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Biomechanical Assessment of the NIOSH Lifting Equation in Asymmetric Load-Handling Activities Using a Detailed Musculoskeletal Model

机译:使用详细的骨骼肌肉模型在不对称负荷处理活动中对NIOSH提升方程的生物力学评估

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Objective: To assess adequacy of the National Institute for Occupational Safety and Health (NIOSH) Lifting Equation (NLE) in controlling lumbar spine loads below their recommended action limits during asymmetric load-handling activities using a detailed musculoskeletal model, that is, the AnyBody Modeling System. Background: The NIOSH committee employed simplistic biomechanical models for the calculation of the spine compressive loads with no estimates of the shear loads. It is therefore unknown whether the NLE would adequately control lumbar compression and shear loads below their recommended action limits during asymmetric load-handling activities. Method: Twenty-four static stoop lifting tasks at different load asymmetry angles, heights, and horizontal distances were performed by one normal-weight (70 kg) and one obese (93 kg) individual. For each task, the recommended weight limit computed by the NLE and body segment angles measured by a video-camera system (VICON) were prescribed in the participant-specific models developed in the AnyBody Modeling System that estimated spinal loads. Results: For both individuals, the NLE adequately controlled L5-S1 loads below their recommended action limits for all activities performed in upright postures. Both individuals, however, experienced compressive and/or shear L5-S1 loads beyond the recommended action limits when lifting was performed near the floor with large load asymmetry. Conclusion: The NLE failed to control spinal loads below the recommended limits during asymmetric lifting tasks performed near the floor. Application: The NLE should be used with caution for extreme tasks involving load handling near the floor with large load asymmetry.
机译:目的:使用详细的肌肉骨骼模型,即AnyBody模型,评估美国职业安全与健康研究所(NIOSH)提升方程(NLE)在不对称负荷处理活动中将腰椎负荷控制在建议的动作极限以下的适当性系统。背景:NIOSH委员会采用了简单的生物力学模型来计算脊柱压缩载荷,而没有估计剪切载荷。因此,在不对称负荷处理活动中,NLE是否能够将腰椎压缩和剪切负荷控制在建议的动作极限以下,尚不明确。方法:由一名正常体重(70公斤)和一名肥胖(93公斤)的个体执行二十四次在不同载荷不对称角度,高度和水平距离下的静态弯腰提升任务。对于每项任务,在AnyBody建模系统开发的参与者专用模型(估计脊髓负荷)中规定了由NLE计算的建议重量极限和由摄像机系统(VICON)测量的身体节段角度。结果:对于两个人,对于以直立姿势进行的所有活动,NLE都将L5-S1负荷控制在建议的动作极限以下。但是,当在地板上以较大的载荷不对称性进行举升时,两个人都经历了超出建议作用极限的压缩和/或剪切L5-S1载荷。结论:在地板附近执行非对称提升任务期间,NLE无法将脊柱负荷控制在建议的限制以下。应用:对于涉及大载荷不对称的地板附近的载荷处理的极端任务,应谨慎使用NLE。

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