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Analysis of squat and stoop dynamic liftings: muscle forces and internal spinal loads

机译:下蹲和下蹲动态举升分析:肌肉力量和内脊柱负荷

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摘要

Despite the well-recognized role of lifting in back injuries, the relative biomechanical merits of squat versus stoop lifting remain controversial. In vivo kinematics measurements and model studies are combined to estimate trunk muscle forces and internal spinal loads under dynamic squat and stoop lifts with and without load in hands. Measurements were performed on healthy subjects to collect segmental rotations during lifts needed as input data in subsequent model studies. The model accounted for nonlinear properties of the ligamentous spine, wrapping of thoracic extensor muscles to take curved paths in flexion and trunk dynamic characteristics (inertia and damping) while subject to measured kinematics and gravity/external loads. A dynamic kinematics-driven approach was employed accounting for the spinal synergy by simultaneous consideration of passive structures and muscle forces under given posture and loads. Results satisfied kinematics and dynamic equilibrium conditions at all levels and directions. Net moments, muscle forces at different levels, passive (muscle or ligamentous) forces and internal compression/shear forces were larger in stoop lifts than in squat ones. These were due to significantly larger thorax, lumbar and pelvis rotations in stoop lifts. For the relatively slow lifting tasks performed in this study with the lowering and lifting phases each lasting ∼2 s, the effect of inertia and damping was not, in general, important. Moreover, posterior shift in the position of the external load in stoop lift reaching the same lever arm with respect to the S1 as that in squat lift did not influence the conclusion of this study on the merits of squat lifts over stoop ones. Results, for the tasks considered, advocate squat lifting over stoop lifting as the technique of choice in reducing net moments, muscle forces and internal spinal loads (i.e., moment, compression and shear force).
机译:尽管举重在背部受伤中的作用已广为人知,但深蹲与弯举举重的相对生物力学优点仍然存在争议。结合体内运动学测量结果和模型研究,以估计在有手和无手的情况下,动态下蹲和俯卧撑举起时的躯干肌肉力量和内部脊柱负荷。对健康受试者进行了测量,以收集在举升过程中需要的分段旋转,作为后续模型研究中的输入数据。该模型考虑了韧带脊椎的非线性特性,胸部伸肌的包裹以在弯曲和躯干动态特性(惯性和阻尼)中采用弯曲路径,同时还要经受测量的运动学和重力/外部载荷。采用动态运动学驱动的方法,通过同时考虑给定姿势和载荷下的被动结构和肌肉力来解决脊柱协同作用。结果满足了各个水平和方向的运动学和动态平衡条件。弯举时的净弯矩,不同水平的肌肉力,被动(肌肉或韧带)力以及内部压缩/剪切力要比深蹲大。这些是由于弯腰抬高时胸部,腰部和骨盆旋转明显变大。对于在这项研究中执行的相对缓慢的提升任务,其降落和提升阶段各持续约2秒,惯性和阻尼的影响通常并不重要。而且,在相对于S1的同等杠杆臂上,st举的外部负载位置的后移与as举的后移并不影响本研究得出的结论,即on举优于over举的优点。对于所考虑的任务,结果是提倡深蹲而不是弯举作为减少净力矩,肌肉力量和内部脊柱负荷(即力矩,压缩力和剪切力)的首选技术。

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