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Trunk response and stability in standing under sagittal-symmetric pull-push forces at different orientations, elevations and magnitudes

机译:在不同取向,高度和大小的矢状对称拉力下站立的中继响应和稳定性

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To reduce lifting and associated low back injuries, manual material handling operations often involve pulling-pushing of carts at different weights, orientations, and heights. The loads on spine and risk of injury however need to be investigated. The aim of this study was to evaluate muscle forces, spinal loads and trunk stability in pull-push tasks in sagittal-symmetric, static upright standing posture. Three hand-held load magnitudes (80, 120 and 160 N) at four elevations (0, 20, 40 and 60 cm to the L5-S1) and 24 force directions covering all pull/push orientations were considered. For this purpose, a musculoskeletal finite element model with kinematics measured earlier were used. Results demonstrated that peak spinal forces occur under inclined pull (lift) at upper elevations but inclined push at the lowermost one. Minimal spinal loads, on the other hand, occurred at and around vertical pull directions. Overall, spinal forces closely followed variations in the net external moment of pull-push forces at the L5-S1. Local lumbar muscles were most active in pulls while global extensor muscles in lifts. The trunk stability margin decreased with load elevation except at and around horizontal push; it peaked under pulls and reached minimum at vertical lifts. It also increased with antagonist activity in muscles and intra-abdominal pressure. Results provide insight into the marked effects of variation in the load orientation and elevation on muscle forces, spinal loads and trunk stability and hence offer help in rehabilitation, performance enhancement training and design of safer workplaces. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了减少提升和相关的低伤害损伤,手动材料处理操作通常涉及在不同重量,方向和高度下拉动推动推车。然而,需要调查对脊柱的负荷和受伤风险。本研究的目的是在矢状对称,静态直立的姿势中评估拉动任务中的肌力,脊柱荷载和行李箱稳定性。考虑了四个凸起的三个手持式负载幅度(80,120和160n),覆盖所有拉伸/推动取向的24力方向。为此目的,使用先前测量的具有运动学的肌肉骨骼有限元模型。结果表明,峰值脊柱力在上升升降处发生在倾斜拉(升力)下,但在最下面的倾斜推动下。另一方面,最小的脊柱载荷发生在垂直拉方向上周围。总的来说,脊柱力紧密遵循L5-S1拉力势净外部时刻的变化。局部腰椎肌肉最活跃,而升降机的全球伸肌肌肉。除水平推动外,主干稳定性边缘减少了负荷高程;它在拉动下达到峰值,在垂直升降机处达到最小值。它还随着肌肉和腹部压力的拮抗活性而增加。结果提供了洞察肌力,脊柱荷载和躯干稳定性的载荷取向和升高变化的显着影响,从而提供了康复,性能增强训练和更安全的工作场所的设计。 (c)2017 Elsevier Ltd.保留所有权利。

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