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Effects of an improved biomechanical backpack strap design on load transfer to the shoulder soft tissues

机译:改进的生物力学背包带设计对肩部软组织负荷转移的影响

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摘要

The aim of the present study was to characterize shoulder strap structure and mechanical properties that may alleviate strains and stresses in the soft tissues of the shoulder. Utilizing a finite element model of the shoulder constructed from a single subject, we have quantified skin stresses exerted by backpack straps and the strains at the subclavian artery (SCA). For this end, standard shape straps with stiffness of 0.5, 1.2, and 5 MPa, were compared to the effects of optimized straps; a double-layered (soft outer layer and reinforced internal supporting layer) and newly-designed anatomically-shaped strap. Compared to the standard 0.5 MPa strap, the 5 MPa strap resulted in 4-times lower SCA strains and 2-times lower Trapezius stresses. The double-layered strap resulted in 40% and 50% reduction in SCA strains and skin stresses, respectively, with respect to the softer strap. The newly-designed anatomical strap exerted 4-times lower SCA strains and 50% lower skin stresses compared to the standard strap. This demonstrates a substantial improvement to the load carriage ergonomics when using a composite anatomical strap. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究的目的是表征肩带结构和机械性能,可以缓解肩部软组织中的菌株和应力。利用由单个受试者构建的肩部的有限元模型,我们已经通过背包带和亚克拉夫动脉(SCA)的菌株施加的施加的皮肤应力。为此,将标准形状带刚度为0.5,1.2和5MPa,与优化带的效果进行比较;双层(软外层和增强内部支撑层)和新设计的解剖结构带。与标准的0.5MPa表带相比,5MPa表带导致4倍以下的SCA菌株和2倍的梯形胁迫。双层带分别导致SCA菌株和皮肤应力的40%和50%降低,相对于更柔软的表带。与标准表带相比,新设计的解剖表带施加了4倍以下的SCA菌株和50%的皮肤胁迫。这表明使用复合解剖带时对载荷托架人体工程学的重大改进。 (c)2018年elestvier有限公司保留所有权利。

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