El-Rich M, Shirazi-Adl A
Ecole Polytechnique, Department of Mechanical Engineering, Montréal, Qué., Canada.
Comput Methods Biomech Biomed Engin. 2005 Dec;8(6):359-68. doi: 10.1080/10255840500445630.
A novel kinematics-based approach coupled with a non-linear finite element model was used to investigate the effect of changes in the load position and posture on muscle activity, internal loads and stability margin of the human spine in upright standing postures. In addition to 397 N gravity, external loads of 195 and 380 N were considered at different lever arms and heights. Muscle forces, internal loads and stability margin substantially increased as loads displaced anteriorly away from the body. Under same load magnitude and location, adopting a kyphotic posture as compared with a lordotic one increased muscle forces, internal loads and stability margin. An increase in the height of a load held at a fixed lever arm substantially diminished system stability thus requiring additional muscle activations to maintain the same margin of stability. Results suggest the importance of the load position and lumbar posture in spinal biomechanics during various manual material handling operations.
一种基于运动学的新型方法与非线性有限元模型相结合,用于研究在直立站姿下,负荷位置和姿势的变化对人体脊柱肌肉活动、内部负荷和稳定裕度的影响。除了397 N的重力外,还考虑了在不同力臂和高度下195 N和380 N的外部负荷。随着负荷从身体向前移位,肌肉力量、内部负荷和稳定裕度显著增加。在相同负荷大小和位置下,与脊柱前凸姿势相比,采用脊柱后凸姿势会增加肌肉力量、内部负荷和稳定裕度。在固定力臂下保持的负荷高度增加会显著降低系统稳定性,因此需要额外的肌肉激活来维持相同的稳定裕度。结果表明,在各种人工搬运操作过程中,负荷位置和腰椎姿势在脊柱生物力学中具有重要意义。