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Progress in Motor Control: Muscle coactivation: definitions mechanisms and functions

机译:运动控制的进展:肌肉共激活:定义机制和功能

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摘要

The phenomenon of agonist-antagonist muscle coactivation is discussed with respect to its consequences for movement mechanics (such as increasing joint apparent stiffness, facilitating faster movements, and effects on action stability), implication for movement optimization, and involvement of different neurophysiological structures. Effects of coactivation on movement stability are ambiguous and depend on the effector representing a kinematic chain with a fixed origin or free origin. Furthermore, coactivation is discussed within the framework of the equilibrium-point hypothesis and the idea of hierarchical control with spatial referent coordinates. Relations of muscle coactivation to changes in one of the basic commands, the c-command, are discussed and illustrated. A hypothesis is suggested that agonist-antagonist coactivation reflects a deliberate neural control strategy to preserve effector-level control and avoid making it degenerate and facing the necessity to control at the level of signals to individual muscles. This strategy, in particular, allows stabilizing motor actions by covaried adjustments in spaces of control variables. This hypothesis is able to account for higher levels of coactivation in young healthy persons performing challenging tasks and across various populations with movement impairments.
机译:讨论了激动剂-拮抗剂肌肉共激活现象对运动力学的影响(例如增加关节的表观硬度,促进更快的运动以及对动作稳定性的影响),运动优化的含义以及不同神经生理结构的参与。共激活对运动稳定性的影响是模棱两可的,并取决于代表具有固定起源或自由起源的运动链的效应子。此外,在平衡点假设和具有空间参考坐标的分层控制的思想的框架内讨论了共激活。讨论并说明了肌肉共激活与基本命令之一(c命令)中的变化的关系。提出了一种假设,激动剂-拮抗剂的共激活反映了一种有意的神经控制策略,以保持效应子水平的控制,避免使其退化,并面临着控制个别肌肉信号水平的必要性。该策略尤其允许通过控制变量空间中的协变量调整来稳定电动机动作。该假设能够说明在执行挑战性任务的年轻健康人以及运动障碍的各个人群中较高的共激活水平。

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