要

学龄儿童由于背着书包,经常会承受额外的身体压力。这些书包往往超过了建议的重量限制,里面不仅装有书籍和笔记本,还可能有笔记本电脑、水瓶和其他个人物品。本研究旨在评估不同书包负重(体重的10%、15%和20%)对7岁女童和男童动态步态参数的影响。26名儿童(13名女孩,13名男孩)参与了该研究。使用配备Footscan软件版本7(第二代步态分析)的Footscan®系统(RSscan国际公司,比利时奥伦;2米×0.4米×0.02米,16384个传感器)进行步态分析,检测五个足部解剖区域的峰值力(FMAX)、峰值压力(PMAX)、接触面积(CA)和达到峰值力的时间(Time to FMAX)。研究发现所有参数都有显著变化,尤其是在负重为体重的15%和20%时。观察到足底压力、接触面积增加以及不对称性增加,同时达到峰值力的时间延迟。这些发现支持了以下建议:儿童书包的负重不应超过其体重的10%,以防止对姿势和肌肉骨骼发育产生潜在的不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6f4/12252491/164937c87284/sensors-25-04219-g001.jpg

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