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The effects of different carrying methods on locomotion stability, gait spatio-temporal parameters and spinal stresses

机译:不同携带方法对运动稳定性的影响,步态时空参数和脊柱应力

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摘要

Manual material handling (MMH) contributes to a large percentage of musculoskeletal disorders. One of its fundamental activities is load carrying that can be accomplished in several strategies, with each one imposing different types of stresses on the musculoskeletal system. Therefore, the first goal of this study was to determine the effect of different carrying methods on walking stability using motion capture analysis. Second, to analyze gait adaptations to stresses associated with load carrying in order to prevent falling. Third, to investigate the effect of these stresses coupled with human body adjustment on the forces at the L5/S1 disc. Thirty participants carried 10 and 30 lbs loads via frontal, lateral, bilateral, and posterior carriages. Frontal and lateral methods generated the most unstable conditions compared to the others. The unstable locomotion forced the gait parameters to be significantly altered in order to maintain stability. Additionally, the postures maintained in these conditions resulted in significantly high compression and shear forces acting at the L5/S1 disc when compared to the other carrying methods. Moreover, heavier weights exacerbated the effect on the dependent variables. Notably, bilateral and posterior carrying methods provided results comparable to the unloaded walking baseline. In conclusion, to reduce the potential risks associated with load carrying, the recommendation to split the load between both hands using bilateral carrying method or carrying it posteriorly should be taken into account while designing MMH activities.
机译:手动材料处理(MMH)有助于大量的肌肉骨骼障碍。其中一个基本活动是载荷,可以在几种策略中完成,每一个对肌肉骨骼系统施加不同类型的应力。因此,本研究的第一个目的是使用运动捕获分析确定不同携带方法对行走稳定性的影响。其次,分析步态适应与负载承载相关的应力以防止落下。第三,研究这些应力与人体对L5 / S1盘的力的影响。 30个参与者通过前部,横向,双侧和后架携带10和30磅。正面和横向方法与其他方式产生最不稳定的条件。不稳定的机器迫使步态参数显着改变以保持稳定性。另外,与其他携带方法相比,这些条件中保持在这些条件中的姿势导致在L5 / S1盘上作用的显着高的压缩和剪切力。此外,重量较重加剧了对依赖变量的影响。值得注意的是,双侧和后携带方法提供了与卸载的行走基线相当的结果。总之,为了减少与负荷承载相关的潜在风险,建议在设计MMH活动的同时应考虑使用双边携带方法在两只手之间分开负荷的建议。

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