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The Biomechanical Stresses on the Lumbar Spine during Lifting and Lowering

机译:升降过程中腰椎的生物力学应力

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The biomechanical approach was explored to examine the risk difference between lifting and lowering tasks with several task parameters in this study. An experiment was conducted to collect the variables of kinematics in the laboratory where motion analysis system and force platforms were performed and a 3D biomechanical lower model was used to obtain the estimates of the biomechanical stresses of the L5/S1 spinal disc. Ten male subjects were recruited and performed twelve experimental tasks of lifting and lowering tasks with three asymmetry angles (00,450 and 900) and two handling speeds (1s/lift and 2s/lift) in the experiment. The load of lifting and lowering was 10kg (including box weight). The range of lifts and lowers was designed between floor level and waist height of subjects. Free style lifts and lowers were the posture that subjects performed in the experiment. The results showed that the mean peak values of L5/S1 biomechanical stresses on lifting tasks were larger than those of lowering tasks with various handling angles and speeds. The compressive forces for L5/S1 disc both on lifts and lowers ranged between 572 and 723 N and were larger than shear forces and torsional forces (60 to 466 N). The lumbosacral stresses on lifting tasks were larger than those of lowering tasks at different handling speeds. When the results for two handling speeds were considered, the mean peak value of lumbosacral stresses was mostly larger at 1s/lift. The experimental results showed that the risk of MMH-related low back injuries would increase on lifting tasks.
机译:探讨了生物力学方法,以研究该研究中具有多个任务参数的升降任务之间的风险差异。进行实验以在实验室中收集运动学的变量,其中进行运动分析系统和力平台,使用3D生物力学下模型来获得L5 / S1脊椎盘的生物力学应力的估计。招募了十个男性受试者,并在实验中进行了三个不对称角度(00,450和900)和两个处理速度(1s /升降机和2s /升降机)的升降和降低任务的十二个实验任务。提升和降低的负荷为10kg(包括盒重量)。在楼层和腰部高度之间设计了升降机和降低的范围。自由式升降机和降低是在实验中进行的姿势。结果表明,提升任务的L5 / S1生物力学应力的平均峰值大于各种处理角度和速度的降低任务。 L5 / S1盘的压缩力均在升降机上均在572和723n之间的范围内,并且大于剪切力和扭转力(60至466n)。升降任务的腰骶部应力大于不同处理速度的降低任务的伤害。当考虑两个处理速度的结果时,腰骶部应力的平均峰值在1S /升力时大部分较大。实验结果表明,MMH相关的低腰部损伤的风险将增加举起任务。

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