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使用背包会改变高中生的步态起始。

Use of a backpack alters gait initiation of high school students.

作者信息

Vieira Marcus Fraga, Lehnen Georgia Cristina, Noll Matias, Rodrigues Fábio Barbosa, de Avelar Ivan Silveira, da Costa Paula Hentschel Lobo

机构信息

Bioengineering and Biomechanics Laboratory, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.

Bioengineering and Biomechanics Laboratory, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.

出版信息

J Electromyogr Kinesiol. 2016 Jun;28:82-9. doi: 10.1016/j.jelekin.2016.03.008. Epub 2016 Apr 8.

Abstract

We assessed how backpack carriage influences the gait initiation (GI) process in high school students, who extensively use backpacks. GI involves different dynamics from gait itself, while the excessive use of backpacks can result in adverse effects. 117 high school students were evaluated in three experimental conditions: no backpack (NB), bilateral backpack (BB), and unilateral backpack (UB). Two force plates were used to acquire ground reaction forces (GRFs) and moments for each foot separately. Center of pressure (COP) scalar variables were extracted, and statistical parametric mapping analysis was performed over the entire COP/GRFs time series. GI anticipatory postural adjustments (APAs) were reduced and were faster in backpack conditions; medial-lateral COP excursion was smaller in this phase. The uneven distribution of the extra load in the UB condition led to a larger medial-lateral COP shift in the support-foot unloading phase, with a corresponding vertical GRF change that suggests a more pronounced unloading swing foot/loading support foot mechanism. The anterior-posterior GRFs were altered, but the COP was not. A possible explanation for these results may be the forward trunk lean and the center of mass proximity of the base of support boundary, which induced smaller and faster APA, increased swing foot/support foot weight transfer, and increased load transfer to the first step.

摘要

我们评估了背包背负对大量使用背包的高中生步态起始(GI)过程的影响。GI涉及与步态本身不同的动力学,而过度使用背包可能会产生不利影响。117名高中生在三种实验条件下接受评估:无背包(NB)、双侧背包(BB)和单侧背包(UB)。使用两个测力台分别获取每只脚的地面反作用力(GRF)和力矩。提取压力中心(COP)标量变量,并对整个COP/GRF时间序列进行统计参数映射分析。在背包条件下,GI预期姿势调整(APA)减少且速度更快;在此阶段,内侧-外侧COP偏移较小。UB条件下额外负荷的不均匀分布导致支撑脚卸载阶段内侧-外侧COP的更大偏移,同时伴有相应的垂直GRF变化,这表明存在更明显的卸载摆动脚/加载支撑脚机制。前后GRF发生了改变,但COP没有。这些结果的一个可能解释可能是躯干前倾以及质心靠近支撑边界基部,这导致了更小、更快的APA,增加了摆动脚/支撑脚的重量转移,并增加了第一步的负荷转移。

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