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静态提举时腰椎姿势变化的生物力学

Biomechanics of changes in lumbar posture in static lifting.

作者信息

Arjmand Navid, Shirazi-Adl Aboulfazl

机构信息

Department of Mechanical Engineering, Ecole Polytechnique Montréal, Québec, Canada.

出版信息

Spine (Phila Pa 1976). 2005 Dec 1;30(23):2637-48. doi: 10.1097/01.brs.0000187907.02910.4f.

Abstract

STUDY DESIGN

In vivo measurements and model studies are combined to investigate the role of lumbar posture in static lifting tasks.

OBJECTIVES

Identification of the role of changes in the lumbar posture on muscle forces, internal loads, and system stability in static lifting tasks with and without load in hands.

SUMMARY OF BACKGROUND DATA

Despite the recognition of the causal role of lifting in spinal injuries, the advantages of preservation or flattening of the lumbar lordosis while performing lifting tasks is not yet clear.

METHODS

Kinematics of the spine and surface EMG activity of selected muscles were measured in 15 healthy subjects under different forward trunk flexion angles and load cases. Apart from the freestyle lumbar posture, subjects were instructed to take either lordotic or kyphotic posture as well. A kinematics-based method along with a nonlinear finite element model were interactively used to compute muscle forces, internal loads and system stability margin under postures, and loads considered in in vivo investigations. RESULTS.: In comparison with the kyphotic postures, the lordotic postures increased the pelvic rotation, active component of extensor muscle forces, segmental axial compression and shear forces at L5-S1, and spinal stability margin while decreasing the passive muscle forces and segmental flexion moments.

CONCLUSION

Alterations in the lumbar lordosis in lifting resulted in significant changes in the muscle forces and internal spinal loads. Spinal shear forces at different segmental levels were influenced by changes in both the disc inclinations and extensor muscle lines of action as the posture altered. Considering internal spinal loads and active-passive muscle forces, the current study supports the freestyle posture or a posture with moderate flexion as the posture of choice in static lifting tasks.

摘要

研究设计

结合体内测量和模型研究来探究腰椎姿势在静态提举任务中的作用。

目的

确定在手持重物和不手持重物的静态提举任务中,腰椎姿势变化对肌肉力量、内部负荷和系统稳定性的作用。

背景数据总结

尽管人们认识到提举在脊柱损伤中的因果作用,但在进行提举任务时保持或变平腰椎前凸的优势尚不清楚。

方法

在15名健康受试者处于不同的躯干前屈角度和负荷情况下,测量其脊柱的运动学和选定肌肉的表面肌电图活动。除了自然的腰椎姿势外,还指导受试者采取前凸或后凸姿势。基于运动学的方法与非线性有限元模型交互使用,以计算在体内研究中所考虑的姿势和负荷下的肌肉力量、内部负荷和系统稳定裕度。结果:与后凸姿势相比,前凸姿势增加了骨盆旋转、伸肌力量的主动成分、L5-S1节段的轴向压缩和剪切力以及脊柱稳定裕度,同时降低了被动肌肉力量和节段性屈曲力矩。

结论

提举时腰椎前凸的改变导致肌肉力量和脊柱内部负荷发生显著变化。随着姿势改变,不同节段水平的脊柱剪切力受椎间盘倾斜度和伸肌作用线变化的影响。考虑到脊柱内部负荷和主动-被动肌肉力量,本研究支持自然姿势或适度屈曲姿势作为静态提举任务中的首选姿势。

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