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首页> 外文期刊>Journal of Biomechanics >Elevation and orientation of external loads influence trunk neuromuscular response and spinal forces despite identical moments at the L5-S1 level
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Elevation and orientation of external loads influence trunk neuromuscular response and spinal forces despite identical moments at the L5-S1 level

机译:尽管在L5-S1水平上有相同的力矩,外部负载的高度和方向也会影响躯干神经肌肉反应和脊柱力量

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摘要

A wide range of loading conditions involving external forces with varying magnitudes, orientations and locations are encountered in daily activities. Here we computed the effect on trunk biomechanics of changes in force location (two levels) and orientation (5 values) in 4 subjects in upright standing while maintaining identical external moment of 15. Nm, 30. N. m or 45. Nm at the L5-S1. Driven by measured kinematics and gravity/external loads, the finite element models yielded substantially different trunk neuromuscular response with moderate alterations (up to 24% under 45 Nm moment) in spinal loads as the load orientation varied. Under identical moments, compression and shear forces at the L5-S1 as well as forces in extensor thoracic muscles progressively decreased as orientation of external forces varied from downward gravity (90°) all the way to upward (-25°) orientation. In contrast, forces in local lumbar muscles followed reverse trends. Under larger horizontal forces at a lower elevation, lumbar muscles were much more active whereas extensor thoracic muscle forces were greater under smaller forces at a higher elevation. Despite such differences in activity pattern, the spinal forces remained nearly identical (<6% under 45 Nm moment). The published recorded surface EMG data of extensor muscles trend-wise agreed with computed local muscle forces as horizontal load elevation varied but were overall different from results in both local and global muscles when load orientation altered. Predictions demonstrate the marked effect of external force orientation and elevation on the trunk neuromuscular response and spinal forces and questions attempts to estimate spinal loads based only on consideration of moments at a spinal level.
机译:在日常活动中会遇到各种各样的载荷条件,其中涉及大小,方向和位置不同的外力。在这里,我们计算了直立站立时4位受试者的力位置(两个水平)和方向(5个值)的变化对躯干生物力学的影响,同时保持了相同的15,Nm,30.N.m或45.Nm的外部力矩。 L5-S1。受测运动学和重力/外部载荷的驱动,随着载荷方向的变化,有限元模型在脊柱载荷中产生了完全不同的躯干神经肌肉反应,并在脊柱载荷中产生了中等程度的变化(在45 Nm力矩下高达24%)。在相同的力矩下,随着外力的方向从向下的重力(90°)一直到向上(-25°)的方向变化,L5-S1处的压缩力和剪切力以及伸肌胸肌中的力逐渐减小。相反,局部腰肌中的力遵循相反的趋势。在较低仰角下较大的水平力下,腰肌活跃得多,而在较高仰角下较小的力下伸臂胸肌力更大。尽管活动模式存在这种差异,但脊柱力量仍然几乎相同(在45 Nm力矩下<6%)。当水平负荷升高变化时,已发布的已记录的伸肌表面肌电图数据趋势与计算得出的局部肌肉力一致,但是当负荷方向改变时,总体上与局部和整体肌肉的结果不同。预测表明外力定向和抬高对躯干神经肌肉反应和脊柱力有显着影响,并且人们仅根据脊柱水平上的力矩来尝试估算脊柱负荷。

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