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On the health risk of the lumbar spine due to whole-body vibration - Theoretical approach, experimental data and evaluation of whole-body vibration

机译:全身振动对腰椎健康的影响-理论方法,实验数据和全身振动评估

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The guidance on the effects of vibration on health in standards for whole-body vibration (WBV) does not provide quantitative relationships between WBV and health risk. The paper aims at the elucidation of exposure-response relationships. An analysis of published data on the static and dynamic strength of vertebrae and bone, loaded with various frequencies under different conditions, provided the basis for a theoretical approach to evaluate repetitive loads on the lumbar spine ("internal loads"). The approach enabled the calculation of "equivalent"-with respect to cumulative fatigue failure-combinations of amplitudes and numbers of internal cyclic stress. In order to discover the relation between external peak accelerations at the seat and internal peak loads, biodynamic data of experiments (36 subjects, three somatotypes, two different postures-relaxed and bent forward; random WBV, a,,, r.m.s. 1.4 ms(-2), containing high transients) were used as input to a biomechanical model. Internal pressure changes were calculated using individual areas of vertebral endplates. The assessment of WBV was based on the quantitative relations between peak accelerations at the seat and pressures predicted for the disk L5/S1. For identical exposures clearly higher rates of pressure rise in the bent forward compared to the relaxed posture were predicted. The risk assessment for internal forces considered the combined internal static and dynamic loads, in relation to the predicted individual strength, and Miner's hypothesis. For exposure durations between 1 min and 8 h, energy equivalent vibration magnitudes (formula B.1, ISO 2631-1, 1997) and equivalent vibration magnitudes according to formula B.2 (time dependence over-energetic) were compared with equivalent combinations of upward peak accelerations and exposure durations according to predicted cumulative fatigue failures of lumbar vertebrae. Formula B.1 seems to underestimate the health risk caused by high magnitudes, formula B.2 is recommended for the evaluation of such conditions. (C) 1998 Academic Press. [References: 40]
机译:全身振动(WBV)标准中有关振动对健康影响的指南并未提供WBV与健康风险之间的定量关系。本文旨在阐明暴露-反应关系。对已发表的有关在不同条件下以不同频率加载的椎骨和骨骼的静态和动态强度的数据进行的分析,为评估腰椎重复负荷(“内部负荷”)的理论方法提供了基础。相对于累积疲劳失效,该方法可以计算“等效”-振幅和内部循环应力的数量的组合。为了发现座椅上的外部峰值加速度与内部峰值负荷之间的关系,实验的生物力学数据(36位受试者,三种体型,两种不同的姿势放松并向前弯曲;随机WBV,均方根值1.4 ms(- 2),包含高瞬态)被用作生物力学模型的输入。使用椎骨终板的各个区域计算内部压力变化。 WBV的评估基于阀座上的峰值加速度与为磁盘L5 / S1预测的压力之间的定量关系。对于相同的曝光,显然预测出与放松姿势相比,向前弯曲的压力上升速率更高。内力的风险评估考虑了与预计的个人力量有关的内部静态和动态组合载荷以及Miner的假设。对于1分钟至8小时之间的暴露持续时间,将能量等效振动幅度(公式B.1,ISO 2631-1,1997)和根据公式B.2等效振动幅度(时间依赖性过高能量)与以下公式的等效组合进行了比较:根据预测的腰椎累积疲劳衰竭,增加峰值加速度和暴露时间。公式B.1似乎低估了由高强度引起的健康风险,建议使用公式B.2评估此类状况。 (C)1998年学术出版社。 [参考:40]

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