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Adaptation after vastus lateralis denervation in rats demonstrates neural regulation of joint stresses and strains

机译:大鼠股外侧肌去神经后的适应证明关节应力和应变的神经调节

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摘要

In order to produce movements, muscles must act through joints. The translation from muscle force to limb movement is mediated by internal joint structures that permit movement in some directions but constrain it in others. Although muscle forces acting against constrained directions will not affect limb movements, such forces can cause excess stresses and strains in joint structures, leading to pain or injury. In this study, we hypothesized that the central nervous system (CNS) chooses muscle activations to avoid excessive joint stresses and strains. We evaluated this hypothesis by examining adaptation strategies after selective paralysis of a muscle acting at the rat’s knee. We show that the CNS compromises between restoration of task performance and regulation of joint stresses and strains. These results have significant implications to our understanding of the neural control of movements, suggesting that common theories emphasizing task performance are insufficient to explain muscle activations during behaviors.
机译:为了产生运动,肌肉必须通过关节起作用。从肌肉力到肢体运动的转换是由内部关节结构介导的,该结构允许在某些方向上运动但在其他方向上限制运动。尽管逆着约束方向作用的肌肉力不会影响四肢的运动,但这种力会在关节结构中引起过大的压力和拉力,从而导致疼痛或受伤。在这项研究中,我们假设中枢神经系统(CNS)选择肌肉激活以避免过度的关节压力和劳损。我们通过选择性地使作用于大鼠膝盖的肌肉麻痹后的适应策略来评估这一假设。我们表明中枢神经系统折衷之间的任务性能的恢复与关节应力和应变的调节。这些结果对我们对运动的神经控制的理解具有重要意义,这表明强调任务执行的通用理论不足以解释行为过程中的肌肉激活。

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