Towards the estimation of ultimate compression tolerance as a function of cyclic compression loading history: implications for lifting-related low back injury risk assessment

IF 1.4 Q4 ERGONOMICS
Jackie D. Zehr, J. Callaghan
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Abstract

Abstract This study aimed to mathematically characterize the ultimate compression tolerance (UCT) as a function of spinal joint posture, loading variation, and loading duration. One hundred and fourteen porcine cervical spinal units were tested. Spinal units were randomly assigned to subthreshold cyclic loading groups that differed by joint posture (neutral, flexed), peak loading variation (10%, 20%, 40%), and loading duration (1000, 3000, 5000 cycles). After the assigned conditioning test, UCT testing was performed. Force and actuator position were sampled at 100 Hz. A three-dimensional relationship between UCT, loading variation, and loading duration was most accurately characterized by a second order polynomial surface (R2 = 0.644, RMSE = 1.246 kN). However, distinct UCT responses were observed for flexed and neutral postures. A single second-order polynomial most accurately characterized the UCT – loading duration relationship (R2 = 0.905, RMSE = 0.718 kN) for flexed postures. For neutral joint postures, separate second-order polynomial equations were developed to characterize the UCT – loading duration relationship for each variation group (R2 = 0.618–0.906, RMSE = 0.617 kN–0.746 kN). These findings suggest that UCT responses are influenced by joint posture and these data may be used to inform ergonomic tools for the assessment of low back injury risk during occupational lifting.
作为循环压缩载荷历史函数的极限压缩容限的估计:对举重相关下背部损伤风险评估的启示
摘要本研究旨在通过数学方法将极限抗压强度(UCT)表征为脊柱关节姿势、负荷变化和负荷持续时间的函数。对一百一十四个猪颈椎单位进行了测试。脊柱单位被随机分配到阈下循环负荷组,这些组因关节姿势(中性、屈曲)、峰值负荷变化(10%、20%、40%)和负荷持续时间(100030005000个周期)而不同。在指定的条件测试后,进行UCT测试。力和致动器位置在100 赫兹。UCT、负荷变化和负荷持续时间之间的三维关系最准确地由二阶多项式曲面表征(R2=0.644,RMSE=1.246 kN)。然而,对于弯曲和中性姿势,观察到不同的UCT反应。一个二阶多项式最准确地描述了UCT-荷载-持续时间关系(R2=0.905,RMSE=0.718 kN)。对于中性关节姿势,开发了单独的二阶多项式方程来表征每个变化组的UCT-负荷-持续时间关系(R2=0.618–0.906,RMSE=0.617 kN–0.746 kN)。这些发现表明,UCT反应受关节姿势的影响,这些数据可用于评估职业举重过程中下背部损伤风险的人体工程学工具。
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来源期刊
CiteScore
4.10
自引率
6.20%
发文量
38
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