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COMPUTATION OF TRUNK MUSCLE FORCES AND INTERNAL SPINAL LOADS IN STANDING POSTURES

机译:站立姿势中躯干肌力量和内部脊柱负荷的计算

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摘要

The kinetic redundancy in human musculoskeletal trunk system allows for the active control of posture during a specific task while satisfying equilibrium and stability requirements. Such control could aim, for example, to minimise forces in active musculature and stresses in passive tissues. It results in a superfluous system of equations the solution of which not yet satisfactorily achieved despite its importance in evaluation and treatment of spinal disorders. Due to shortcomings in existing reduction, optimisation and EMG-driven models, and combination thereof, a novel kinematics-based finite element approach is employed that fully accounts for the synergy between passive and active trunk sub-systems. In this study, the kinematics-based model is applied to determine spinal muscle forces and internal ligamentous passive loads at different disc levels in standing postures under gravity loads with and without 200N weights carried in both hands (positioned symmetrically close to the body, either anteriorly or on sides).
机译:人的肌肉骨骼躯干系统中的动力学冗余允许在特定任务期间主动控制姿势,同时满足平衡和稳定性要求。这样的控制可以例如旨在最小化主动肌肉组织中的力和被动组织中的压力。它产生了一个多余的方程组,尽管它在评估和治疗脊柱疾病中很重要,但尚未令人满意地实现其求解。由于现有减少,优化和EMG驱动模型及其组合的缺点,因此采用了一种新颖的基于运动学的有限元方法,该方法充分考虑了被动和主动干线子系统之间的协同作用。在这项研究中,基于运动学的模型被用于确定重力状态下在双手承受和不承受两只手负重200N(对称地靠近身体,或者向前放置)的情况下,站立姿势中不同椎间盘水平的脊椎肌肉力和内部韧带被动载荷或侧面)。

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