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The Relationship Between Postural and Movement Stability

机译:姿势与运动稳定性的关系

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Postural stabilization is provided by stretch reflexes, intermuscular reflexes, and intrinsic muscle properties. Taken together, these posture-stabilizing mechanisms resist deflections from the posture at which balance of muscle and external forces is maintained. Empirical findings suggest that for each muscle, these mechanisms become functional at a specific, spatial threshold-the muscle length or respective joint angle at which motor units begin to be recruited. Empirical data suggest that spinal and supraspinal centers can shift the spatial thresholds for a group of muscles that stabilized the initial posture. As a consequence, the same stabilizing mechanisms, instead of resisting motion from the initial posture, drive the body to another stable posture. In other words by shifting spatial thresholds, the nervous system converts movement resisting to movement-producing mechanisms. It is illustrated that, contrary to conventional view, this control strategy allows the system to transfer body balance to produce locomotion and other actions without loosing stability at any point of them. It also helps orient posture and movement with the direction of gravity. It is concluded that postural and movement stability is provided by a common mechanism.
机译:姿势稳定由拉伸反射,渗流反射和固有肌肉特性提供。在一起,这些姿势稳定机制抵抗肌肉和外力平衡的姿势的偏转。经验结果表明,对于每种肌肉,这些机制在特定的空间阈值 - 肌肉长度或相应的关节角度变得功能,在该肌肉长度或相应的关节角度开始招募。经验数据表明,脊柱和脊柱中心可以将一组肌肉稳定初始姿势的肌肉转移空间阈值。因此,相同的稳定机制,而不是从初始姿势抵抗运动,使身体驱动到另一个稳定的姿势。换句话说,通过移位空间阈值,神经系统转换抵抗运动产生机制的运动。示出了与传统视图相反,该控制策略允许系统转移身体平衡以产生运动机器和其他动作,而不会在它们的任何点处减少稳定性。它还可以帮助定向姿势和移动与重力方向。得出结论,姿势和运动稳定性是通过共同机制提供的。

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