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Muscles force patterns prediction and joint reactions determination during 3D spine movements by means of optimal control theory

机译:通过最优控制理论,肌肉力量模式预测和联合反应在3D脊柱运动期间的确定

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Modeling the spine behavior plays a key role in understanding mechanisms leading to spinal disorders and injuries. The goal of this article is to develop a new model to obtain 3D spine movement patterns. High degrees of freedom of the system, a great many of muscles involved in the spine movements and its unstable intrinsic behavior make the control problem more difficult. New theories in computational motor control suggest optimal control as a useful tool for modeling Central Nervous System (CNS) to provide appropriate control signals while it computes the neural interactions with biological sensors. Therefore, CNS is modeled as an optimal controller. Our simulations illustrate the movement behavior and muscles force patterns which may be used to relate to the risk of injury in both joints and muscles.
机译:模拟脊柱行为在理解机制中发挥关键作用,导致脊柱障碍和伤害。本文的目标是开发一种新模型,以获得3D脊柱运动模式。系统的高度自由度,许多涉及脊柱运动的肌肉和其不稳定的内在行为使控制问题更加困难。计算电机控制中的新理论表明,最佳控制作为建模中枢神经系统(CNS)以提供适当的控制信号,同时计算与生物传感器的神经相互作用。因此,CNS被建模为最佳控制器。我们的模拟说明了可用于涉及关节和肌肉损伤风险的运动行为和肌肉。

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